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A multiscale comparison of stochastic open-cell aluminum foam produced via conventional and additive-manufacturing routes

机译:通过常规和增材制造路线生产的随机开孔泡沫铝的多尺度比较

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摘要

With the exciting potential of additive manufacturing of metals to produce geometrically complex structures come many unknowns and uncertainties regarding the process-microstructure-property relationships of the additively manufactured (AM) parts, especially in comparison to their conventionally manufactured counterparts. This work attempts to elucidate some key differences between AM and cast parts by conducting a multiscale comparison of samples that are intended to be identical, except for the route by which each was manufactured. The samples of interest are open-cell foams of an Al-Mg-Si alloy (Al 6061). The baseline open-cell foam is conventionally produced via investment casting. Copies are produced using laser powder bed fusion. Full-field deformation is characterized under compressive loading using in-situ X-ray computed tomography. The foams are compared in terms of global load versus displacement response, local failure mechanisms, and characteristics of the grain structure.
机译:随着金属的增材制造令人兴奋的潜力产生几何复杂的结构,关于增材制造(AM)零件的工艺-微观结构-性能关系,尤其是与常规制造的零件相比,存在许多未知数和不确定性。这项工作试图通过对意图相同的样品进行多尺度比较来阐明增材制造与铸件之间的一些关键差异,除了制造它们的途径不同。感兴趣的样品是Al-Mg-Si合金(Al 6061)的开孔泡沫。基线开孔泡沫通常通过熔模铸造生产。使用激光粉末床熔融生产复印件。使用原位X射线计算机断层扫描在压缩载荷下表征全场变形。根据总载荷与位移响应,局部破坏机制以及晶粒结构的特征对泡沫进行了比较。

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