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首页> 外文期刊>Surface & Coatings Technology >Effects of heat treatment combined with laser shock peening on wire and arc additive manufactured Ti17 titanium alloy: Microstructures, residual stress and mechanical properties
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Effects of heat treatment combined with laser shock peening on wire and arc additive manufactured Ti17 titanium alloy: Microstructures, residual stress and mechanical properties

机译:热处理的效果与激光冲击在线和电弧添加剂制造的Ti17钛合金制造:微观结构,残余应力和机械性能

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摘要

Wire and arc additive manufactured (WAAM) metal parts usually contain large columnar grains and detrimental tensile residual stress, affecting their mechanical performance. In this work, a post-treatment method combining heat treatment (HT) and laser shock peening (LSP) was employed to alter the microstructure and mechanical properties of WAAM Ti17 titanium alloy. The results show severe plastic deformation was induced in the surface layer, which, in turn, led to a high-level surface compressive residual stress (similar to -763 MPa) by combination treatment of HT and LSP. Meanwhile, high-density dislocations and mechanical twins were observed in coarse a phases after treatment by laser shock wave, and gradually evolved into refined a phases. The elongation of samples was significantly improved by 15% while ensuring original ultimate tensile strength (UTS, 1153 +/- 13 MPa) after HT and LSP treatment. This combined HT and LSP method helps enhance the mechanical performance of WAAM parts through changing their microstructure and residual stress distribution.
机译:电线和弧添加制造(WAAM)金属部件通常含有大柱状晶粒和有害的拉伸残余应力,影响其机械性能。在这项工作中,采用结合热处理(HT)和激光冲击(LSP)的后处理方法来改变WaAM Ti17钛合金的微观结构和机械性能。结果表明,在表面层中诱导了严重的塑性变形,从而通过HT和LSP的组合处理导致高级表面压缩残余应力(类似于-763MPa)。同时,在通过激光冲击波处理后,在粗阶段中观察到高密度脱位和机械双胞胎,并逐渐进化成精制相。在HT和LSP处理后确保原始最终拉伸强度(UTS,1153 +/- 13MPa),样品的伸长率显着提高了15%,同时确保了原始的最终拉伸强度(UTS,1153 +/- 13MPa)。这种HT和LSP方法通过改变其微观结构和残余应力分布,有助于提高WAAM部件的机械性能。

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