构建策略对增材制造双相不锈钢压力容器残余应力分布的影响

A.E. Odermatt , N. Al-Hamdany , G. Abreu Faria , S. Degener , N. Kashaev
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引用次数: 0

摘要

由于增材制造过程中不均匀冷却引起的残余应力,可以显著降低增材制造结构对使用载荷和缺陷的抵抗能力。对于双相不锈钢,溶液退火温度约为。1050°C是工业上唯一接受的应力缓解处理。由于合金在该温度下的抗蠕变性较低,这通常伴随着严重的变形。出于经济原因,零件应在建成状态下使用,需要考虑残余应力分布。利用高能白束x射线辐射和钻孔法确定了简化压力容器几何形状的残余应力分布。作为这项研究的结果,评估了两种建筑策略在部件面向介质侧产生压缩残余应力状态的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of Build Strategy on the Residual Stress Distribution in Additively Manufactured Duplex Stainless Steel Pressure Vessels
The resistance to service loads and defects of additively manufactured structures can be significantly reduced due to residual stresses induced by inhomogeneous cooling during the manufacturing process. For duplex stainless steels solution annealing at approx. 1050°C is the only industrially accepted stress relieve treatment. This is often accompanied by severe deformation due to the low creep resistance of the alloy at this temperature. For economic reasons the parts should be used in the as-built state, where the residual stress distribution needs to be considered. We determined the residual stress distribution of simplified pressure vessel geometries using high energy white beam X-ray radiation and the hole drilling method. As a result of this study, two building strategies were evaluated for their ability to produce a compressive residual stress state on the media facing side of the parts.
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