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Mechanical Properties of High‐Speed Steel AISI M50 Produced by Laser Powder Bed Fusion

机译:激光粉末融合生产高速钢AISI M50的机械性能

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>The microstructure and mechanical properties of high‐speed steel AISI M50 (80MoCrV42‐16, Mat. Nr. 1.3551), produced by laser powder bed fusion (LPBF), are analyzed. The mechanical properties in hardened and tempered condition are characterized by hardness, fatigue strength, and toughness and compared with the properties of conventionally produced samples. Moreover, the effects of an additional posttreatment by hot isostatic pressing (HIP) on the microstructure and mechanical properties are investigated. Dilatometric testing is used to investigate the influence of the different initial microstructures on hardening. All heat‐treated samples expose a fine martensitic microstructure with high hardness. The conventionally produced samples show a band‐like orientation of carbides due to the production by vacuum induction melting and vacuum arc remelting followed by a hot working process. This carbide structure is bypassed by the rapid cooling in the LPBF process. The LPBF samples show a comparable hardness after hardening and tempering to the conventionally produced material. In heat‐treated state, the LPBF samples show a low fatigue strength. Posttreatment by HIP included in the heat‐treatment chain significantly increases the fatigue strength. Nevertheless, the fatigue strength is still lower compared with the reference material. Both LPBF grades show a low toughness compared with the reference material.
机译: <第XML:ID =“SRIN201900562-SEC-0001”> 通过激光粉末融合(LPBF)分析了高速钢AISI M50(80mocrv42-16,MAT.NR.1.3551)的高速钢AISI M50(80mocrv42-16,LPBF)的微观结构和力学性能。硬化和回火条件中的机械性能的特征在于硬度,疲劳强度和韧性,与常规产生的样品的性质相比。此外,研究了通过热等静压(HIP)对微观结构和机械性能的额外后处理的影响。膨胀测试用于研究不同初始微观结构对硬化的影响。所有热处理样品都具有高硬度的细马氏体微观结构。通常产生的样品显示由于通过真空感应熔化和真空弧形重熔而产生的碳化物的带状取向,然后是热的加工过程。通过LPBF过程中快速冷却旁路该碳化物结构。 LPBF样品在硬化和回火到常规生产的材料后显示出相当的硬度。在热处理状态下,LPBF样品显示出低疲劳强度。髋关节中包含在热处理链中的后处理显着提高了疲劳强度。然而,与参考材料相比,疲劳强度仍然较低。与参考材料相比,LPBF等级均显示出低韧性。

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