首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure and mechanical properties of the ultra-fine grained ZK60 reinforced with low content of nano-diamond by powder metallurgy
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Microstructure and mechanical properties of the ultra-fine grained ZK60 reinforced with low content of nano-diamond by powder metallurgy

机译:用粉末冶金用低含量纳米金刚石含量加固的超细晶粒ZK60的微观结构和力学性能

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摘要

ZK60 Mg alloys reinforced by Nano-diamond (ND) particles (0.05 wt%) were successfully fabricated by powder metallurgy followed with hot extrusion. ND particles and the precipitated MgZn2 phase were uniformly distributed in the matrix. Compared with the ZK60 Mg alloy, the tensile and compressive yield strengths of the composite exhibited an considerable improvements of similar to 390 MPa and similar to 430 MPa, an increase rate of similar to 15% and similar to 44%, respectively. The composite with 0.05 wt% ND exhibited an ultra-high strengthening efficiency, with tension yield strengthening and compressive yield strengthening efficiencies at 302 and 887, respectively. Furthermore, the composite showed an improved tension-compression yield symmetry. Based on theoretical analysis, the high strength of the composites is mainly attributed to thermal mismatch strengthening, grain refinement, Orowan strengthening and texture strengthening. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过粉末冶金和热挤出成功制造纳米金刚石(Nd)颗粒(0.05wt%)加强的ZK60镁合金(0.05wt%)。 Nd颗粒和沉淀的MgZN2相均匀分布在基质中。 与ZK60mg合金相比,复合材料的拉伸和压缩屈服强度表现出相当大的改善,类似于390MPa,类似于430MPa,增加的速率分别与15%相似,类似于44%。 具有0.05wt%ND的复合材料表现出超高的强化效率,分别具有302和887的张力产量强化和压缩产量强化效率。 此外,复合材料显示出改善的张力 - 压缩屈服对称性。 基于理论分析,复合材料的高强度主要归因于热不匹配,晶粒细化,奥罗瓦,加强和纹理强化。 (c)2018年elestvier b.v.保留所有权利。

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