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TiC增强AlCr2FeNi2Cu1.6高熵合金基复合材料组织与性能
引用本文:杨思华,曲迎东,张宇峰,于惟玮,李承泽,聂赛男,田畅.TiC增强AlCr2FeNi2Cu1.6高熵合金基复合材料组织与性能[J].特种铸造及有色合金,2019(7):701-705.
作者姓名:杨思华  曲迎东  张宇峰  于惟玮  李承泽  聂赛男  田畅
作者单位:沈阳工业大学材料科学与工程学院
基金项目:辽宁省特聘教授资助项目;沈阳市中青年科技创新人才支持计划资助项目(RC170282)
摘    要:采用真空电弧炉制备了(TiC)x/AlCr2FeNi2Cu1.6高熵合金复合材料,研究了TiC含量对AlCr2FeNi2Cu1.6高熵合金微观组织与力学性能的影响。结果表明,(TiC)x/AlCr2FeNi2Cu1.6高熵合金复合材料由FCC相和BCC相组成,TiC粉末的加入并未使高熵合金的物相结构发生转变,但随着TiC的添加,合金中出现了TiC的衍射峰。高熵合金中FCC相富集了Cu、Al、Ni元素,BCC相富集了Fe、Cr元素。添加TiC后,合金中出现了含有TiC的Al、Ni、Cu新相,且使高熵合金的压缩屈服强度和抗压强度先增加后减小。当TiC含量为7.5%时,合金的屈服强度和抗压强度相对较高,压缩应变骤降到8.32%。

关 键 词:高熵合金  复合材料  微观组织  力学性能  TiC粉末

Microstructure and Mechanical Properties of TiC Reinforced AlCr2FeNi2Cu1.6 High Entropy Alloy Matrix Composites
Yang Sihua,Qu Yingdong,Zhang Yufeng,Yu Weiwei,Li Chengze,Nie Sainan,Tian Chang.Microstructure and Mechanical Properties of TiC Reinforced AlCr2FeNi2Cu1.6 High Entropy Alloy Matrix Composites[J].Special Casting & Nonferrous Alloys,2019(7):701-705.
Authors:Yang Sihua  Qu Yingdong  Zhang Yufeng  Yu Weiwei  Li Chengze  Nie Sainan  Tian Chang
Affiliation:(School of Materials Science and Engineering,Shenyang University of Technology)
Abstract:(TiC)x/AlCr2FeNi2Cu1.6 high entropy alloy matrix composites were prepared by vacuum arc furnace.The effect of TiC content on microstructure and mechanical properties of AlCr2FeNi2Cu1.6 high entropy alloy was analyzed.The results show that(TiC)x/AlCr2FeNi2Cu1.6 high entropy alloy composites are composed of FCC phase and BCC phase.The addition of TiC powder does not change the phase structure of high entropy alloy.However,with the addition of TiC,the diffraction peaks of TiC appear in the alloy.The FCC phase contains more Cu,Al,Ni elements and the BCC phase contains more Fe,Cr elements in the high entropy alloy.With the addition of TiC,new Al,Ni and Cu phase which contaion TiC appeared in the alloy.The compressive yield strength and fracture strength of high entropy alloy is increased firstly and then decreased with the addition of TiC.When the content of TiC is 7.5%,the yield strength and fracture strength of alloy are relatively higher,and the compressive strain is decreased rapidly to 8.32%.
Keywords:High Entropy Alloy  Composites  Microstructure  Mechanical Properties  TiC Powder
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