{"schemaVersion":1,"url":"https://getfactoryfox.com/companies/fraunhofer-institut-fur-werkstoffmechanik-iwm","json":"https://getfactoryfox.com/companies/fraunhofer-institut-fur-werkstoffmechanik-iwm.json","updatedAt":"2026-10-04T09:56:04.564Z","indexable":true,"company":{"name":"Fraunhofer-Institut für Werkstoffmechanik IWM","legalName":"Fraunhofer-Institut für Werkstoffmechanik IWM","alternateNames":["Fraunhofer Institute for Mechanics of Materials IWM","Fraunhofer IWM"],"country":"Germany","countryCode":"DE","website":"https://www.iwm.fraunhofer.de","websites":["https://www.iwm.fraunhofer.de/"],"shortDescription":"Digitalized materials and component research for sustainable value creation.","description":"The group investigates tribological problems from the nano to the macro scale using damage mechanics, energy-based approaches, friction and wear measurements, and surface physics and chemistry methods.","profileStatus":"public_unclaimed"},"capabilities":{},"products":[],"services":[{"name":"Polymer aging and lubricant interaction analysis","description":"Characterizes polymer interactions with lubricants or atmospheres, including friction and wear under different lubrication conditions and changes caused by aging.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Evaluation of the interaction of polymers with lubricants or atmospheres Characterization of friction and wear behaviour under different lubrication conditions","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en/services/tribology/tribological-component-testing-system-analysis/polymer-tribology-plastics-in-sliding-rolling-contact.html","checkedAt":"2026-10-04"}}]},{"name":"Component service-life prediction under hydrogen exposure","description":"Develops models to predict component service life under low-cycle fatigue and hydrogen exposure.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"A new model for predicting service life under low-cycle fatigue (LCF) and hydrogen exposure helps reduce the need for costly testing and makes safety factors more realistic.","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en.html","checkedAt":"2026-10-04"}}],"translations":[{"language":"de","name":"Berechnung von Ermüdungslebensdauern für kundenspezifische Bauteile und Lastfälle","description":"Berechnung von Ermüdungslebensdauern, damit Versuchsdaten von der Probe auf die Struktur übertragbar werden und Prüfprogramme reduziert werden können.","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Durch das Wasserstoffschädigungsmodell lassen sich Ermüdungslebensdauern für kundenspezifische Bauteile und Lastfälle berechnen, sodass Versuchsdaten von der Probe auf die Struktur übertragbar werden und umfangreiche Prüfprogramme deutlich reduziert werden können.","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/de/medien-events/presse-news/pressemitteilungsliste/simulationsmodell-vorhersage-LCF-Lebensdauer-hochbeanspruchter-bauteile-wasserstoff.html","checkedAt":"2026-10-04"}}]}]},{"name":"PFAS-free materials solutions for tribological systems","description":"Developed and tested a substitution chain for PFAS-containing lubricants and seals to identify and evaluate suitable PFAS-free materials solutions.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Scientists at Fraunhofer IWM have developed and tested a substitution chain for lubricants and seals containing PFAS in a project funded by the state of Baden-Württemberg and a Fraunhofer project. This allows suitable PFAS-free materials solutions to be efficiently identified and evaluated.","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en.html","checkedAt":"2026-10-04"}}]},{"name":"Stick-slip and friction analysis","description":"Evaluates polymer stick-slip tendency and characterizes the transition from adhesion to sliding, including friction speed dependence.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Evaluation of polymers for stick-slip tendency Characterization of the transition from adhesion to sliding Measurement of the speed dependence of friction","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en/services/tribology/tribological-component-testing-system-analysis/polymer-tribology-plastics-in-sliding-rolling-contact.html","checkedAt":"2026-10-04"}}]},{"name":"Materials and manufacturing data 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oscillating sliding): ASTM G99 Ball-on-3-Plates (single direction gliding) Ring-on-ring (single direction and oscillating gliding) Four-ball apparatus","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en/services/tribology/tribological-component-testing-system-analysis/polymer-tribology-plastics-in-sliding-rolling-contact.html","checkedAt":"2026-10-04"}}]},{"name":"Surface and material characterization","description":"Uses microscopy, surface topography and roughness measurements, and infrared, Raman and X-ray photo spectroscopy.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Microscopy and measurement of the topography and roughness of the surface by confocal microscopy Analysis of materials by spectroscopy: infrared (FTIR), Raman and X-ray photo spectroscopy (XPS)","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM 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auf weitere Werkstoffe sowie Unterstützung bei Konstruktion, Werkstoffauswahl und Normung an.","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/de/medien-events/presse-news/pressemitteilungsliste/simulationsmodell-vorhersage-LCF-Lebensdauer-hochbeanspruchter-bauteile-wasserstoff.html","checkedAt":"2026-10-04"}}]},{"name":"Mechanochemistry","description":"Mechanochemistry for the development of new additives for wear protection.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Mechanochemistry for the development of of new additives for wear protection","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en/services/tribology/triboconditioning_analytics.html","checkedAt":"2026-10-04"}}]},{"name":"Fretting measurements","description":"Fretting measurements in load ranges from a few millinewton to 500 Newton.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Fretting measurements in load ranges from a few millinewton to 500 Newton","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en/services/tribology/triboconditioning_analytics.html","checkedAt":"2026-10-04"}}]},{"name":"Prozess- u. Bauteilqualität in der additiven Fertigung einstellen","description":"Prozess- u. Bauteilqualität in der additiven Fertigung einstellen","language":"de","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Prozess- u. Bauteilqualität in der additiven Fertigung einstellen","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/","checkedAt":"2026-10-04"}}]},{"name":"Basic research","description":"Basic research to understand elementary tribological mechanisms.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Basic research to understand elementary tribological mechanisms","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en/services/tribology/triboconditioning_analytics.html","checkedAt":"2026-10-04"}}]},{"name":"Bauteile für den Kontakt mit Wasserstoff auslegen","description":"Bauteile für den Kontakt mit Wasserstoff auslegen","language":"de","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Bauteile für den Kontakt mit Wasserstoff auslegen","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/","checkedAt":"2026-10-04"}}]},{"name":"Lebensdauer unter Hochtemperatur bewerten","description":"Lebensdauer unter Hochtemperatur bewerten","language":"de","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Lebensdauer unter Hochtemperatur bewerten","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/","checkedAt":"2026-10-04"}}]},{"name":"Surface analysis","description":"Surface analysis using SEM, FIB and XPS.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Surface analysis with SEM, FIB and XPS","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en/services/tribology/triboconditioning_analytics.html","checkedAt":"2026-10-04"}}]},{"name":"Topography analysis","description":"Topography analysis using WLI and AFM.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Topography analysis with WLI and AFM","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en/services/tribology/triboconditioning_analytics.html","checkedAt":"2026-10-04"}}]},{"name":"Schadensfälle aufklären und vermeiden","description":"Schadensfälle aufklären und vermeiden","language":"de","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Schadensfälle aufklären und vermeiden","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/","checkedAt":"2026-10-04"}}]},{"name":"Running-in optimization","description":"Optimization of running-in.","language":"en","evidence":[{"level":"supplier_website","label":"Supplier website","detail":"Running-in optimization","source":{"title":"Fraunhofer-Institut für Werkstoffmechanik IWM website","url":"https://www.iwm.fraunhofer.de/en/services/tribology/triboconditioning_analytics.html","checkedAt":"2026-10-04"}}]}],"events":[{"name":"Quantum Effects 2026","startsOn":"2026-10-06","endsOn":"2026-10-08","status":"upcoming","venue":"Messe Stuttgart","city":"Stuttgart","booths":["2E17"],"website":"https://www.messe-stuttgart.de/quantum-effects/"}],"locations":[{"label":"Campus Karlsruhe Süd","address":"Straße am Forum 5 (Geb. 30.49), 76131 Karlsruhe","city":"Karlsruhe"},{"label":"Campus Karlsruhe Ost","address":"Rintheimer Querallee 2b (Geb. 70.27), 76131 Karlsruhe","city":"Karlsruhe"},{"label":"Fraunhofer IWM","address":"Wöhlerstr. 11, 79108 Freiburg im Breisgau, Germany","city":"Freiburg im Breisgau","country":"Germany","countryCode":"DE","phones":["+49 761 5142-0"]},{"city":"Karlsruhe"},{"label":"Fraunhofer Institute for Mechanics of Materials IWM","city":"Freiburg"}],"contacts":[{"email":"info@iwm.fraunhofer.de"},{"phone":"+49 761 - 51 42 - 0"}],"news":[{"title":"Bauteil-Lebensdauer im Kontakt mit Wasserstoff berechnen","summary":"Neues Modell zur Vorhersage der Lebensdauer unter Low Cycle Fatigue- (LCF) und Wasserstoffeinfluss hilft, teure Versuche zu reduzieren und Sicherheitsfaktoren realistischer zu gestalten.","publishedAt":"2026-08-26"},{"title":"Simulationsmodell für zuverlässige Vorhersage der LCF-Lebensdauer hochbeanspruchter Bauteile im Kontakt mit Wasserstoff","summary":"Fraunhofer IWM entwickelte ein physikalisch begründetes Modell, das die Lebensdauer hochbeanspruchter Bauteile unter Low Cycle Fatigue und Wasserstoffeinfluss vorhersagt.","publishedAt":"2026-08-26"},{"title":"Calculating Component Life in Contact with Hydrogen","summary":"A new model predicts service life under low-cycle fatigue and hydrogen exposure, reducing the need for costly testing and making safety factors more realistic.","publishedAt":"2026-08-26"},{"title":"40 Prozent höhere Ermüdungsfestigkeit","summary":"Eine neue, modellgestützte Optimierungsstrategie des Fraunhofer IWM ermöglicht die gezielte Auslegung mechanischer Oberflächennachbehandlungen für AM-Bauteile aus Metall.","publishedAt":"2026-08-04"},{"title":"40 percent more fatigue strength","summary":"Fraunhofer IWM developed a model-based optimization strategy for targeted design of mechanical surface post-treatments for metal AM components.","publishedAt":"2026-08-04"},{"title":"Fraunhofer-Konsortium entwickelt neue Standards für Reifenabrieb-Analyse","summary":"Im Projekt TERIS wollen Expertenteams Reifenabrieb erstmals standardisiert und praxisnah im Labor erzeugen, analysieren und prognostizieren.","publishedAt":"2026-07-07"},{"title":"Aufbau der größten föderierten Digitalinfrastruktur für Werkstoffforschung in Europa","summary":"Das Projekt MaterialsCommons vernetzt 26 akademische Institutionen aus 14 Ländern. Die Entwicklung neuer Materialien soll um den Faktor 4 beschleunigt werden. Projektstart am 1. Juni 2026.","publishedAt":"2026-06-03"},{"title":"Construction of Europe's Largest Federated Digital Infrastructure for Materials Research","summary":"The MaterialsCommons project, coordinated by Fraunhofer IWM, connects 26 academic institutions from 14 countries and aims to accelerate materials development by a factor of four.","publishedAt":"2026-06-03"},{"title":"Bundestagabgeordnete zu Besuch im Fraunhofer IWM","summary":"Bundestagsabgeordnete Chantal Kopf und Dr. Andrea Lübcke informieren sich im Fraunhofer IWM über nachhaltige Wertschöpfung mit berechenbaren Materialien.","publishedAt":"2026-05-26"},{"title":"Tätigkeitsbericht 2025","summary":"Der Bericht behandelt unter anderem den gläsernen Druckgussprozess, das digitale Schmiedelabor, eine Bewertungskette für PFAS-Ersatz, einen digitalen Zwilling für Schmierstoffe und Quantencomputing für die Materialforschung.","publishedAt":"2026-04-28"},{"title":"Mit dem digitalen Schmiedelabor zum Wunschgefüge","summary":"Ein neues Simulationsmodell des Fraunhofer IWM sagt Schwachstellen in Schmiedebauteilen voraus. Eingebettet in einen effizienten digitalen Ablauf entsteht so ein virtuelles Schmiedelabor.","publishedAt":"2026-04-15"},{"title":"Achieving the desired microstructure with the digital forging lab","summary":"A Fraunhofer IWM simulation model predicts weak points in forged components caused by incomplete grain formation; an efficient digital workflow enables material and energy savings in forging processes.","publishedAt":"2026-04-15"},{"title":"Schneller zur Bauteilsicherheit bei Verbrennungsprozessen mit Wasserstoff","summary":"Wissenschaftler des Fraunhofer IWM haben gezeigt, wie die thermomechanische Ermüdung unter Wasserstoffeinfluss wirtschaftlich mit Hohlproben bestimmt werden kann.","publishedAt":"2026-03-25"},{"title":"Faster component safety in combustion processes that use hydrogen","summary":"Fraunhofer IWM scientists demonstrated how thermomechanical fatigue under hydrogen influence can be determined economically using hollow specimens.","publishedAt":"2026-03-25"},{"title":"Peter Gumbsch receives Top Honor from the American Professional Society TMS","summary":"Peter Gumbsch, director of the Fraunhofer Institute for Mechanics of Materials IWM in Freiburg, was named a TMS Fellow.","publishedAt":"2026-03-19"},{"title":"Robust rules for safe weld seams in contact with pressurized hydrogen","summary":"A new research project funded by the BMWE is developing design guidelines for welds used in hydrogen technologies, based on established IIW recommendations.","publishedAt":"2026-01-27"},{"title":"Robust rules for safe weld seams in contact with pressurized hydrogen","summary":"The BMWE-funded H2WeldEng project is developing design guidelines for welds used in hydrogen technologies, based on IIW recommendations. Fraunhofer IWM is responsible for formulating design concepts, materials testing, and digitalization.","publishedAt":"2026-01-27"},{"title":"Using materials knowledge digitally and across company boundaries","summary":"The PMD-X-MAPRO project is creating a data space for digital, machine-readable materials and manufacturing data that can be exchanged across industrial supply chains.","publishedAt":"2025-07-28"},{"title":"Digital twin for lubricants in highly loaded tribological contacts","summary":"Prof. Dr. Michael Moseler, Head of the Tribology Business Unit at the Fraunhofer Institute for Mechanics of Materials IWM in Freiburg, has been awarded an ERC Advanced Grant worth 2.5 million euros for research and development of a digital twin that describes lubrication under high loads.","publishedAt":"2025-06-17"},{"title":"PFAS substitution in tribological systems","summary":"Fraunhofer IWM scientists developed and tested a substitution chain for PFAS-containing lubricants and seals to help identify and evaluate suitable PFAS-free materials solutions.","publishedAt":"2025-02-03"},{"title":"Christoph Eberl elected new chairman of the DVM","summary":"Christoph Eberl was elected chairman of the German Association for Materials Research and Testing and took office on January 1, 2026.","publishedAt":"2025-01-19"},{"title":"Wear of tire elastomers","summary":"Fraunhofer IWM investigated the abrasion resistance of new elastomer samples in the Fraunhofer BISYKA project."},{"title":"Laser-structured and DLC-coated elastomer coatings","summary":"Fraunhofer IWM, with Fraunhofer LBF and Fraunhofer ILT, developed a combination of adapted elastomers, laser structuring and DLC coating intended to reduce seal friction and extend service life."},{"title":"Thermoplastics in drive technology","summary":"Fraunhofer IWM describes research on lubricant and thermoplastic pairings at low loads in mixed friction against steel, including the effects of lubricant absorption and spreading."}],"unknown":["product","process","capability","certification","org_type"],"similarSuppliers":[{"label":"Germany","count":1284,"url":"https://getfactoryfox.com/suppliers/in/germany"}]}