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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Selective laser melting of CoCrFeNiMn high entropy alloy powder modified with nano-TiN particles for additive manufacturing and strength enhancement: Process, particle behavior and effects
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Selective laser melting of CoCrFeNiMn high entropy alloy powder modified with nano-TiN particles for additive manufacturing and strength enhancement: Process, particle behavior and effects

机译:CoCrfenimn高熵合金粉末选择性激光熔化,用纳米锡颗粒进行加性制造和强度增强:工艺,颗粒行为和效果

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摘要

Selective Laser Melting (SLM) was applied for Additive Manufacturing (AM) of CoCrFeNiMn high entropy alloy (HEA) and TiNp/CoCrFeNiMn composite, with the tailored laser parameters for as-printed bulk densification after the process optimization. The pre-alloyed HEA powder by gas-atomization was modified with nano-TiN ceramic particles on the powder surface layer and employed to fabricate HEA matrix composite with uniformly dispersed TiN reinforcements via SLM. The hierarchical microstructures with strong crystallographic textures were generated in the as-printed HEA parts. While in the TiNp/HEA composite, the remarkably refined and nearly equiaxial HEA matrix grains were produced due to the contribution of introduced TiN particles. The average ultimate tensile strength (sigma(UTS)) of as-printed composite achieved 1036 MPa with the average elongation to fracture (e(f)) as similar to 12%. By contrast, the average sigma(UTS) and e(f) of as-printed HEA were 601 MPa and similar to 30% respectively. The strengthening mechanism of the SLM-fabricated TiNp/HEA composite was further elucidated. (C) 2019 Elsevier B.V. All rights reserved.
机译:选择性激光熔化(SLM)用于Cocrfenimn高熵合金(Hea)和Tinp / Cocrfenimn复合材料的添加剂制造(AM),在过程优化后,定制的激光参数用于印刷散装致密化。通过气体雾化的预合金Hea粉末用粉末表面层上的纳米锡陶瓷颗粒进行改性,并用SLM用均匀分散的锡增强物制造Hea基质复合物。在印刷的Hea部件中产生具有强晶形纹理的分层微结构。在TINP / HEA复合材料中,由于引入的锡颗粒的贡献,产生了显着的精细和几乎均匀的HEA基质晶粒。作为印刷复合材料的平均终极拉伸强度(Sigma(UTS))达到了1036MPa,平均伸长率与骨折(E(F))相似,类似于12%。相比之下,印刷HEA的平均Sigma(UTS)和E(F)分别为601MPa,同样为30%。进一步阐明了SLM制造的TINP / HEA复合材料的强化机理。 (c)2019年Elsevier B.V.保留所有权利。

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