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Elastic properties of disordered binary hcp-Fe alloys under high pressure: Effects of light elements
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作者 Zhenwei Niu Shuqiong Zeng +1 位作者 Mei Tang Zaixiu Yang 《ChemPhysMater》 2023年第2期155-163,共9页
The effects of light elements on the elastic properties of disordered binary hcp-Fe alloys were investigated at high pressures using plane-wave density functional theory combined with the Monte Carlo special quasi-ran... The effects of light elements on the elastic properties of disordered binary hcp-Fe alloys were investigated at high pressures using plane-wave density functional theory combined with the Monte Carlo special quasi-random structure method.We found that the increase in the O content in hcp-Fe had a more pronounced effect on the sound velocity than Si,S,and C.The longitudinal wave velocity was decreased by∼6%with 2%O content,which was a much greater decrease than the values of 0.6%and 2%induced by the same content of Si and S,respectively,under high pressures.Compared with the other three light elements,the longitudinal wave velocity of the Fe-C alloy exhibited the most gradual decreasing with increasing C content.In addition,the effects of different O and S contents on the anisotropy of hcp-Fe alloys strongly depended on the variation in pressure,whereas the pressure only slightly affected the anisotropy of Fe-Si alloy systems. 展开更多
关键词 hcp-fe alloys Elastic property Sound velocity Light elements
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光斑类型对激光熔覆MoFeCrTiWAlNb高熔点高熵合金涂层组织和性能的影响 被引量:26
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作者 王慧琳 郭亚雄 +2 位作者 蓝宏伟 刘其斌 周芳 《表面技术》 EI CAS CSCD 北大核心 2019年第6期130-137,共8页
目的获得高性能工具钢涂层。方法分别采用方形光斑及圆形光斑激光熔覆试验,在M2工具钢(W6Mo5Cr4V2)上制备出MoFeCrTiWAlNb高熵合金(HEA)涂层,对比分析两种工艺下,高熵合金涂层的组织结构及性能差异。采用SEM、XRD、EDS分析两种涂层形貌... 目的获得高性能工具钢涂层。方法分别采用方形光斑及圆形光斑激光熔覆试验,在M2工具钢(W6Mo5Cr4V2)上制备出MoFeCrTiWAlNb高熵合金(HEA)涂层,对比分析两种工艺下,高熵合金涂层的组织结构及性能差异。采用SEM、XRD、EDS分析两种涂层形貌、成分、相结构。采用显微硬度计、摩擦磨损试验机测试两种涂层的硬度及耐磨性。结果球磨4h后,合金粉末没有合金化,但是发生了形变,合金粉末更加细小均匀,平均直径为56.1μm。圆形光斑制备的HEA涂层的主相结构是BCC和MC碳化物,而矩形光斑激光熔覆制备的HEA涂层的主相结构是BCC、hcp-Fe2Nb和MC碳化物。圆形光斑涂层中出现明显的相分离现象,而采用方形光斑的激光熔覆层熔深浅,稀释率小,显微组织主要由不规则树枝晶及颗粒状碳化物构成。方形光斑激光熔覆涂层平均硬度为850HV左右,圆形光斑激光熔覆涂层平均硬度为680HV左右。相较于圆形光斑所制备的HEA涂层,方形光斑所制备的HEA涂层摩擦系数低,磨损量小,磨损表面光滑,主要磨损机制为磨粒磨损。结论矩形光斑更适合于激光熔覆Mo FeCrTiWAlNb高熵合金涂层。 展开更多
关键词 激光熔覆 矩形斑点 MofeCrTiWAlNb 高熵合金涂层 hcp-fe2Nb 耐磨性
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