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Challenges in Additive Manufacturing of space parts: Powder feedstock cross-contamination and its impact on end products

机译:太空零件增材制造中的挑战:粉末原料的交叉污染及其对最终产品的影响

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摘要

This work studies the tensile properties of Ti-6Al-4V samples produced by laser powder bed based Additive Manufacturing (AM), for different build orientations. The results showed high scattering of the yield and tensile strength and low fracture elongation. The subsequent fractographic investigation revealed the presence of tungsten particles on the fracture surface. Hence, its detection and impact on tensile properties of AM Ti-6Al-4V were investigated. X-ray Computed Tomography (X-ray CT) scanning indicated that these inclusions were evenly distributed throughout the samples, however the inclusions area was shown to be larger in the load-bearing plane for the vertical specimens. A microstructural study proved that the mostly spherical tungsten particles were embedded in the fully martensitic Ti-6Al-4V AM material. The particle size distribution, the flowability and the morphology of the powder feedstock were investigated and appeared to be in line with observations from other studies. X-ray CT scanning of the powder however made the high density particles visible, where various techniques, commonly used in the certification of powder feedstock, failed to detect the contaminant. As the detection of cross contamination in the powder feedstock proves to be challenging, the use of only one type of powder per AM equipment is recommended for critical applications such as Space parts. 2017 by the authors.
机译:这项工作研究了基于激光粉末床的增材制造(AM)生产的Ti-6Al-4V样品在不同构造方向上的拉伸性能。结果表明,屈服强度和抗拉强度的散射较大,断裂伸长率较低。随后的形貌研究表明,在断裂表面上存在钨颗粒。因此,研究了其检测和对AM Ti-6Al-4V拉伸性能的影响。 X射线计算机断层扫描(X射线CT)扫描表明,这些夹杂物均匀地分布在整个样品中,但是对于垂直标本,在载荷平面中夹杂物的面积显示出较大。显微组织研究证明,大部分球形的钨颗粒嵌入完全马氏体的Ti-6Al-4V AM材料中。研究了粉末原料的粒度分布,流动性和形态,似乎与其他研究的观察结果一致。然而,粉末的X射线CT扫描使高密度颗粒可见,而粉末原料认证中常用的各种技术未能检测到污染物。由于检测粉末原料中的交叉污染具有挑战性,因此对于关键应用(例如空间零件),建议每个AM设备仅使用一种粉末。由作者撰写的2017年。

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