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两步法制备纳米TiCp/GH3536复合粉末组织性能研究

刘佳伟 宋美慧 李岩 张煜 李艳春 张晓臣 安德烈·萨莫欣 杨慧敏

材料工程2024,Vol.52Issue(8):189-199,11.
材料工程2024,Vol.52Issue(8):189-199,11.DOI:10.11868/j.issn.1001-4381.2022.000727

两步法制备纳米TiCp/GH3536复合粉末组织性能研究

Microstructure and properties of nano-TiCp/GH3536 composite powders prepared by two-step method

刘佳伟 1宋美慧 1李岩 1张煜 1李艳春 1张晓臣 1安德烈·萨莫欣 2杨慧敏3

作者信息

  • 1. 黑龙江省科学院高技术研究院,哈尔滨 150009
  • 2. 俄罗斯科学院冶金与材料研究所,莫斯科119991
  • 3. 黑龙江工程学院材料与化学工程学院,哈尔滨150050
  • 折叠

摘要

Abstract

Nano-TiCp/GH3536 composite powders were prepared by mechanical alloying (MA) and thermal plasma spheroidization (TPS) methods. The flowability,bulk density,particle size distribution,sphericity,and microstructure of the composite powders before and after MA-TPS treatment were studied by Hall flow meter,Scott volumeter,XRD,particle size analyzer,scanning electron microscope,and transmission electron microscope. The results show that the preformed powders obtained by MA-5 h treatment are irregular shape powders with non-uniform adhesion of nano-TiC particles on the surface of the GH3536 substrate. Compared with the original GH3536 powders,the number of equiaxed grains in the preformed powders increases and the crystal grains are refined,but the flowability and bulk density decrease. The nano-TiCp/GH3536 composite powders obtained by the second TPS treatment arespherical,and the original irregular nano-TiC particles are spheroidized and uniformly distributed inside the GH3536 substrate. After removing the submicron particles with an average particle size of 183.27 nm,the flowability,bulk density,and sphericity of TPS composite powders are further improved. The TEM images of submicron particles show that the nanoscale GH3536 microspheres are uniformly coated with a layer of TiC,the structure is similar to the core-shell,and spherical TiC particles are found in the powder. The average spherical degree,average particle size,flowability,and bulk density of the nano-TiCp/GH3536 composite powders prepared by the two-step method are 0.965,33.65 μm,17.1 s/50 g,and 4.184 g/cm3,respectively.

关键词

热等离子体球化/纳米TiCp/GH3536/复合材料/微观组织/性能

Key words

thermal plasma spheroidization/nano-TiCp/GH3536/composite material/microstructure/performance

分类

矿业与冶金

引用本文复制引用

刘佳伟,宋美慧,李岩,张煜,李艳春,张晓臣,安德烈·萨莫欣,杨慧敏..两步法制备纳米TiCp/GH3536复合粉末组织性能研究[J].材料工程,2024,52(8):189-199,11.

基金项目

黑龙江省重点研发计划(GA21A104) (GA21A104)

黑龙江省科学院双提雁阵特别计划(STYZ2021GJS01) (STYZ2021GJS01)

材料工程

OA北大核心CSTPCD

1001-4381

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