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Application of bulk deformation methods for microstructural and material property improvement and residual stress and distortion control in additively manufactured components

机译:堆积变形方法在含有组分中微观结构和材料性能提高和残余应力和变形控制的应用

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Many additively manufactured (AM) materials have properties that are inferior to their wrought counterparts, which impedes industrial implementation of the technology. Bulk deformation methods, such as rolling, applied in-process during AM can provide significant benefits including reducing residual stresses and distortion, and grain refinement. The latter is particularly beneficial for titanium alloys where the normally seen large prior grains are converted to a fine equiaxed structure giving isotropic mechanical properties that can be better than the wrought material. The technique is also beneficial for aluminium alloys where it enables a dramatic reduction in porosity and improved ductility. (C) 2016 The Authors. Published by Elsevier Ltd on behalf of Acta Materialia Inc.
机译:许多瘾地制造的(AM)材料具有劣于其锻造的性能,这阻碍了该技术的工业实施。 在AM期间施加轧制的体变形方法可以提供显着的益处,包括降低残余应力和变形和晶粒细化。 后者对钛合金特别有益,其中通常看到的大型先前晶粒被转化为细平均结构,其具有能够优于锻造材料的各向同性机械性能。 该技术对于铝合金也是有益的,其中能够降低孔隙率和改善的延展性。 (c)2016年作者。 elsevier有限公司发布代表Acta Magementia Inc.

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