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Thermomechanical Simulation of Shape Memory Alloys Using the Finite-Element-Method
Thermomechanical Simulation of Shape Memory Alloys Using the Finite-Element-Method Overview of Material Models SMA respond to changes in temperature and load through phase transformations. Their reliable design requires simulation models that realistically represent the complex thermomechanical material behavior.The five models in the following table differ significantly in terms of parameterization effort and functional scope. While […]
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Knowledge brought to life
Knowledge brought to life Fraunhofer IWU’s Multimodal AI Assistant for Shape Memory Alloys Shape memory alloys (SMAs) are among the most fascinating materials in modern engineering. Once deformed, they can “remember” and return to their original shape simply by being heated. These metallic “muscles” enable silent actuators, highly flexible medical implants, adaptive aerospace components, and […]
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Force-sensitive SMA grippers using thermal activation
Shape memory alloy grippers provide a compact and energy-efficient alternative to traditional systems, allowing for precise handling without the need for compressed air. Click here for the full article.
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Event: Conversations on Production Technology
On November 12, 2025, at 4:30 p.m., the "Production Engineering Talks" will take place at Fraunhofer IWU in Dresden. This year's theme is "From Research to Application: Processing Technologies for Shape Memory Alloys." We look forward to seeing you there! Click here for the full article.
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Efficient fast charging of electric vehicles: Charging connectors with SMA technology
Charging connectors using shape memory alloys (SMA) automatically increase the contact normal force as temperatures rise, thereby reducing contact resistance and heat loss. This lowers cooling requirements, boosts efficiency, and extends the service life of the connectors. Click here for the full article.
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Smart facade with energy-saving benefits
Intelligent facades capable of adjusting to sunlight can lead to a substantial decrease in energy use. The 'smart³' project, a collaboration between Fraunhofer IWU and Weißensee School of Art and Design, is focused on developing precisely these kinds of solutions. Click here for the full article.
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SmartFrame+ – Security for lightweight vehicles
Lightweight, efficient, and safe means of transport are essential for both motor-powered and muscle-powered mobility. The 'SmartFrame+' project brings together experts from industry and research to develop innovative solutions that overcome this conflict of objectives. Discover how smart materials and new manufacturing technologies are revolutionizing mobility. Click here for the full article.
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ProAuster
SMA actuators are not subject to scaling effects, making them an unrivaled drive concept as miniaturization increases. Especially at the frontier between precision engineering and microsystems technology, they demonstrate their advantages by enabling precise and compact solutions. Click here for the full article.
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