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Microstructural and Mechanical Characterization of Shear Formed Aluminum Alloys for Airframe and Space Applications

机译:用于机身和空间应用剪切成型铝合金的微观结构和力学表征

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Advanced manufacturing processes such as near-net-shape forming can reduce production costs and increase the reliability of launch vehicle and airframe structural components through the reduction of material scrap and part count and the minimization of joints. The current research is an investigation of the processing-microstructure-property relationship for shear formed cylinders of the Al-Cu-Li-Mg-Ag alloy 2195 for space applications and the Al-Cu-Mg-Ag alloy C415 for airframe applications. Cylinders which have undergone various amounts of shear-forming strain have been studied to assess the microstructure and mechanical properties developed during and after shear forming.
机译:近净形成形的先进制造工艺可以通过减少材料废料和部分数量以及关节最小化来降低生产成本并提高发射车辆和机身结构部件的可靠性。目前的研究是对用于空间应用的Al-Cu-Li-Mg-Ag合金2195的剪切形成的气缸的加工微观结构 - 性能关系以及用于机身应用的Al-Cu-Mg-Ag合金C415。已经研究了经历各种剪切形成菌株的汽缸,以评估剪切成型期间和后开发的微观结构和机械性能。

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