https://www.ainonline.com/aviation-news/business-aviation/2020-01-24/eviations-electric-alice-aircraft-catches-fire-during-ground-tests
lunes, 27 de enero de 2020
Eviation's Electric Alice Aircraft Catches Fire During Ground Tests
https://www.ainonline.com/aviation-news/business-aviation/2020-01-24/eviations-electric-alice-aircraft-catches-fire-during-ground-tests
Analysts: Bombardier's Bizjet Unit Could Be Sold
https://www.ainonline.com/aviation-news/business-aviation/2020-01-23/analysts-bombardiers-bizjet-unit-could-be-sold
Analysts: Bombardier's Bizjet Unit Could Be Sold
https://www.ainonline.com/aviation-news/business-aviation/2020-01-23/analysts-bombardiers-bizjet-unit-could-be-sold
Saab Starts Production in Support of U.S. Air Force T-7A Programme
Saab is responsible for the development and production of the aft fuselage section for the advanced trainer, with seven aft units being produced in Linköping, Sweden for final assembly at Boeing's U.S. facility in St. Louis, Missouri.
"In little over a year since we signed the EMD contract, we are starting production of our part of the T-7A jet. This achievement is possible due to the great collaboration between Saab and Boeing, and it is an honour to be part of this programme for the United States Air Force," says Jonas Hjelm, head of Saab business area Aeronautics.
The work is being performed in Linkoping, Sweden, after which future production of Saab's part for the T-7A will be moved to our new U.S. site in West Lafayette, Indiana.
The Saab facility in West Lafayette is an important part of Saab's growth strategy in the United States, creating strong organic capabilities for the development, manufacturing and sales of its products.
Boeing is the designated prime contractor for the T-7A advanced pilot training system acquisition by the U.S. Air Force. Saab and Boeing developed the aircraft with Saab as a risk-sharing partner. Saab received the EMD order from Boeing, on September 18, 2018.
3 dead in Guatemala Red Bull aerobatics crash
An Iranian passenger plane skidded off the runway onto a city street-- and nobody was hurt
An Iranian passenger plane skidded off the runway onto a city ...
sábado, 25 de enero de 2020
Boeing’s 777X, the world’s largest twin-engine jet, takes off in maiden flight
Boeing's 777X, the world's largest twin-engine jet, takes off in ...
Low cost UAV demonstrator: AFRL XQ-58A Valkyrie expands flight envelope in fourth test
viernes, 24 de enero de 2020
Aero Vodochody will double its revenues this year
Revenues of the biggest Czech aircraft manufacturer, AERO Vodochody AEROSPACE, will almost double up to 5-6 bn CZK (200-240 mEUR) this year in comparison to 2019. Such growth of Aero's revenues will be strongly driven by new MRO businesses, ramp up on the A220 programme and start of industrialization of L-39NG new jet trainer and light attack aircraft.
During the last year, Aero signed several contracts with current L-39 Albatros operators for general overhauls and modernizations, the majority with the support of its strategic partner OMNIPOL. Currently, Aero has an unique order backlog on MRO of 35 aircraft from our customers in Middle Asia and Africa on L-39s, and from Czech Air Force on L-159s. "Based on signed contracts, our MRO and upgrade business will double this year and will generate more than 2 bn CZK revenues (80 mEUR). In our aerostructures business, we are ramping up too, mainly driven by a 50% increase of production of fixed leading edge for Airbus A220 to 73 aircraft shipsets. Our budget 2020, agreed with our shareholder, plans Aero returning to black numbers this year," said Dieter John, President and CEO of the company.
AERO Vodochody successfully continues in its main investment project, the new jet trainer and light attack aircraft L-39NG. "Our ground and flight test program runs full speed and the full trainer certification is targeted for the third quarter of 2020. The L-39NG industrialization concept is prepared, we will launch serial production this year and proceed in our sales campaigns which will also contribute to revenues growth," added Dieter John.
Early 2019, Aero has launched its mid-term transformation project Aero Fit For Future (A3F) which does optimize Aero´s operations and supply chain, increase the company´s efficiency and prepares it for strong growth. Part of it has been the streamlining of the workforce and the right sizing of the cost base. Aero released about 250 employees across all functions in 2019, which finished in May last year. Aero is now recruiting new employees for some specific key aviation profession. In last three months, the company recruited 30 new employees and currently it has more than 50 open positions.
AERO Vodochody AEROSPACE
AERO Vodochody AEROSPACE a.s. focuses on the design, manufacturing, maintenance, overhaul and upgrade of military and civil aircraft and is the largest aviation manufacturer in the Czech Republic and one of the oldest aerospace companies worldwide. In the field of military aircraft, Aero has been a reliable long-term partner to many of the world's air forces and it has a strong position on the market of military training and light combat aircraft.
With a track record of 11.000 aircraft produced over the last 100 years, a broad coverage of 60 military operators and 15 demo teams, a huge existing fleet of L-39 Albatrosses and with a brand new aircraft, the L-39NG now, Aero is maintaining its positioning as a leader in the jet training market. In the field of civil aviation, Aero collaborates with the world's largest manufacturers in a diverse range of projects and is a full partner in several risk-sharing programmes, taking responsibility not only for the production and assembly of structures but also for its design and development.
Airports lead the way on tackling Climate Emergency with ACI Europe’s Brussels Summit
https://www.aviation24.be/airports/airports-lead-the-way-on-tackling-climate-emergency-with-aci-europes-brussels-summit/
Elbit Systems Successfully Demonstrates High-Altitude High-Precision Aerial Firefighting Solution
Haifa, Israel, 21 January, 2020 – Elbit Systems completed a successful field demonstration of its patented Hydrop system, an innovative solution enabling high-altitude high-precision aerial firefighting. The field demonstration took place recently as part of an exercise led by the Israel Fire and Rescue Authority. During the exercise two Air Tractor aircraft from the Israeli Fire Fighting Squadron were directed to extinguish a burning field, from as high as 500 ft., more than four times higher than the average altitude of a standard aerial firefighting sortie. Using the HyDrop system each aircraft launched 1.6-tons of 140-gram liquid pellets in a computed ballistic trajectory, achieving a precise hit with saturation of 1-2 liter per 1 square meter.
Since 1953, aerial firefighting has been carried out using liquid cascade drop methods that require sorties to be conducted at an altitude of a 100-120 ft. in order to reduce liquid loss caused by the aerosol effect. Such low-altitude flights are restricted to daytime due to safety concerns and Civil Aviation regulations. The experience from around the globe clearly shows that restricting aerial firefighting to daytime severely degrades its operational contribution. Addressing this needs gap, Elbit Systems developed the Hydrop system that enables a high-precision computed launch of bio-degradable liquid pellets from 500-2,000 ft., altitudes that are safe and certified for night-flight by Civil Aviation.
With Helicopter, Fixed-wing and Heavy Lifter configurations, Hydrop integrates fighter aircraft avionics including a ballistic computer, command and control (C2) system and advanced display systems, together with liquid pellets stored in a specially designed airborne dispenser. The C2 unit navigates the aircraft to the drop point while the ballistic computer produces an accurate launch trajectory, taking into account aircraft velocity, altitude, GPS location, wind conditions and the weight and shape of the liquid pellets. In addition to lifting the restriction on nighttime aerial firefighting, this high-altitude system improves pilots safety and increases the effectiveness of aerial firefighting, during day and night, by eliminating the liquid loss caused by the aerosol effect.
The Hydrop system includes a pellets manufacturing machine (static or mobile). Housed in a standard 20'-container, the manufacturing machine can produces up to 10 tons of pellets per hour. The biodegradable pellets which can be filled with either water, foam or fire retardant, have been proved to have no harmful residues and their dropping has also been tested and found to be safe to crews on the ground.
U.S. Navy Now Jamming GPS Over Six US States and 125,000 Square Miles.
ESA and Airbus sign contract for Bartolomeo platform on the International Space Station
New research platform scheduled for launch in March 2020
Bremen, 23 January 2020 – The Bartolomeo platform from Airbus gives new opportunities for research on the International Space Station (ISS). The European Space Agency ESA has now firmly booked a payload slot for a Norwegian instrument to monitor plasma density in the Earth's atmosphere.
The Bartolomeo platform - named after Christopher Columbus' younger brother - is currently in the final stage of launch preparation at Airbus in Bremen and is scheduled for launch to the ISS in March 2020. Bartolomeo is developed on a commercial basis by Airbus using its own investment funds and will be operated in cooperation with ESA.
The platform can accommodate up to 12 different experiment modules, supplying them with power and providing data transmission to Earth. Bartolomeo is suitable for many different experiments. Due to the unique position of the platform with a direct view of Earth from 400 kilometres, Earth observation including trace gas measurements or CO2 monitoring of the atmosphere are possible, with data useful for climate protection or for use by private data service providers.
The Multi-Needle Langmuir Probe (m-NLP) is an instrument from the University of Oslo and the Norwegian company Eidsvoll Electronics to measure ionospheric plasma densities. With its relatively low orbit, the ISS passes near the peak plasma density of the ionosphere. The m-NLP is currently the only instrument in the world capable of resolving ionospheric plasma density variations at spatial scales below one metre. It will gather valuable data from the equatorial and mid-latitude ionosphere, enabling study of the dynamic processes in this region in unprecedented detail. The Langmuir Probe will map plasma characteristics around the globe.
The mission is financed through the ESA PRODEX programme and supported by ESA's Directorate Human & Robotic Exploration. The payload is scheduled to launch on ISS resupply flight NG-14 in October 2020 and will be the first payload to be installed on the Bartolomeo Platform outside the European Columbus Module.
Together with UNOOSA (United Nations Office for Outer Space Affairs), Airbus is currently inviting tenders for further research opportunities on the platform, in particular to enable research institutions from developing countries to participate in scientific space research.
@ESA @Space_Station @ISS_Research @AirbusSpace #Bartolomeo
Nordic Aviation Capital finalised order for 20 A220 Family aircraft
Nordic Aviation Capital (NAC), the leading lessor of regional aircraft, signed at the end of 2019 a firm order for 20 A220 Family aircraft.
This latest order from NAC, counted in the 2019 order-book, is a huge endorsement and affirms the strong market demand for the state-of-the-art, fuel-efficient A220 Family.
"NAC's order for the A220 shows this aircraft is just as relevant in the regional world as it is in the mainline one," said Christian Scherer, Airbus Chief Commercial Officer. "We are delighted to work with NAC going forward, we thank them for their confidence and congratulate them on their new offices in Limerick."
NAC is today the largest lessor of regional aircraft in the world, managing and owning 500 aircraft on lease to 78 airline customers in over 50 countries.
The A220 is the only aircraft purpose-built for the 100-150 seat market; it delivers unbeatable fuel efficiency and widebody passenger comfort in a single-aisle aircraft. The A220 brings together state-of-the-art aerodynamics, advanced materials and Pratt & Whitney's latest-generation PW1500G geared turbofan engines to offer at least 20% lower fuel burn per seat compared to previous-generation aircraft, along with significantly lower emissions and a reduced noise footprint. The A220 offers the performance of larger single-aisle aircraft. At the end of December 2019, the A220 had accumulated 600 orders and over 100 aircraft in service with seven operators worldwide.
@Airbus #A220 #nordicaviationcapital
For further information about A220 family, please click https://www.airbus.com/aircraft/passenger-aircraft/a220-family.html.
[España] Un millón y medio de saltos en el aniversario del primer salto paracaidista del Ejército del Aire
Además, durante la mañana se han realizado varios saltos paracaidistas en distintas modalidades y aviones a cargo de la Patrulla Acrobática de Paracaidismo del Ejército del Aire (PAPEA) y del Escuadrón de Zapadores Paracaidistas (EZAPAC).
El paracaidismo militar en España tiene a su pionero en la figura del capitán Méndez Parada, que da nombre a la EMP y que en los años 20 del siglo pasado llevó a cabo los primeros cursos de paracaidismo en España. Murió heroicamente en accidente aéreo cerca de Getafe cuando, a punto de estrellarse el biplano que pilotaba acompañado de un soldado, le cedió a este su paracaídas para que pudiera salvar su vida.
En su honor y desde hace 72 años, la escuela en la que se adiestran todos los paracaidistas de las Fuerzas Armadas y Fuerzas y Cuerpos de seguridad del Estado, lleva su nombre. Desde su fundación, se han realizado ya casi un millón y medio de saltos paracaidistas.
La EMP cuenta con unas instalaciones para la enseñanza del paracaidismo, que se encuentran entre las más avanzadas del mundo. Dispone de una torre de lanzamiento y un simulador de descenso para apertura automática, inaugurados en el año 2005, que han permitido elevar la seguridad de los saltadores y disminuir el número de bajas para obtener la aptitud de cazador paracaidista.
Y para la enseñanza del paracaidismo en la modalidad de apertura manual, se pusieron en funcionamiento a principios del año 2007 dos simuladores: un simulador virtual que sirve para entrenar el vuelo con el paracaídas abierto, y el simulador de caída libre, coloquialmente conocido como túnel de viento.
jueves, 23 de enero de 2020
Boeing seeks to borrow $10 billion or more amid 737 MAX crisis
http://aviationnews.eu/avnews16/news/2020/01/boeing-seeks-to-borrow-10-billion-or-more-amid-737-max-crisis/
Bell Boeing CMV-22B Osprey (C-2A Greyhound replacement) Successfully Completes First Flight
he first CMV-22B Osprey, built by Boeing [NYSE: BA] and Bell Textron Inc., a Textron Inc. (NYSE: TXT) company, completed first flight operations at Bell's Amarillo Assembly Center. The CMV-22B is the latest variant of the tiltrotor fleet, joining the MV-22 and CV-22 used by the U.S. Marine Corps and U.S. Air Force.
The U.S. Navy will use the CMV-22B to replace the C-2A Greyhound for transporting personnel, mail, supplies and high-priority cargo from shore bases to aircraft carriers at sea. Bell Boeing designed the Navy variant specifically for carrier fleet operations by providing increased fuel capacity for the extended range requirement. The mission flexibility of the Osprey will increase operational capabilities and readiness, in addition to ferrying major components of the F-35 engine.
"With the ability to travel up to 1,150 nautical miles, the CMV-22B will be a lifeline for our servicemen and women out at sea," said Kristin Houston, vice president, Boeing Tiltrotor Programs and director, Bell Boeing V-22 Program. "The quality and safety built into this aircraft will revolutionize the way the U.S. Navy fulfills its critical carrier onboard delivery mission."
Bell Boeing will deliver the first CMV-22B to Air Test and Evaluation Squadron (HX) 21 in early 2020 for developmental test.
For more information on Defense, Space & Security, visit www.boeing.com. Follow us on Twitter: @BoeingDefense and @BoeingSpace.
Moon, Mars and beyond: Space exploration highlights coming up in 2020
https://newatlas.com/space/space-exploration-launches-2020/
ARJ21 wins First Prize for 2019 State Scientific and Technological Progress Award
The Awarding Ceremony of State Science and Technology Awards was solemnly held in Beijing on January 10th, 2020. The China-made regional jet ARJ21 won the First Prize for 2019 State Scientific and Technological Progress Award. This is the highest award that ARJ21 aircraft program has received so far.
The State Scientific and Technological Progress Award is one of the five State Science and Technology Awards established by the State Council, and is conferred on citizens or organizations that have made outstanding contribution in technical research, technological development, technical innovation, applying and disseminating advanced scientific and technological achievements, promoting the industrialization of high and new technology, or completing major scientific and technological projects, plans and programs. It is divided into the Special Prize, the First Prize and the Second Prize.
ARJ21 aircraft is the first self-developed turbofan regional jet with independent intellectual property right. The program was approved by the state in April 2002. ARJ21 aircraft completed its maiden flight on November 28th, 2008, and obtained Type Certificate (TC) from Civil Aviation Administration of China (CAAC) on December 30th, 2014. The first ARJ21 aircraft was delivered to Chengdu Airlines on November 29th, 2015, and successfully completed the maiden trip on June 28th, 2016, which breaks the situation of there being no China-made jets on Chinese airlines. With the development of ARJ21 aircraft, China has gone through the entire process of design, manufacturing, testing, flight test, batch production, delivery and operation of a jet, mastered the core technologies for the research and development of transport category civil jets, filled in the gap of the whole-course practice of transport category jets independently developed by China, achieved great improvement in the integrated innovation capability of transport category jets in China's aviation industry, and further solidified the foundation for the development of China's civil aircraft industry.
After more than ten years of arduous exploration and independent innovation, ARJ program team has established a systematic and complete civil aircraft airworthiness design and verification technology system for the first time in China; solved the technical problem of inter-system interconnection security evaluation; overcame the technical difficulties in special risk verification, such as both engine failure, tire burst, bird strike and engine rotor burst; made breakthroughs in analysis and test verification technologies in extremely complicated meteorological conditions such as icing, contaminated runway, crosswind, high temperature and extreme cold; acquired the knowledge of a number of key verification flight test technologies such as high horizontal tail aircraft stall, minimum lift-off speed, landing gear shimmy, flight control fault simulation and functional reliability; and filled in multiple gaps in China's aviation industry. The ARJ21 aircraft program has obtained 140 invention patents, proposed 59 international and national standards, 6,778 enterprise/industry standards, and won 117 provincial and ministerial scientific and technological awards.
ARJ21 aircraft program was launched on the basis that there is no civil aircraft model task in China for many years and there is serious brain drain, designers and managers have insufficient research and understanding of aircraft certification regulations and aircraft operation regulations, and there is almost no preliminary research, therefore the technology span is far greater than just one generation of aircraft. During the airworthiness certification phase, ARJ21 aircraft completed a total of 300 ground test items and 528 verification flight test items, accumulated 2,942 sorties of flight test and 5,258 flight hours, closed 398 airworthiness provisions, and completed 3,418 compliance reports.
As a "pioneer" for domestic commercial aircraft, ARJ21 aircraft has led to the formation of an airworthiness review system that complies with international standards and the airworthiness review capability of transport category civil jets. Enterprises, colleges and universities in many provinces and cities across the country has participated in the research and development of the program, which drives the development of the whole industry chain of "industry, university and research", and promotes the formation of an aviation industry cluster covering aircraft material suppliers, aircraft part suppliers, aircraft final assembly plants, maintenance and service providers, and aviation service providers.
The ARJ21 aircraft of Chengdu Airlines began to operate in the international round-trip route between Harbin and Vladivostok on October 26th, 2019, which was the first time for a China-made aircraft to fly abroad, and the commercial operation of ARJ21 aircraft has gotten a new leap. Up to now, a total of 22 ARJ21 aircraft have been delivered to customers, and the aircraft have successively operated in more than 37 routes in more than 38 cities, and carried more than 690,000 passengers.
Leonardo’s Falco Xplorer drone completes first flight
- The new Remotely-Piloted Air System (RPAS), the largest Leonardo has ever built, has successfully undergone its first test flight
- The Falco Xplorer offers persistent, multi-sensor strategic surveillance for military and civil customers, either as an integrated product or as a managed service
- Leonardo is a global leader in unmanned technology, with expertise across aircraft, sensors, mission systems and ground control stations
- Leonardo and the Italian Air Force's long-standing cooperative relationship is embodied by the technical and engineering support delivered by ITAF Test Flight Centre
Lockheed Martin Launches First Smart Satellite Enabling Space Mesh Networking
https://news.lockheedmartin.com/2020-01-16-Lockheed-Martin-Launches-First-Smart-Satellite-Enabling-Space-Mesh-Networking
Experimental nanosat payload developed in nine months tests new software-defined mission, on-board multi-core processing and orbital cloud communications
A new era of space-based computing is now being tested in-orbit that will enable artificial intelligence, data analytics, cloud networking and advanced satellite communications in a robust new software-defined architecture. Recently, Lockheed Martin (NYSE: LMT) launched the Pony Express 1 mission as a hosted payload on Tyvak-0129, a next-generation Tyvak 6U spacecraft.
"Early on-orbit data show Pony Express 1 is performing its important pathfinding mission very well. Lockheed Martin's HiveStar™ technology on board will give our customers unparalleled speed, resiliency and flexibility for their changing mission needs by unlocking even greater processing power in space," said Rick Ambrose, executive vice president of Lockheed Martin Space. "This is the first of several rapid, self-funded experiments demonstrating our ability to systematically accelerate our customers' speed to mission while reducing risk from new technologies."
Pony Express 1, an example of rapid prototyping, was developed, built and integrated in nine months, and was funded completely by Lockheed Martin Research and Development funding. This orbital proving ground is validating payload hardware and software, and is packed with new technology that fits into a satellite the size of a shoebox. Some of the key technologies being flight-tested include:
HiveStar™ software validates advanced adaptive mesh communications between satellites, shared processing capabilities and can take advantage of sensors aboard other smart satellites to customize missions in new ways previously difficult to achieve in space.
A software-defined radio that allows for high-bandwidth hosting of multiple RF applications, store-and-forward RF collection, data compression, digital signal processing and waveform transmission.
3D-printed wideband antenna housing developed by Lockheed Martin's Advanced Technology Center.
Pony Express 1 is a dual-use payload that enables mesh networks in space through HiveStar™ and a second function that tests space to ground remote sensing. Future research missions this year, like Pony Express 2, will further advance cloud networking concepts among satellites, as well as validating Lockheed Martin's SmartSat™ software-defined satellite architecture which enables streamlined hosting of flexible mission apps. This mission consists of two 12U cubesats with faster, more capable ultra-scale processors that unlock in-orbit data analytics and artificial intelligence. Equipped with miniaturized cross-link and precision timing, Pony Express 2 is a trailblazer for autonomous teaming in space and true cloud networking.
About Lockheed Martin
Headquartered in Bethesda, Maryland, Lockheed Martin is a global security and aerospace company that employs approximately 105,000 people worldwide and is principally engaged in the research, design, development, manufacture, integration and sustainment of advanced technology systems, products and services.
About Tyvak Nano-Satellite Systems, Inc., a Terran Orbital corporation
Founded in 2013 and headquartered in Irvine, California, Tyvak Nano-Satellite Systems, Inc. is an industry leader, delivering optimized, end-to-end nano- and microsatellite solutions. Trusted by civil, defense and commercial organizations, the Company leverages expertise, low-cost operating infrastructure, and the limitless opportunities of satellite miniaturization to achieve timely and economical mission success. Through its global ground station network, Tyvak provides worldwide coverage for on-orbit operations around the clock. For more information, please visit https://www.tyvak.com/
U.S. Army and Air Force Team up for Multi-Domain Operations
Two U.S. Air Force F-35s were integrated with the U.S. Army Integrated Air and Missile Defense Battle Command System (IBCS), providing an airborne sensor capability to successfully detect, track and intercept near simultaneous air-breathing threats in a test at White Sands Missile Range, New Mexico. The December 2019 test marked the first time F-35s were used as sensors during an IBCS live fire test against multiple airborne targets.
Linking F-35s to IBCS via the Multifunction Advanced Data Link (MADL) provided enhanced situational awareness and weapons-quality track data to engage airborne targets. The proof of concept demonstration used experimental equipment developed by Lockheed Martin, including the Harvest Lightning Ground Station and IBCS adaptation kit (A-Kit).
"The F-35's advanced sensors and connectivity enable it to gather, analyze and seamlessly share critical information with the joint fighting force to lead the multi-domain battlespace," said Greg Ulmer, Lockheed Martin vice president and general manager of the F-35 program. "This test validated the F-35's capability to serve as an airborne sensor and extend the range of critical Integrated Air and Missile Defense interceptors."
"This test represents a major milestone for multi-domain operations by leveraging airborne assets to detect and track threats that can then be countered with ground-based effectors. This demonstrates a tremendous capability to defeat threats that are terrain masked or beyond ground-based sensor detection capabilities due to terrain and curvature of the earth," said Jay Pitman, vice president, Lower Tier Integrated Air and Missile Defense at Lockheed Martin Missiles and Fire Control.
This test is the latest in a series of successful activities to demonstrate the F-35's role as the keystone of the joint force. Lockheed Martin is evolving technologies that connect, share and learn to create a holistic network that provides unprecedented situational awareness across the battlespace and enables Multi-Domain Operations.
For additional information, visit our https://www.lockheedmartin.com/en-us/capabilities/multi-domain-operations.html.
Airbus displays its customer-centric solutions at Heli-Expo 2020
Airbus Helicopters will be showcasing its civil range of helicopters at Heli-Expo 2020, which runs from 28-30 January at the Anaheim Convention Center in California.
Centre-stage on booth 3432 will be an H125, an ACH130 Aston Martin Edition, and an H175. The H125 will be displayed with the company's latest improvements destined to better serve aerial work operations. Following the success of Airbus Corporate Helicopters (ACH) since its launch in 2017 as the dedicated Private & Business Aviation helicopter platform, particularly with the ACH145 and ACH160, Airbus has renewed its offer for the ACH130 by partnering with Aston Martin, the epitome of automotive art. The H175 on the booth will be displayed in an offshore transportation configuration. In addition, an H160 immersive experience will highlight the helicopter's breakthrough innovations in three of its major missions – offshore transportation, private and business aviation, and emergency medical services, as well as its digital support concept.
"Customer centricity is the focus of our display at Heli-Expo this year, as it is for our operations on a daily basis," said Bruno Even, Airbus Helicopters CEO. "The continuous product improvements and service enhancements being implemented on our wide range of aircraft are intended to provide value to our customers and to facilitate the varying missions of our helicopters all over the world."
Committed to accompanying customers long after an aircraft is first delivered, Airbus will present its latest selection of support and service enhancements at the HCare corner, where visitors can learn more about the new online customer portal, digital services, analytics, training, and HCare global contracts. These offers, among others, enable customers to increase availability and mission success, optimise their costs, lower the maintenance burden, enhance safety and sustain the value of their assets.
In addition, the Airbus Helicopters static display, adjacent to the booth, will feature an AS332 from Heli Austria in a firefighting configuration, an H125 from Brainerd Helicopters in an aerial work configuration and an H125 from LAPD in a law enforcement configuration, an H145 from San Diego Gas & Electric, and last but not least, the Vahana demonstrator, having just completed its flight test campaign. On the flight line at Heli-Expo, customers can experience a demo in an H125 equipped with the new Garmin TXi TM avionics, an H135, and an ACH130 with a bespoke interior.
Stay tuned for updates by following us on Twitter: @AirbusHeli, @AirbusHeli_usa, @AirbusPress, Instagram @airbus_helicopters and Facebook @AirbusHelicopters, @AirbusHelicoptersInc. Showgoers can also download the Airbus Press news app available for Android and Apple devices to keep up with all of the news during the show.
Don't miss the Airbus booth 3432 in Hall B.
Airbus to add A321 production capabilities in Toulouse
Following its strategy to keep its overall production system at the leading edge of technology and to increase industrial capacity and flexibility, Airbus has decided to create new A321 production capabilities at its site in Toulouse.
By mid-2022 the current A380 Lagardère facility in Toulouse will accommodate a digitally-enabled A321 line as a step to modernise the A320 production system in Toulouse. The new facilities will provide more flexibility for A321 production, while keeping the overall single-aisle industrial capacity in Toulouse flat.
"We are enjoying an unprecedented high demand for our winning A320neo Family and especially its A321 Long Range (LR) and Xtra Long Range (XLR) derivatives," said Michael Schoellhorn, Airbus Chief Operating Officer. "In order to optimise the industrial flow, we have decided to increase our global A321 production capacity and flexibility as well as to establish a next generation Final Assembly Line in Toulouse."
Currently, the only European Final Assembly Line to assemble A321s is at Airbus' Hamburg site. In addition, the A321 is also being assembled and delivered from Mobile, Alabama, USA.
Toulouse was selected for several reasons such as: overall competitiveness, time to market, investment cost, available floor space and resources. The decision has been communicated to Airbus' social partners.
The A320neo Family is the world's best-selling single aisle with over 7,100 aircraft sold to over 110 customers. Within this family, the A321XLR is the latest evolutionary step which responds to market needs for even more range and payload, creating more value for the airlines. From 2023, it will deliver an unprecedented Xtra Long Range of up to 4,700nm and a 30% lower fuel burn per seat compared with previous generation competitor aircraft. For passengers, the A321XLR's new Airspace cabin will provide the best travel experience, while offering seats in all classes with the same high-comfort as on a long-haul wide-body, with the low costs of a single-aisle aircraft.
#A321 #A321XLR #WeMakeItFly
Airbus to showcase world-class technology at DefExpo
Airbus will showcase its best-in-class military products and cutting-edge defence technologies at the DefExpo airshow between February 5 and 8, 2020, in Lucknow, Uttar Pradesh, India. Airbus' exhibits at the show will demonstrate its capabilities and commitment to kick-start a defence industrial base in the country.
Airbus will exhibit at Stand S46, Hall 07. Visitors to the stand will find scale models of the highly versatile C295 aircraft which is proven around the world as a tough, reliable and high-performance workhorse with outstanding lifecycle costs and excellent performance on short or unpaved runways. Airbus has bid to manufacture the C295 in India together with Tata Advanced Systems. The visitors will also learn about the combat-proven A330 MRTT, the only new generation aerial refueller in full service today.
In addition, exhibits of the AS565 MBe Panther, the H145M and the H225M helicopters will be on display. Airbus has offered to build the Panther or the H145M in India under the government's Strategic Partnership (SP) model for the Naval Utility Helicopters (NUH) programme. The H225M has been offered as part of the Naval Multi Role Helicopter (NMRH) programme. Designed to cater to all the needs of India's armed forces, these helicopters would be produced in India in partnership with Mahindra Defence.
"Airbus is uniquely placed to participate in the ambitious growth journey of the Indian defence industry and take it to new heights. DefExpo is a key platform to showcase our commitment to the country's ever-growing aerospace and defence needs," said Anand Stanley, President & Managing Director, Airbus India & South Asia.
The several defence projects that Airbus India is participating in will lead to the creation of thousands of jobs, skilling of people, technology absorption and will catalyse the local supplier base. Airbus currently works with more than 45 suppliers in India, and the annual procurement from them is worth more than $650 million. Airbus' network of dedicated Indian suppliers provides engineering and IT services, aerostructures and materials for several of Airbus' leading aircraft. Over 7,000 people, including 1,500 engineers, are currently employed across Airbus projects in the country.
Boeing Statement on 737 MAX Return to Service
As we have emphasized, the FAA and other global regulators will determine when the 737 MAX returns to service. However, in order to help our customers and suppliers plan their operations, we periodically provide them with our best estimate of when regulators will begin to authorize the ungrounding of the 737 MAX.
We are informing our customers and suppliers that we are currently estimating that the ungrounding of the 737 MAX will begin during mid-2020. This updated estimate is informed by our experience to date with the certification process. It is subject to our ongoing attempts to address known schedule risks and further developments that may arise in connection with the certification process. It also accounts for the rigorous scrutiny that regulatory authorities are rightly applying at every step of their review of the 737 MAX's flight control system and the Joint Operations Evaluation Board process which determines pilot training requirements.
Returning the MAX safely to service is our number one priority, and we are confident that will happen. We acknowledge and regret the continued difficulties that the grounding of the 737 MAX has presented to our customers, our regulators, our suppliers, and the flying public. We will provide additional information about our efforts to safely return the 737 MAX to service in connection with our quarterly financial disclosures next week.
miércoles, 22 de enero de 2020
martes, 21 de enero de 2020
Is The World’s Fighter Market Set To Thrive In 2020?
https://aviationweek.com/defense-space/z/worlds-fighter-market-set-thrive-2020
lunes, 20 de enero de 2020
Safran economy seat evolution underscores passenger desire for sleep
https://runwaygirlnetwork.com/2020/01/14/safran-economy-seat-evolution-underscores-passenger-desire-for-sleep/
Certification process for 777X is another hurdle for Boeing
https://leehamnews.com/2020/01/16/certification-process-for-777x-is-another-hurdle-for-boeing/
Bjorn’s Corner: Why e in ePlane shall stand for environment, Part 5.
https://leehamnews.com/2020/01/17/bjorns-corner-why-e-in-eplane-shall-stand-for-environment-part-5/
Rolls-Royce takes majority holding in power storage specialist Qinous
Rolls-Royce will hold a 73.1% majority stake in Berlin-based electricity storage specialist Qinous GmbH from 15 January 2020. The Group is acquiring the shareholdings of all other current financial investors, including that of investment holdings company IBB Beteiligungsgesellschaft mbH (Berlin). The founding shareholders will continue to hold shares in the company and will retain their current roles in the business. It has been agreed not to disclose details of the purchase price or the other departing shareholders.
Rolls-Royce had already acquired a 19.9% stake in the former start-up back in October 2018. The company is involved in battery storage systems and associated control systems, and has already implemented storage solutions around the world.
"Our new subsidiary is to play a pivotal role going forward," said Andreas Schell, CEO of Rolls-Royce Power Systems Division. "This is where we are going to pool all the division's microgrid activities – from simple storage solutions to complete, complex microgrid solutions of various sizes and configurations. As a young, start-up-style company, Qinous brings expertise that is an ideal complement to Rolls-Royce's industrial credentials. Together we will be able to respond quickly and with great professionalism to the demands of the market," he continued.
The joint development work on a range of storage solutions in recent months has shown that the two companies are an excellent fit and, as Schell explained, "that we can achieve new market potential by integrating more closely. We see great market potential for sustainable power supplies, especially for distributed, environmentally-friendly MTU microgrid solutions."
"Taking a majority holding in Qinous is a major step forward as we transform into a provider of integrated solutions for our customers. In future, we will be able to offer not just the technical solution and associated service offerings, but the finance too," said Schell. Qinous has made a name for itself with modular, scalable, prefabricated plug-and-play battery products that combine renewable energy sources, power generators and battery storage technology. Rolls-Royce is a specialist in customized energy solutions with the worldwide sales and service network of its product and solution brand MTU.
"This even closer partnership between Rolls-Royce and Qinous is a logical and consistent step towards opening up the rapidly growing microgrid market. The functionality and reliability of the solutions have been proven in a large number of projects. Now, with MTU's experience and global presence, we can meet demand more quickly and more comprehensively," said Steffen Heinrich, co-founder and co-managing director of Qinous. "Also on behalf of co-managing director Reinhard Edelmann and co-founder Busso von Bismarck, I want to thank the seedcorn investors who made it possible to set Qinous up as a company, and who have supported us actively right through to the present day."
Sabine Wolff, Investment Manager at IBB Beteiligungsgesellschaft commented: "We are delighted to have found an internationally renowned partner for Qinous in the form of Rolls-Royce. The combination of renewable energies and storage solutions, which are already being used successfully in on-grid and off-grid applications and to safeguard grid stability, will also find further areas of application in tomorrow's microgrid markets. The partnership between Rolls-Royce and Qinous has become a success story for the Berlin operation, and presents us with an attractive exit opportunity."
The modular component system of the coordinated Qinous/MTU product range will in future allow the configuration of solutions from 30 kW/30kWh to several megawatts. "The range of services and deliverables covers the needs of commercial enterprises, municipal utilities, energy suppliers, and even sizeable industrial plants. Together with Qinous, we can offer customers a wide range of microgrid solutions consisting of different combinations of power generation and storage systems. In this way we will ensure sustainable, cost-optimized and – above all – climate-friendly power supplies, whether connected to the public grid or independent of it," said Cordelia Thielitz, Vice President of Rolls-Royce's Microgrid Solutions business. "The key to this is the comprehensive expertise in storage technology, the efficient integration of microgrid components and the development of intelligent control systems," she emphasized.
Qinous employs around 40 people in Berlin. Rolls-Royce is engaged in research and development of microgrids and power generators at four locations: Friedrichshafen, Ruhstorf, Augsburg and Mankato (US).
Boeing CEO Statement on US-China Trade Deal
oeing (NYSE: BA) President and CEO Dave Calhoun issued the following statement regarding the announcement today of a US-China trade deal:
Boeing has a long-standing partnership with China that spans nearly 50 years. We're proud that Boeing airplanes will continue to be a part of this valued relationship, one that has fueled aerospace innovation and sustained manufacturing jobs.
Boeing applauds Presidents Trump and Xi as well as Vice Premier Liu, Secretary Mnuchin and Ambassador Lighthizer for their leadership in building a fair and mutually-beneficial trading relationship between the United States and China.
CALC signs purchase agreement for 40 additional A321neo aircraft
CALC (China Aircraft Leasing Group Holdings Limited), a full value-chain aircraft solutions provider for global airlines, has reached an agreement with Airbus on its remaining backlog, and includes an additional order for 40 A321neo aircraft. It also includes a conversion of 15 of its existing A320neo backlog into A321neos. Together with a previous order for 11 A321neos, CALC's total order for the type rises to 66.
CALC's order is an endorsement for the A321neo and reaffirms the market demand for the aircraft. With unbeatable fuel efficiency and lowest operating costs, it is the best match for CALC's customers. To date, from CALC's total order for 252 A320 Family aircraft, 87 have been delivered, of which one is an A321neo.
The A321neo is the largest member of the A320 Family, seating up to 240 passengers, depending on cabin configuration. Incorporating the latest engines, aerodynamic advances, and cabin innovations, the A321neo offers a reduction in fuel consumption of 20% as well as a 50% noise reduction. To date, the A320 Family has won more than 15,300 orders and more than 9,000 aircraft have been delivered worldwide.
Dynetics’ X-61A Gremlins airborne launchable air vehicle performs its maiden flight
The test took place at Dugway Proving Ground near Salt Lake City, Utah. Testing operations involved one captive-carry mission aboard a TBM, Inc. C-130A and an airborne launch and free flight of the X-61A that lasted one hour and 41 minutes. The test objectives included:
· Demonstrating a successful launch of the GAV from the C-130
· Demonstrating a rate capture, wing deployment, cold engine start, and transition to stable, powered flight
· Collecting data on GAV subsystem operation and performance
· Verifying air and ground-based command and control systems, including data link performance and handovers between air and ground control
· Deploying the GAV docking arm
· Demonstrating the flight termination and ground (parachute) recovery of the GAV (demonstration system only - not part of the operational system)
The X-61A flew as predicted with no anomalies, achieving all test objectives that relate to the operational system. At the end of the mission, the engine was shut down and a drogue chute successfully deployed to terminate flight. Unfortunately, the vehicle was lost during the ground recovery sequence due to a failure to extract the main chute.
Managed out of DARPA's Tactical Technology Office (TTO), the overarching goal of Gremlins is to accelerate the ability to perform aerial launch and recovery of volley quantities of low-cost, reusable unmanned aerial systems (UASs). This test is the next step toward the completion of the program's Phase 3 demonstration objectives, which include a final flight test to demonstrate the ability to recover four GAVs in under 30 minutes.
"This flight marks a historic milestone for Dynetics and the Gremlins program," said Tim Keeter, Dynetics Gremlins program manager. "The GAV flew beautifully and our command and control system kept us in total control of the GAV for the entire flight. The loss of our vehicle validates our decision to build five GAVs for Phase 3; we still have four remaining. Overall, I am proud to see all the hard work pay off and we are excited to continue this momentum towards the first airborne recovery in early 2020."
The Gremlins team celebrated a number of milestones in 2019 including a successful flight test of the docking system in February. In March, they executed the first flight of the GAV avionics system, installed onboard the Calspan Variable Stability System (VSS) Lear Jet as a dress rehearsal for this November 2019 test. Dynetics also hosted a stakeholder's day highlighting a live engine test in July and received a U.S. Air Force-assigned X-61A designation in August.
The Dynetics team was one of four companies awarded Phase 1 in 2016. Phase 2 was awarded in March 2017 to two of those four performers, and Phase 3 followed in April 2018, naming Dynetics the top performer.
"This flight test validates all the engineering design work, analysis, and ground testing we have performed in the past two and a half years," Brandon Hiller, chief engineer for the X-61A said. "We have a lot of confidence in the vehicle's performance and overall design going forward, and the telemetry data from the flight compares exceptionally well to our modeling predictions. Our team has done a superb job to achieve first flight of this unique aircraft in such a short amount of time, and we are eager to get this new capability into the hands of the DoD."
The Dynetics Gremlins team consists of companies that represent best-in-class capabilities for their roles on the program - Kratos Unmanned Aerial Systems, Williams International, Applied Systems Engineering, Inc., Kutta Technologies, Inc., Moog Inc., Sierra Nevada Corporation, Systima Technologies, Inc., and Airborne Systems.
https://youtu.be/P3DncMeGqTg
Boeing discovers new software problem on the 737 MAX
https://www.aviation24.be/manufacturers/boeing/737/max/boeing-discovers-new-software-problem-on-the-737-max/
Bombardier Mulls Exit from A220 Program
https://www.ainonline.com/aviation-news/air-transport/2020-01-16/bombardier-mulls-exit-a220-program
NBAA Updates Resource Available For Single Pilot Operations Of VLJ And TAA
http://www.aero-news.net/index.cfm?do=main.textpost&id=782b0fcd-5db1-41c9-8865-cf4f8f51ffdb
jueves, 16 de enero de 2020
Airbus demonstrates first fully automatic artificial-vision-based take-off - Innovation
– Airbus has successfully performed the first fully automatic vision-based take-off using an Airbus Family test aircraft at Toulouse-Blagnac airport. The test crew comprising of two pilots, two flight test engineers and a test flight engineer took off initially at around 10h15 on 18 December and conducted a total of 8 take-offs over a period of four and a half hours.
"The aircraft performed as expected during these milestone tests. While completing alignment on the runway, waiting for clearance from air traffic control, we engaged the auto-pilot," said Airbus Test Pilot Captain Yann Beaufils. "We moved the throttle levers to the take-off setting and we monitored the aircraft. It started to move and accelerate automatically maintaining the runway centre line, at the exact rotation speed as entered in the system. The nose of the aircraft began to lift up automatically to take the expected take-off pitch value and a few seconds later we were airborne."
Rather than relying on an Instrument Landing System (ILS), the existing ground equipment technology currently used by in-service passenger aircraft in airports around the world where the technology is present, this automatic take-off was enabled by image recognition technology installed directly on the aircraft.
Automatic take-off is an important milestone in Airbus' Autonomous Taxi, Take-Off & Landing (ATTOL) project. Launched in June 2018, ATTOL is one of the technological flight demonstrators being tested by Airbus in order to understand the impact of autonomy on aircraft. The next steps in the project will see automatic vision-based taxi and landing sequences taking place by mid-2020.
Airbus' mission is not to move ahead with autonomy as a target in itself, but instead to explore autonomous technologies alongside other innovations in areas such as materials, electrification and connectivity. By doing so, Airbus is able to analyse the potential of these technologies in addressing the key industrial challenges of tomorrow, including improving air traffic management, addressing pilot shortages and enhancing future operations. At the same time Airbus is leveraging these opportunities to further improve aircraft safety while ensuring today's unprecedented levels are maintained.
For autonomous technologies to improve flight operations and overall aircraft performance, pilots will remain at the heart of operations. Autonomous technologies are paramount to supporting pilots, enabling them to focus less on aircraft operation and more on strategic decision-making and mission management.
First Ilyushin IL-96-400M Takes Shape
https://www.ainonline.com/aviation-news/air-transport/2020-01-13/first-ilyushin-il-96-400m-takes-shape
Leonardo awarded contract for 32 TH-73A helicopters by U.S. Department of Defense
- Contract valued at USD 176,472,608 for aircraft, spares, initial support and training; work to be completed in October 2021
- This contract, as Fiscal Year 2020 aircraft procurement (Navy) funds, was competitively procured via a request for proposal of various offers
- Profumo: "On the cusp of celebrating nearly 40 years of operating in Philadelphia, Leonardo is thrilled the U.S. Navy has selected us as a local and long term partner. We are proud to be a core contributor to the future of U.S. defense."
Carbon nanotube film produces aerospace-grade composites with no need for huge ovens or autoclaves.
press release
http://news.mit.edu/2020/carbon-nanotubes-making-airplane-aerospace-parts-1013
A modern airplane's fuselage is made from multiple sheets of different composite materials, like so many layers in a phyllo-dough pastry. Once these layers are stacked and molded into the shape of a fuselage, the structures are wheeled into warehouse-sized ovens and autoclaves, where the layers fuse together to form a resilient, aerodynamic shell.
Now MIT engineers have developed a method to produce aerospace-grade composites without the enormous ovens and pressure vessels. The technique may help to speed up the manufacturing of airplanes and other large, high-performance composite structures, such as blades for wind turbines.
The researchers detail their new method in a paper published today in the journal Advanced Materials Interfaces.
"If you're making a primary structure like a fuselage or wing, you need to build a pressure vessel, or autoclave, the size of a two- or three-story building, which itself requires time and money to pressurize," says Brian Wardle, professor of aeronautics and astronautics at MIT. "These things are massive pieces of infrastructure. Now we can make primary structure materials without autoclave pressure, so we can get rid of all that infrastructure."
Wardle's co-authors on the paper are lead author and MIT postdoc Jeonyoon Lee, and Seth Kessler of Metis Design Corporation, an aerospace structural health monitoring company based in Boston.
Out of the oven, into a blanket
In 2015, Lee led the team, along with another member of Wardle's lab, in creating a method to make aerospace-grade composites without requiring an oven to fuse the materials together. Instead of placing layers of material inside an oven to cure, the researchers essentially wrapped them in an ultrathin film of carbon nanotubes (CNTs). When they applied an electric current to the film, the CNTs, like a nanoscale electric blanket, quickly generated heat, causing the materials within to cure and fuse together.
With this out-of-oven, or OoO, technique, the team was able to produce composites as strong as the materials made in conventional airplane manufacturing ovens, using only 1 percent of the energy.
The researchers next looked for ways to make high-performance composites without the use of large, high-pressure autoclaves — building-sized vessels that generate high enough pressures to press materials together, squeezing out any voids, or air pockets, at their interface.
"There's microscopic surface roughness on each ply of a material, and when you put two plys together, air gets trapped between the rough areas, which is the primary source of voids and weakness in a composite," Wardle says. "An autoclave can push those voids to the edges and get rid of them."
Researchers including Wardle's group have explored "out-of-autoclave," or OoA, techniques to manufacture composites without using the huge machines. But most of these techniques have produced composites where nearly 1 percent of the material contains voids, which can compromise a material's strength and lifetime. In comparison, aerospace-grade composites made in autoclaves are of such high quality that any voids they contain are neglible and not easily measured.
"The problem with these OoA approaches is also that the materials have been specially formulated, and none are qualified for primary structures such as wings and fuselages," Wardle says. "They're making some inroads in secondary structures, such as flaps and doors, but they still get voids."
Straw pressure
Part of Wardle's work focuses on developing nanoporous networks — ultrathin films made from aligned, microscopic material such as carbon nanotubes, that can be engineered with exceptional properties, including color, strength, and electrical capacity. The researchers wondered whether these nanoporous films could be used in place of giant autoclaves to squeeze out voids between two material layers, as unlikely as that may seem.
A thin film of carbon nanotubes is somewhat like a dense forest of trees, and the spaces between the trees can function like thin nanoscale tubes, or capillaries. A capillary such as a straw can generate pressure based on its geometry and its surface energy, or the material's ability to attract liquids or other materials.
The researchers proposed that if a thin film of carbon nanotubes were sandwiched between two materials, then, as the materials were heated and softened, the capillaries between the carbon nanotubes should have a surface energy and geometry such that they would draw the materials in toward each other, rather than leaving a void between them. Lee calculated that the capillary pressure should be larger than the pressure applied by the autoclaves.
The researchers tested their idea in the lab by growing films of vertically aligned carbon nanotubes using a technique they previously developed, then laying the films between layers of materials that are typically used in the autoclave-based manufacturing of primary aircraft structures. They wrapped the layers in a second film of carbon nanotubes, which they applied an electric current to to heat it up. They observed that as the materials heated and softened in response, they were pulled into the capillaries of the intermediate CNT film.
The resulting composite lacked voids, similar to aerospace-grade composites that are produced in an autoclave. The researchers subjected the composites to strength tests, attempting to push the layers apart, the idea being that voids, if present, would allow the layers to separate more easily.
"In these tests, we found that our out-of-autoclave composite was just as strong as the gold-standard autoclave process composite used for primary aerospace structures," Wardle says.
The team will next look for ways to scale up the pressure-generating CNT film. In their experiments, they worked with samples measuring several centimeters wide — large enough to demonstrate that nanoporous networks can pressurize materials and prevent voids from forming. To make this process viable for manufacturing entire wings and fuselages, researchers will have to find ways to manufacture CNT and other nanoporous films at a much larger scale.
"There are ways to make really large blankets of this stuff, and there's continuous production of sheets, yarns, and rolls of material that can be incorporated in the process," Wardle says.
He plans also to explore different formulations of nanoporous films, engineering capillaries of varying surface energies and geometries, to be able to pressurize and bond other high-performance materials.
"Now we have this new material solution that can provide on-demand pressure where you need it," Wardle says. "Beyond airplanes, most of the composite production in the world is composite pipes, for water, gas, oil, all the things that go in and out of our lives. This could make making all those things, without the oven and autoclave infrastructure."
This research was supported, in part, by Airbus, ANSYS, Embraer, Lockheed Martin, Saab AB, Saertex, and Teijin Carbon America through MIT's Nano-Engineered Composite aerospace Structures (NECST) Consortium.
Void‐Free Layered Polymeric Architectures via Capillary‐Action of Nanoporous Films
Abstract
Here, a nanomaterial with morphology‐controlled nanoscale capillaries is utilized to overcome manufacturing challenges in layered polymeric architectures. It is demonstrated that the capillary pressure from a nanoporous film replaces the need for applied pressure to manufacture void‐free layered polymeric architectures. Manufacturing of aerospace‐grade advanced carbon fiber composites is performed for the first time without utilizing pressure from an autoclave. Combined with a conductive curing approach, this work allows advanced composites to be manufactured without costly oven or pressure vessel infrastructure. The nanomaterial‐enabled capillary pressure is quantified as 50% greater than typical pressures used in such processing, and is anticipated to overcome the limitations imposed by the requirement of high applied pressure in many other applications such as adhesive joining of various bulk materials including metals, press forming, and closed‐mold infusion processing of layered composites and polymers.














