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Selective Laser Melting of Duplex Stainless Steel Powders: An Investigation

机译:双相不锈钢粉末的选择性激光熔化:研究

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摘要

Selective laser melting gained substantial momentum in the recent past and quite a few alloy systems have been researched and made available for commercial use; titanium, aluminum, stainless and tool steels, cobalt chrome, and Inconel being the most popular examples. Despite the application potential, and the successful processing of powder forms by traditional powder metallurgy methods, selective laser melting of duplex stainless steels was not attempted so far. The response of a duplex stainless steel alloy to processing by selective laser melting with varying process conditions is evaluated in the current research. Experimental results ascertained that the complete cycle starting from duplex powders, consolidating into 3D forms by selective laser melting and then post-process heat treatment to bring the microstructures back to duplex forms is feasible. Within the current experimental domain, the multi-layer samples are close to 90% density and showed a maximum dimensional variation of 2-3%, while the austenite to ferrite ratio is 45:55 after the post-process heat treatment.
机译:选择性激光熔化在最近的过去取得了巨大的发展势头,并且已经研究了许多合金系统并将其用于商业用途。钛,铝,不锈钢和工具钢,钴铬合金和铬镍铁合金是最受欢迎的例子。尽管具有应用潜力,并且可以通过传统的粉末冶金方法成功加工粉末形式,但迄今为止,尚未尝试对双相不锈钢进行选择性激光熔化。在当前研究中,评估了双相不锈钢合金对通过选择性激光熔化在不同工艺条件下进行加工的响应。实验结果表明,从双相粉末开始,通过选择性激光熔化固结为3D形式,然后进行后处理热处理以使微结构恢复为双相形式的完整循环是可行的。在当前的实验范围内,多层样品的密度接近90%,最大尺寸变化为2-3%,而后处理后的奥氏体与铁素体之比为45:55。

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