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Microstructure and properties of W-4.9Ni-2.1Fe heavy alloy with Dy2O3 addition

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【作者】 Yuan-Feng XieLiang-Liang ZhouXiao-Yong ZhangXiao-Xian LiZeng-Lin ZhouXue-Hui Zhang

【Author】 Yuan-Feng Xie;Liang-Liang Zhou;Xiao-Yong Zhang;Xiao-Xian Li;Zeng-Lin Zhou;Xue-Hui Zhang;Institute of Engineering and Technology,General Research Institute for Nonferrous Metals;School of Materials Science and Engineering,Jiangxi University of Science and Technology;

【通讯作者】 Xue-Hui Zhang;

【机构】 Institute of Engineering and Technology,General Research Institute for Nonferrous MetalsSchool of Materials Science and Engineering,Jiangxi University of Science and Technology

【摘要】 The W-4.9 Ni-2.1 Fe-xDy2 O3 heavy alloy was fabricated by high-energy ball milling and spark plasma sintering(SPS)technique,and the microstructure,mechanical and friction behavior and anti-corrosion ability were investigated by scanning electron microscope(SEM),Rockwell hardness tester,X-ray diffraction(XRD),reciprocating friction and wear tester,electrochemical station,etc.The results show that the trace Dy2 O3 particles,which mainly distributes in the W-M(tungsten-matrix)interface and the tungsten matrix phase,can dramatically decrease the tungsten grain size and the amount of O and P impurities aggregating in the interface,promote the γ-(Ni,Fe)bonding phase and tungsten particles uniform distribution,and increase the relative density,hardness,and wear and corrosion resistance properties.But the excessive Dy2 O3 addition can make the inhibition effect weaken,resulting in the decrease in the comprehensive performances of the alloy.So,the amount of Dy2 O3 should be appropriate.When the adding amount of Dy2 O3 particles is 0.7 wt%,the comprehensive performances of the heavy alloy are the best.

【Abstract】 The W-4.9 Ni-2.1 Fe-xDy2 O3 heavy alloy was fabricated by high-energy ball milling and spark plasma sintering(SPS)technique,and the microstructure,mechanical and friction behavior and anti-corrosion ability were investigated by scanning electron microscope(SEM),Rockwell hardness tester,X-ray diffraction(XRD),reciprocating friction and wear tester,electrochemical station,etc.The results show that the trace Dy2 O3 particles,which mainly distributes in the W-M(tungsten-matrix)interface and the tungsten matrix phase,can dramatically decrease the tungsten grain size and the amount of O and P impurities aggregating in the interface,promote the γ-(Ni,Fe)bonding phase and tungsten particles uniform distribution,and increase the relative density,hardness,and wear and corrosion resistance properties.But the excessive Dy2 O3 addition can make the inhibition effect weaken,resulting in the decrease in the comprehensive performances of the alloy.So,the amount of Dy2 O3 should be appropriate.When the adding amount of Dy2 O3 particles is 0.7 wt%,the comprehensive performances of the heavy alloy are the best.

【基金】 financially supported by the National Natural Science Foundation of China(Nos.518711145 and51804138);the Natural Science Foundation of Jiangxi Province(Nos.20161BAB206136,20161BAB216121 and GJJ150638)
  • 【文献出处】 Rare Metals ,稀有金属(英文版) , 编辑部邮箱 ,2019年08期
  • 【分类号】TF125.241
  • 【下载频次】14
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