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Author: Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS

Research Project: Silicon Nitride-based Particles as Promising Anode Material for Solid State Batteries

Posted on 11. January 2024 by Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Posted in Research / Development Tagged batteries, battery, cells, charging, energy, festbatt, fraunhofer, iws, lithium, production, project, research, storage, sulphide, with

Novel storage material for solid-state batteries is the focus of the project “FB2-SiSuFest – Evaluation of silicon anodes in sulfide solid-state batteries”. As a promising anode material, silicon nitride-based particles could enable a high storage capacity with stable and safe […]

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Intelligent Textiles as Protection against PAH Toxins

Posted on 19. September 202319. September 2023 by Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Posted in Research / Development Tagged ats, breast, cancer, energy, fraunhofer, hydrogen, ifa, iws, market, nonwovens, pah, pak, pop, security, with

Polycyclic aromatic hydrocarbon (PAHs) are considered harmful to health, especially as potential carcinogens. For example, the molecular compounds of carbon and hydrogen atoms can arise in house fires when mattresses, curtains, wooden beams, plastic, or other objects made of organic […]

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Laser Cutting Under Water

Posted on 30. August 2023 by Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Posted in Research / Development Tagged energy, fraunhofer, iws, laser, metals, offshore, power, project, research, robots, steel, underwater, wave, wind, with

Given the increasing demand for renewable energy sources, the need for modern dismantling technologies for underwater use is also growing. For example, to bring a wind power plant in the sea up to more power, old steel frames must first […]

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Focus on Added Industrial Value through Light

Posted on 21. June 202321. June 2023 by Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Posted in General Tagged brckner, cells, energy, fraunhofer, grade, isam, iws, laser, power, production, report, research, weld, welding, with

Light embodies far more than just color and brightness. Strongly focused, the light may serve as a powerful tool. Technically, this capability has been exploited for over 60 years with the help of lasers, which are now available in a […]

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Sulfur and Silicon as Building Blocks for Solid State Batteries

Posted on 20. April 202321. April 2023 by Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Posted in Research / Development Tagged amg, battery, cell, cells, cobalt, energy, fraunhofer, iws, lithium, nickel, project, schunk, storage, wacker, with

A new generation of lithium-sulfur batteries is the focus of the research project “MaSSiF – Material Innovations for Solid-State Sulfur-Silicon Batteries”. The project team dedicates itself to the design, construction and evaluation of lightweight and low-cost sulfur-based prototype cells with […]

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Lasers Join Lightweight Sandwich Structures

Posted on 3. April 2023 by Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Posted in Research / Development Tagged aircraft, energy, fraunhofer, iws, laser, mill, oth, power, presses, production, steel, thin, weld, welding, with

Modern lightweight construction has already been helping automotive and aerospace industry to save fuel and materials and to reduce environmental im-pact. Researchers at the Fraunhofer Institute for Material and Beam Technology IWS have recently found a way to transfer such […]

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Visiting Scientist from Kiev and Fraunhofer Team Conduct Research into Decommissioning Destroyed Nuclear Infrastructure

Posted on 30. March 2023 by Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Posted in Research / Development Tagged energy, fraunhofer, iws, laser, nuclear, power, production, project, proskurin, research, resource, robotics, sarcophagus, ukrainian, with

The Fraunhofer-Zukunftsstiftung (Fraunhofer Future Foundation) is promoting scientific exchange between German and Ukrainian researchers to help repair war damage and prepare for rebuilding using climate and environmentally friendly technologies. To this end, the foundation is fully funding Ukrainian experts and […]

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Sharp Hyperspectral Eye for Chip Production

Posted on 14. March 202314. March 2023 by Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Posted in Research / Development Tagged battery, camera, cell, font, fraunhofer, infineon, iws, laser, market, new, production, project, research, with, wollmann

Precise two-dimensional analysis of high-tech layers in microelectronics, battery factories or even in the automotive sector approaches within reach. A measuring system developed at the Fraunhofer Institute for Material and Beam Technology IWS facilitates this by integrating hyperspectral sensor technology, […]

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Establishing Design as an Integral Component in Research and Development

Posted on 10. March 202310. March 2023 by Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Posted in Research / Development Tagged capital, designlab, dresden, dst, fraunhofer, future, iws, market, process, research, solutions, systems, technology, university, with

In its various disciplines and manifestations, design is increasingly gaining importance in Fraunhofer’s research. Supporting this trend, the three Fraunhofer Institutes IVI, IWS and IWU in Dresden, together with Technische Universität Dresden, are establishing the “DesignLab for Applied Research” on […]

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A New Generation of Instruments for Gas Permeation Measurement

Posted on 2. March 20232. March 2023 by Firma Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Posted in Research / Development Tagged cell, cells, fraunhofer, implants, iws, laser, market, oleds, otr, project, sab, sealing, sempa, solar, with

As part of the “SimPerm” project, researchers at the Fraunhofer Institute for Material and Beam Technology IWS in Dresden have developed an innovative measuring technique for reliably determining the permeation rate of films. For the first time, the permeation rate […]

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