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Hot cracking, crystal orientation and compressive strength of an equimolar CoCrFeMnNi high-entropy alloy printed by selective laser melting

机译:选择性激光熔化印刷等摩尔群高熵合金的热裂纹,晶体取向和抗压强度

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摘要

Hot cracking, grains size, crystal orientation and compressive strength of an equimolar CoCrFeMnNi high-entropy alloy (HEA) printed by selective laser melting (SLM) were investigated. The CoCrFeMnNi HEA printed by SLM suffered from hot cracking no matter of the employed printing parameters. The preferred orientation of the printed sample was transformed in the order: <2 3 3>-><0 0 1>-><2 0 3>-><1 0 1>, as the volumetric energy density (VED) rises. Also, the increased VED favors the grain growth and the increase of the grain orientation spread, owing to the presence of high temperature gradient and larger residual stress. The fracture strength increases with the VED, and the maximum compressive strength rises to 2447.7 MPa, but the elongation rate is still 77.6% due to the ultrafine microstructure. The results of this study have reference value for the preparation of HEA materials with controllable grain characteristics, crystalline texture and complex structures by SLM.
机译:研究了通过选择性激光熔化(SLM)印刷的等摩尔群高熵合金(HEA)的等摩尔群高熵合金(HEA)的热裂纹,晶粒尺寸,晶体取向和抗压强度。 无论采用使用的印刷参数,SLM印刷的COCRFEMNNI HEA均遭受热裂纹。 按顺序转化印刷样品的优选取向:<2 3 3 3> <0 0 1> - > <2 0 3> <1101>,因为体积能密度(VEE)上升。 此外,由于存在高温梯度和较大的残余应力,增加了VED的增加和晶粒取向的增加。 断裂强度随着VE的增加,最大抗压强度上升至2447.7MPa,但由于超细组织,伸长率仍然是77.6%。 该研究的结果具有用于制备具有可控谷物特性的HEA材料的参考值,通过SLM晶体纹理和复杂结构。

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