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首页> 外文期刊>Journal of Manufacturing Processes >Effects of heat treatment on microstructure, mechanical and corrosion properties of 15-5 PH stainless steel parts built by selective laser melting process
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Effects of heat treatment on microstructure, mechanical and corrosion properties of 15-5 PH stainless steel parts built by selective laser melting process

机译:热处理对15-5 PH选择性激光熔炼不锈钢零件的组织,力学性能和腐蚀性能的影响

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摘要

With recent advancements in additive manufacturing, Selective Laser Melting (SLM) is emerging as an unconventional manufacturing process of exceptional flexibility capable to fabricating any complex part without requiring expensive fixtures, tooling, mold or any other additional auxiliary with a very short lead time from design conceptualization to fabrication. Very few reports are available on the effect of heat treatment on mechanical and corrosion properties of SLM 15-5 Precipitation Hardening (PH) stainless steel. Herein, microstructural evolution and its correlation with various mechanical and corrosion properties of heat treated SLM 15-5 PH stainless steel are investigated to widen the application of SLM parts for industrial usages. Results show, standard aging condition (H900) increases yield strength, hardness and corrosion resistance through the formation of fine spherical epsilon-Cu-rich precipitates (similar to 15 nm), but makes the specimens brittle resulting in an increase in wear rate and a decrease in impact energy. Combined effects of coarsening of elliptical epsilon-Cu-rich precipitates and increase in reverted austenite phase in overaging (H1150) make the specimen ductile having relatively low yield strength, hardness, wear rate but high impact energy. Solution annealing was found to reduce anisotropy in mechanical properties through the homogenization of microstructure. Higher aging temperature and longer soaking time doesn't have significant impact on different mechanical properties but deteriorates the corrosion properties. Solution annealing before aging is recommended for the homogeneity in microstructure. Present findings can be used as a guideline to select proper post heat treatment for SLM 15-5 PH stainless steel to impart application oriented mechanical and corrosion properties.
机译:随着增材制造领域的最新进展,选择性激光熔炼(SLM)成为一种非常规的制造工艺,具有超凡的灵活性,能够在不花费昂贵的固定装置,工具,模具或任何其他辅助部件的情况下,以很短的设计时间制造出任何复杂的零件从概念到制造。关于热处理对SLM 15-5沉淀硬化(PH)不锈钢的机械和腐蚀性能的影响的报道很少。在本文中,研究了热处理的SLM 15-5 PH不锈钢的微观结构演变及其与各种机械性能和腐蚀性能的关系,以扩大SLM零件在工业上的应用范围。结果表明,标准时效条件(H900)通过形成细球形富含ε-Cu的沉淀物(约15 nm),可提高屈服强度,硬度和耐蚀性,但使试样变脆,从而导致磨损率和耐磨损性的提高。降低冲击能量。在过时效过程中(H1150),椭圆形富含ε-Cu的沉淀物的粗化和回复奥氏体相增加的综合作用使试样的延性具有相对较低的屈服强度,硬度,磨损率和较高的冲击能。发现固溶退火通过微观结构的均质化降低了机械性能的各向异性。较高的时效温度和较长的浸泡时间不会对不同的机械性能产生重大影响,但会降低腐蚀性能。建议在老化前进行固溶退火,以实现微观结构的均匀性。当前的发现可以用作为SLM 15-5 PH不锈钢选择合适的后热处理的准则,以赋予应用导向的机械和腐蚀性能。

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