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首页> 外文期刊>Canadian Journal of Mathematics >Effect of Compositional Variation Induced by EBM Processing on Deformation Behavior and Phase Stability of Austenitic Cr-Mn-Ni TRIP Steel
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Effect of Compositional Variation Induced by EBM Processing on Deformation Behavior and Phase Stability of Austenitic Cr-Mn-Ni TRIP Steel

机译:EBM处理组成变化对奥氏体Cr-Mn-Ni跳闸变形行为及相位稳定性的影响

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摘要

Electron beam melting (EBM) is an established powder bed-based additive manufacturing process for the fabrication of complex-shaped metallic components. For metastable austenitic Cr-Mn-Ni TRIP steel, the formation of a homogeneous fine-grained microstructure and outstanding damage tolerance have been reported. However, depending on the process parameters, a certain fraction of Mn evaporates. This can have a significant impact on deformation mechanisms as well as kinetics, as was previously shown for as-cast material. Production of chemically graded and, thus, mechanically tailored parts can allow for further advances in terms of freedom of design. The current study presents results on the characterization of the deformation and strain-hardening behavior of chemically tailored Cr-Mn-Ni TRIP steel processed by EBM. Specimens were manufactured with distinct scan strategies, resulting in varying Mn contents, and subsequently tensile tested. Microstructure evolution has been thoroughly examined. Starting from one initial powder, an appropriate scan strategy can be applied to purposefully evaporate Mn and, therefore, adjust strain hardening as well as martensite formation kinetics and ultimate tensile strength.
机译:电子束熔化(EBM)是一种建立的粉末床的添加剂制造方法,用于制造复合物金属组分。对于稳定的奥氏体Cr-Mn-Ni跳钢,已经报道了均匀细粒细胞微观结构的形成和出色的损害耐受性。然而,取决于过程参数,一定部分的Mn蒸发。这可能对变形机制以及动力学产生显着影响,如前所述,如前所述。因此,制造化学分级,因此机械定制部件可以允许在设计自由方面进一步进步。目前的研究提出了通过EBM加工的化学定制CR-MN-Ni跳闸钢的变形和应变硬化行为的表征。用不同的扫描策略制造标本,导致不同的Mn含量,随后试验拉伸。已经彻底检查了微观结构演变。从一个初始粉末开始,可以应用适当的扫描策略以有机蒸发Mn,因此调节应变硬化以及马氏体形成动力学和最终拉伸强度。

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