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New High-Performance Materials Tailored Specifically For Additive Manufacturing Processes

机译:专为增材制造工艺量身定制的新型高性能材料

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Integrated Computational Materials Engineering (ICME) technologies have served an integral role in understanding, evaluating and designing material microstructures and heat treatments specifically tailored for the unique processing conditions of Additive Manufacturing (AM). Applying their Materials by Design~® methodologies, QuesTek Innovations has expanded their ICME framework under US Army Small Business Innovation Research (SBIR) funding to adapt their high performance Ferrium~® C64~® gear steel to AM processes, demonstrating printability across multiple systems, achievement of AMS minimum tensile properties, and positive response to heat treatment. Under Office of Naval Research and US Navy SBIR funding, QuesTek has designed and is developing high performance, aluminum alloys that are both printable and demonstrate properties of wrought 6000 and 7000 series alloys. AM builds and testing to date have demonstrated crack-free printability, high strength and good corrosion resistance. QuesTek is also demonstrating its high strength titanium alloys in wire and powder AM processing and showing a 20% increase in strength at a given ductility versus Ti-6A1-4V. These technologies, among several other AM alloy development programs at QuesTek, are advancing into TRL 4 and beyond. QuesTek's work in stainless steel in AM is also covered.
机译:集成计算材料工程(ICME)技术在理解,评估和设计专门针对增材制造(AM)独特加工条件量身定制的材料微观结构和热处理方面发挥了不可或缺的作用。 QuesTek Innovations通过Design〜®方法应用其材料,在美国陆军小企业创新研究(SBIR)的资助下扩展了其ICME框架,以使其高性能Ferrium〜®C64〜®齿轮钢适应增材制造工艺,证明了在多个系统中的可印刷性达到AMS最小的拉伸性能,并对热处理产生积极的反应。在海军研究办公室和美国海军SBIR的资助下,QuesTek设计并正在开发高性能铝合金,这些铝合金既可印刷,又可展示锻造6000和7000系列合金的性能。迄今为止的AM制造和测试已经证明了无裂纹的可印刷性,高强度和良好的耐腐蚀性。 QuesTek还展示了其在线材和粉末AM加工中的高强度钛合金,并且在给定的延展性下与Ti-6A1-4V相比,强度提高了20%。这些技术以及QuesTek的其他几种AM合金开发计划中的技术正在进入TRL 4及更高版本。也涵盖了QuesTek在AM中的不锈钢工作。

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