Northrop Grumman researchers in Dayton, Ohio develop micro-scale testing for high-temperature, low-observable materials; Defect rate fell from 70% to under 10%

Northrop Grumman researchers in Dayton, Ohio develop micro-scale testing for high-temperature, low-observable materials; Defect rate fell from 70% to under 10% Micro Magic | Northrop Grumman Micro Magic In Dayton, a small team is turning tiny samples of advanced materials into major gains in stealth, quality and efficiency. In Dayton, a small team is turning tiny samples of advanced materials into major gains in stealth, quality and efficiency. By Suzanne Kubler In the world of aerospace, efficiency is paramount. A team of Northrop Grumman researchers in Dayton, Ohio, has that down to a science. They are pioneering methods inside the Dayton Survivability Advanced Materials Lab that are setting the standard in the industry. The group, led by chemist and materials process engineer, Amber Hancock, has found a way to transform minuscule quantities of complex materials into solutions that work seamlessly at full scale — saving resources and ensuring quality. Their work is revolutionizing how Northrop Grumman tests high-temperature materials, solving complex problems on a remarkably small scale. Just a tiny dab of specialized material, no larger than the eraser on the tip of a pencil, offers the Northrop Grumman team the answers to how much larger and costly quantities will respond to different factors. “Our lab developed techniques that even the material suppliers haven’t been able to figure out. They make the product and can’t predict the behavior of their own material like we can,” said Amber. “The raw material has changed over the years. The technique I developed can pick up on these changes and ensure consistent, high-quality parts, while other tests cannot.” The team’s efforts revolve around low-observable materials essential for the stealth capabilities of aircraft, as well as composite materials primarily for the B-2 Spirit program. Amber and her team are also creating coatings for new platforms that make them undetectable by radar. Amber estimates that before this process, 70% of the parts didn’t initially meet quality requirements; due to a change in raw material from the supplier — that number is now less than 10%. “Our team created methods in the industry that are completely unique to Northrop Grumman,” she said. This allows Northrop Grumman to be a step ahead of everyone else when it comes to solving materials issues as they arise. It also allows the team to come up with solutions to material needs as aircraft become more advanced with lighter materials and with higher temperature capability. “We know how to combine these things through small scale testing, and this knowledge is really powerful and keeps us ahead in the game of stealth for the next gen fighters,” said Amber. Robert Jurek, a systems engineer, works in the Advanced Materials Lab with Amber. Robert specializes in composite materials and says the testing process Amber developed is a game-changer. “It has opened the door to develop a more robust cure cycle that works with every material that comes through our door from the supplier despite chemical differences,” said Robert. He says it allows the team to use materials that would not have worked through processing with the previous method. For Amber, who started her role at Northrop Grumman in early 2021, problem-solving is exhilarating, and her team’s cutting-edge work in support of the B-2 is her proudest career achievement so far. “Developing a technique for processing composite materials that provides high-temperature capability and strength has been the pinnacle of my career,” she said. “Helping to develop something so impactful this early on is extraordinary.” The personal satisfaction Amber gets from her work is rooted deeply in her background and community. She grew up in Dayton amidst a strong aerospace presence and wanted to follow in the footsteps of her father, her inspiration and a chemist who researched Air Force lubricants. During grad school, she spent time at Wright-Patterson Air Force Base, doing research for her master’s thesis. “I got to meet some of the Air Force personnel that our work at Northrop Grumman directly impacts,” said Amber. “I’m passionate about our mission and having friends who are Air Force pilots keeps our work’s impact front and center in my mind. Knowing that our innovations help them and other warfighters perform their missions safely is incredibly fulfilling.” Northrop Grumman’s Dayton Advanced Materials Lab uses micro-scale testing to predict full-scale behavior of high-temperature, low-observable composites, cutting defects, adapting to material changes, and improving performance and reliability for stealth platforms like the B-2 Spirit.

August 5, 2026

Fraunhofer IGB und Industriepartner Trocknung mit überhitztem Wasserdampf in Deutschland; deutliche Energieeinsparung und Erdgasverzicht

Fraunhofer IGB und Industriepartner Trocknung mit überhitztem Wasserdampf in Deutschland; deutliche Energieeinsparung und Erdgasverzicht Trocknung mit überhitztem Wasserdampf – strombasiert und energieeffizient Industrielle Trocknungsprozesse sind energieintensiv und klimaschädlich, da die Luft durch fossile Energien erhitzt wird. Mit einem neuen Ansatz dekarbonisieren Forschende am Fraunhofer-Institut für Grenzflächen- und Bioverfahrenstechnik IGB in Zusammenarbeit mit Industriepartnern den Prozess: Statt Heißluft verwenden sie überhitzten Wasserdampf. Kombiniert mit einer Wärmepumpe und einer smarten Steuerung, spart das Heißdampftrocknungsverfahren deutlich Energie und vermeidet den Einsatz von Erdgas. ...

August 4, 2026

RWE GET H2 Nukleus hydrogen from Lingen reaches Marl; enables industrial production at Marl.

RWE GET H2 Nukleus hydrogen from Lingen reaches Marl; enables industrial production at Marl. GET H2 Nukleus gains momentum: First hydrogen from Lingen reaches Marl RWE raises outlook for fiscal years 2026 and 2027 RWE to build large-scale storage at Hambach mine Denmark’s largest offshore wind farm takes shape: Half of wind turbines now installed at Thor The first hydrogen produced in the electrolysis in Lingen, Lower Saxony, has reached Marl in the northern Ruhr area. This marks the successful interaction of all components of the integrated GET H2 Nukleus hydrogen project. ...

August 4, 2026

UPM and Sappi definitive agreement signed for graphic paper joint venture in Europe; Anticipated €100m annual synergies

UPM and Sappi definitive agreement signed for graphic paper joint venture in Europe; Anticipated €100m annual synergies UPM – we renew the everyday Investor presentation July 2026 Our portfolio leverages competitive business platforms • Decarbonization solutions Biochemicals, biofuels, CO2-free energy • Advanced materials Adhesive materials, specialty materials, plywood • Renewable fibres Pulp, other bioproducts • Communication papers 2 | © UPM With the portfolio initiatives, we change the company profile, increasing its growth potential and margins 3 | © UPM High growth potential and unique position • Unique offering for new large electricity consumers, growth driven by electrification, datacenters and green industries • Biofuels and Biochemicals help reduce dependence on fossil fuels and decrease CO2 emissions Maximizing value creation and cash flow • World-class competitive platform in Uruguay, with further cost optimization and capex-efficient debottlenecking potential • Multi-fibre offering through flexible platform in Finland Healthy, predictable and profitable growth • Accelerate growth in high-performance applications (labels, liners, graphics, recyclable packaging) • Expansion in higher margin products, higher growth regions H1 2026 comparable EBIT continuing operations excl. Communication Papers Decarbonization solutions Advanced materials Renewable fibres ...

August 4, 2026

Fraunhofer IOF und Fraunhofer ISI veranstalten Quantum Hackathon in Jena; Kostenlos verfügbar: Quanten-Kompass und Eve on a Mission.

Fraunhofer IOF und Fraunhofer ISI veranstalten Quantum Hackathon in Jena; Kostenlos verfügbar: Quanten-Kompass und Eve on a Mission. Quantenkommunikation zum Tüfteln und (selbst) Testen - Fraunhofer IOF Projekt O-PEN vermittelt Grundlagen der Quantenkommunikation Quantenkommunikation zum Tüfteln und (selbst) Testen Was ist Quantenkommunikation und wie sicher ist sie wirklich? Dieser Frage widmete sich ein zweitägiger »Quantum Hackathon« vergangene Woche in Jena. Gemeinsam mit Forschenden der Fraunhofer-Institute IOF und ISI loteten rund zwanzig internationale Teilnehmende die Grenzen aktueller Quantenkommunikationssysteme aus – auch, um selbst ein besseres Verständnis von der komplexen Zukunftstechnologie zu bekommen. Die Veranstaltung läutete zugleich den Ausklang des vom Bundesministerium für Forschung, Technologie und Raumfahrt (BMFTR) geförderten Verbundprojekts O-PEN ein. Die gleichfalls im Projekt entwickelte Online-Wissensplattform Quanten-Kompass und das Onlinespiel Eve on a Mission stehen nun dauerhaft und kostenfrei für Forschung, Lehre und alle Interessierten zur Verfügung. ...

August 3, 2026

Bundesministerium für Forschung, Technologie und Raumfahrt startet Förderaufruf Innovationshub Biotech4Proteins in Deutschland; bis zu 15 Mio Euro ab 2027

Bundesministerium für Forschung, Technologie und Raumfahrt startet Förderaufruf Innovationshub Biotech4Proteins in Deutschland; bis zu 15 Mio Euro ab 2027 BioEconomy Newsletter Juli - BioEconomy e.V. jüngst wurde vom Bundesministerium für Forschung, Technologie und Raumfahrt (BMFTR) ein interessanter Förderaufruf gestartet . Mit dem sogenannten „Innovationshub Biotech4Proteins“ sollen die Zellkultivierung und Präzisionsfermentation für neue Lebensmittel gezielt vorangetrieben werden. Ziel ist die Entwicklung plattformbasierter Alternativen zu traditionellen Fleisch-, Fisch- und Milchprodukten. Für die erste dreijährige Umsetzungsphase werden ab 2027 bis zu 15 Millionen Euro bereitgestellt – ein starker Impuls für den Wirtschafts- und Innovationsstandort Deutschland, den der BioEconomy e.V. ausdrücklich begrüßt. ...

August 3, 2026

Dry Coating Forum to discuss dry battery electrode processing at Fraunhofer Campus in Dresden; 160 participants cap

Dry Coating Forum to discuss dry battery electrode processing at Fraunhofer Campus in Dresden; 160 participants cap Dry Coating Forum: Shaping the Future of Dry Battery Electrode Processing Event details Registration Online Registration Please note that the event is limited to 160 participants (move-up procedure), with a maximum of three participants per company or institution. Registration deadline: August 31, 2026 Costs Regular attendees: 600 EUR Speakers: 400 EUR Sponsors: 1 free ticket Location The workshop will take place at the Fraunhofer Campus in Dresden. Winterbergstrasse 28, 01277 Dresden, Germany Date September 29, 2026 - September 30, 2026 , starting on September 29 at 13:00 (CET) Organization Fraunhofer Institute for Material and Beam Technology IWS Language English ...

August 3, 2026

Fraunhofer IIS develops decentralized mesh network for drone swarms in Erlangen to improve resilience; remains connected without external links.

Fraunhofer IIS develops decentralized mesh network for drone swarms in Erlangen to improve resilience; remains connected without external links. Innovation From Above: How Mesh Networks Help Control Drone Swarms Fraunhofer IIS at ILA 2026: networking drones Innovation From Above: How Mesh Networks Help Control Drone Swarms Research News June 01, 2026 Drone swarms can monitor progress on large construction sites, inspect remote offshore wind farms and search for survivors after natural disasters. When multiple drones are deployed, they generally are controlled centrally by mobile communications up to now. Researchers at the Fraunhofer Institute for Integrated Circuits IIS are working on a decentralized solution that is less susceptible to interference while at the same time ensuring greater flexibility. ...

August 3, 2026

Fraunhofer IKTS researchers Kusnezoff, Megel and Mosch develop a high-temperature electrolysis stack in Arnstadt, Germany; Pilot line scalable to gigawatt level

Fraunhofer IKTS researchers Kusnezoff, Megel and Mosch develop a high-temperature electrolysis stack in Arnstadt, Germany; Pilot line scalable to gigawatt level Electrolysis Platform—Efficient Manufacture of Hydrogen and Chemical Products Electrolysis Platform—Efficient Manufacture of Hydrogen and Chemical Products Green hydrogen is seen as a key technology for the decarbonization of industry. As yet, however, shortcomings in the areas of production efficiency, cost and scalability have prevented it from making a breakthrough. Mihails Kusnezoff, Stefan Megel and Sindy Mosch from the Fraunhofer Institute for Ceramic Technologies and Systems IKTS have developed a high-temperature electrolysis stack that is setting new standards world-wide: It generates hydrogen with unprecedented efficiency, can also operate as a fuel cell and is designed for industrial-scale serial production. This technology has earned the three researchers the Joseph von Fraunhofer Prize for 2026. ...

August 3, 2026

Wenke Weinreich appointed second director at Fraunhofer IPMS, Germany; Strengthens leadership in 300 mm wafer tech

Wenke Weinreich appointed second director at Fraunhofer IPMS, Germany; Strengthens leadership in 300 mm wafer tech Fraunhofer IPMS Appoints Wenke Weinreich as Second Director August 3, 2026 Page 1 | 3 Press release — Institute expands leadership team Fraunhofer IPMS Appoints Wenke Weinreich as Second Director The Fraunhofer Institute for Photonic Microsystems IPMS is expanding its leadership team: Wenke Weinreich has been appointed the institute’s sec- ond director, effective immediately. In her new role, she will be working alongside Institute Director Harald Schenk and guiding the institute’s strate- gic and scientific direction. At the same time, she will take on the professor- ship in Functionalized Microelectronics for Heterogeneous Systems at the Dresden University of Technology. With Weinreich, Fraunhofer IPMS adds a widely recognized expert in advanced 300 mm wa- fer fabrication. She has extensive leadership experience at Fraunhofer IPMS, where she has served as deputy director since 2022. She also led the Center Nanoelectronic Technologies (CNT), one of Germany’s leading hubs for 300 mm microelectronics. The center’s industry- standard 300 mm clean room is central to research and pilot production in advanced CMOS, FEOL/BEOL process modules, memory technologies, quantum computing and new sustainable material systems. “Microelectronics is critical to Germany’s competitiveness and Europe’s technological sover- eignty,” says Holger Hanselka, President of the Fraunhofer-Gesellschaft. “By appointing Weinreich, Fraunhofer IPMS is making a strategic investment in a future-critical field with ma- jor relevance to technology and industry. With many years of experience translating research findings into practical industrial applications and her proven expertise in microelectronics, she will play a key role in accelerating and boosting the development of innovative microelectron- ics solutions and bringing them into real-world use for industry and society.” “Fraunhofer IPMS combines outstanding research infrastructure with a highly motivated team and a clear mandate to innovate,” says Weinreich. “My goal is to draw on my experience in 300 mm wafer technology, clean room management and bridging research and industry to help drive the institute’s continued technological and strategic development.” Harald Schenk looks forward to continuing to work with Weinreich. “With her experience in strategic institute development, her research excellence and her extensive network within the Fraunhofer-Gesellschaft, she will help drive Fraunhofer IPMS’s continued growth and shape its future.” ...

August 3, 2026