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Microstructures and Properties of 17-4 PH Stainless Steel Fabricated by Selective Laser Melting

机译:选择性激光熔炼制备17-4 PH不锈钢的组织和性能

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ObjectiveThis research examines 17-4 PH stainless steel powders produced by atomization in either argon or nitrogen atmospheres (producing martensitic (α-Fe) or mostly austenitic (γ-Fe) phase powders, respectively) and correspondingly fabricated by selective laser melting (SLM) in either a nitrogen or argon atmosphere.MethodsPre-alloyed 17-4 stainless steel powders prepared by atomization in either argon or nitrogen atmospheres were fabricated by SLM. The initial powder microstructures and phase structures were examined by light (optical) microscopy (OM), scanning electron microscopy (SEM), and X-ray diffraction (XRD). Prototypes fabricated by SLM were similarly characterized, and in addition transmission electron microscopy (TEM) characterization was also performed.ResultsMartensitic powder fabricated by SLM in nitrogen gas produced a martensitic product while pre-alloyed austenitic powder produced a primarily austenitic product. In contrast, both powders produced martensitic products when fabricated by SLM in argon gas. This unusual behavior occurred because of the rapid cooling affected by nitrogenversusargon cover gas as a consequence of a 40% greater thermal conductivity of nitrogen gasversusargon gas. SLM fabricated martensitic products exhibited HRC 30 in contrast to HRC 43 when aged at 482°C for 1 hour. Austenitic products did not exhibit age-hardening.ConclusionsUsing an argon cover gas, SLM-fabricated products are martensitic (and magnetic) with either an austenitic or martensitic pre-alloyed 17-4 PH stainless steel powder. Using a nitrogen cover gas, the product phase is the same as the precursor powder phase (austenitic or martensitic).
机译:目的这项研究研究了在氩气或氮气气氛下通过雾化生产的17-4 PH不锈钢粉末(分别生产马氏体(α-Fe)或大部分为奥氏体(γ-Fe)相粉末)并相应地通过选择性激光熔化(SLM)制备的方法方法通过SLM制备在氩气或氮气气氛中雾化制备的预合金17-4不锈钢粉末。通过光学(光学)显微镜(OM),扫描电子显微镜(SEM)和X射线衍射(XRD)检查了初始粉末的微观结构和相结构。用SLM制作的原型也有类似的特征,此外还进行了透射电子显微镜(TEM)表征。相反,当通过SLM在氩气中制造时,两种粉末都产生马氏体产物。之所以出现这种异常现象,是因为氮气与氩气之间的热导率提高了40%,因此受到氮气与氩气覆盖气体的快速冷却的影响。 SLM加工的马氏体产品在482°C时效1小时后,其HRC 30不同于HRC 43。奥氏体产品没有表现出时效硬化。结论使用氩气保护气体,SLM制造的产品是马氏体(和磁性的)奥氏体或马氏体预合金17-4 PH不锈钢粉末。使用氮气保护气,产物相与前体粉末相(奥氏体或马氏体)相同。

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