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Crystal structure analysis of M2 high speed steel parts produced by selective laser melting

机译:选择性激光熔炼M2高速钢零件的晶体结构分析

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摘要

M2 high speed steel (HSS) samples were produced by an additive manufacturing (AM) process, selective laser melting (SLM). The observed microstructure from SEM and FIB was characterised by a continuous and homogeneous network of dendrites within two different phases. These phases were characterised to be bcc single crystals and fcc/bcc polycrystals from TEM-SADP. EBSD results also indicated that the bcc grains were randomly orientated. In addition, the lattice constants from two different SADPs of bcc crystal were calculated to be 2.892 A and 2.905 A, larger than high purity iron bcc structure of lattice constant 2.867 A. The elements V, Cr, Mo, W and Si were detected in the iron matrix with TEM-EDS. These elements were responsible for the enlargement of the lattice constant. TEM-EDS results also indicated that the network of dendrites were carbides. These results gave insights on the rapid solidification phenomenon in SLM.
机译:M2高速钢(HSS)样品是通过增材制造(AM)工艺,选择性激光熔化(SLM)生产的。从SEM和FIB观察到的微观结构的特征是在两个不同相中连续且均匀的枝晶网络。这些相被表征为来自TEM-SADP的bcc单晶和fcc / bcc多晶。 EBSD结果还表明,密晶组织是随机取向的。另外,两种不同bcc晶体SADP的晶格常数经计算为2.892 A和2.905 A,大于晶格常数2.867 A的高纯铁bcc结构。 TEM-EDS的铁基质。这些元素负责晶格常数的增大。 TEM-EDS结果还表明,枝晶网络为碳化物。这些结果为SLM中的快速凝固现象提供了见解。

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