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Microstructure and Selective Corrosion of Alloy 625 Obtained by Means of Laser Powder Bed Fusion

机译:激光粉末床熔合获得的625合金的组织和选择性腐蚀

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摘要

The effect of microstructure on the susceptibility to selective corrosion of Alloy 625 produced by laser powder bed fusion (LPBF) process was investigated through intergranular corrosion tests according to ASTM G28 standard. The effect of heat treatment on selective corrosion susceptibility was also evaluated. The behavior was compared to commercial hot-worked, heat treated Grade 1 Alloy 625. The morphology of attack after boiling ferric sulfate-sulfuric acid test according to ASTM G28 standard is less penetrating for LPBF 625 alloy compared to hot-worked and heat-treated alloy both in as-built condition and after heat treatment. The different attack morphology can be ascribed to the oversaturation of the alloying elements in the nickel austenitic matrix obtained due to the very high cooling rate. On as-built specimens, a shallow selective attack of the border of the melt pools was observed, which disappeared after the heat treatment. The results confirmed similar intergranular corrosion susceptibility, but different corrosion morphologies were detected. The results are discussed in relation to the unique microstructures of LPBF manufactured alloys.
机译:根据ASTM G28标准,通过晶间腐蚀试验研究了显微结构对通过激光粉末床熔合(LPBF)工艺生产的625合金选择性腐蚀敏感性的影响。还评估了热处理对选择性腐蚀敏感性的影响。将该行为与商用热加工,热处理的1级合金625进行了比较。与热加工和热处理的相比,根据ASTM G28标准进行的沸腾硫酸铁-硫酸测试后的冲蚀形态对LPBF 625合金的渗透性较小。合金无论是在出厂状态还是在热处理之后。不同的侵蚀形态可以归因于由于非常高的冷却速率而获得的镍奥氏体基体中合金元素的过饱和。在竣工的标本上,观察到熔池边界的浅层选择性侵蚀,在热处理后消失。结果证实相似的晶间腐蚀敏感性,但是检测到不同的腐蚀形态。讨论了与LPBF制造的合金的独特微观结构有关的结果。

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