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Microstructural Investigation of M2 High Speed Steel Produced by Selective Laser Melting: Microstructural Investigation of M2 High Speed Steel

机译:选择性激光熔炼生产的M2高速钢的显微组织研究:M2高速钢的显微组织研究

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摘要

In SLM, a high energy density is applied by a laser to locally melt layers of metallic powder particles in order to create functional parts. This high energy intensity and additive process character create a specific/unique microstructure. The solidified melt pools in HSS M2 SLM parts are observed to consist of two distinct zones next to the heat affected zone. The first zone, at the bottom of the melt pool, consists of very fine cells and columnar dendrites and has a hardness of 655±80Hv0.1. The other zone contains acicular martensite and has a hardness of 859±80Hv0.1 which is already similar to the hardness of conventionally produced and heat treated HSS M2. Furthermore, the relative amount of these two zones is observed to be dependent on the scan velocity of the laser and hence can be controlled during the SLM process.
机译:在SLM中,通过激光将高能量密度应用于金属粉末颗粒的局部熔化层,以形成功能部件。这种高能量强度和累加过程特性可创建特定/唯一的微观结构。观察到HSS M2 SLM零件中的凝固熔池由热影响区旁边的两个不同区域组成。第一个区域位于熔池的底部,由非常细小的孔和柱状树枝状晶体组成,硬度为655±80Hv0.1。另一个区域包含针状马氏体,硬度为859±80Hv0.1,已经类似于常规生产和热处理的HSS M2的硬度。此外,观察到这两个区域的相对量取决于激光器的扫描速度,因此可以在SLM过程中进行控制。

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