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首页> 外文期刊>Journal of Manufacturing Processes >Residual stress in wire and arc additively manufactured aluminum components
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Residual stress in wire and arc additively manufactured aluminum components

机译:电线和弧形的残余应力含有铝部件

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摘要

In this study, a number of numerical simulations have been performed to analyze the distribution characteristics of residual stress (RS) in the wire and arc additive manufacturing (WAAM) components made of aluminum alloys. Experiments have been performed to measure temperature results (thermal cycles, etc.), residual stresses, and deformation for verification. The results show that the variation in the height of beam can affect the magnitude and distribution of longitudinal RS in both the substrate and the beam, while that can only influence the transverse RS in the substrate but not in the beam nearly. The longitudinal RS on the top surface of the last layer in the WAAM parts changes from tension to compression if the height of beam is above a certain value (about 20 mm here), which is obviously different from that in the multi-pass weldments and the selective laser melting (SLM) components. The restraint condition of the substrate can apparently affect the magnitude and distribution of longitudinal RS in the beam, while that almost has no influence on transverse RS in the beam. In terms of numerical results, the generation mechanism and distribution of RS in WAAM components have been systematically illuminated in the current work, which is quite useful to guide the mitigation of the generated high RS.
机译:在该研究中,已经进行了许多数值模拟,以分析由铝合金制成的线和弧添加剂制造(WaAM)部件中的残余应力(Rs)的分布特性。已经进行了测量温度结果(热循环等),残余应力和变形以进行验证的实验。结果表明,光束高度的变化可以影响基板和光束中的纵向Rs的大小和分布,而这只能影响衬底中的横向Rs,但是在光束中几乎影响。如果光束的高度高于一定值(此处约20mm),则WAAM零件中最后一层的顶部表面上的纵向Rs会从张力变为压缩,这显然是不同于多通焊焊的选择性激光熔融(SLM)组分。衬底的约束条件显然可以影响光束中的纵向Rs的大小和分布,而几乎对光束中的横向Rs几乎没有影响。就数值结果而言,在当前工作中系统地照射了WAAM组件中Rs的产生机制和分布,这对于引导产生的高卢比的缓解非常有用。

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