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等离子烧结工艺对WC/Cr3C2/La2O3刀具材料力学性能的影响

钟韬 郭荣臻 林晓川 柳龙婷 王佳鑫 徐志强 郭世柏

粉末冶金技术2024,Vol.42Issue(6):582-588,7.
粉末冶金技术2024,Vol.42Issue(6):582-588,7.DOI:10.19591/j.cnki.cn11-1974/tf.2024040013

等离子烧结工艺对WC/Cr3C2/La2O3刀具材料力学性能的影响

Effect of plasma sintering process on the mechanical properties of WC/Cr3C2/La2O3 cutting tool materials

钟韬 1郭荣臻 1林晓川 1柳龙婷 1王佳鑫 1徐志强 1郭世柏1

作者信息

  • 1. 湖南科技大学材料科学与工程学院,湘潭 411201
  • 折叠

摘要

Abstract

To solve the problem of adhesive phase wear for the traditional cemented carbide tools in the high-speed cutting process,the WC/Cr3C2/La2O3 tool materials were prepared by spark plasma sintering(SPS).The effects of Cr3C2 addition amount(mass fraction,0%~2.00%)and process parameters(sintering temperature 1500~1700℃and sintering pressure 15~45 MPa)on the microstructure and mechanical properties of the tool materials were studied.The results show that,the optimum Cr3C2 content is 0.50%,and the WC/Cr3C2/La2O3 cemented carbide sintered at 1550℃and 25 MPa has the best comprehensive properties as the relative density,bending strength,and Vickers hardness are 97.5%,1281.0 MPa,and HV 2124.3,respectively.With the increase of sintering temperature,the relative density increases and the microstructure becomes more even for the WC-based tool materials.However,too high temperature leads to the abnormal growth of grains,the uneven distribution of microstructure,more porosity,and the lower mechanical properties.As the sintering pressure increases,the grain size reduces,the microstructure becomes more even,and the mechanical properties increase.While the sintering pressure is above 25 MPa,the mechanical properties of tool materials decrease.

关键词

硬质合金/刀具材料/放电等离子烧结/微观组织/力学性能

Key words

cemented carbide/cutting tool materials/spark plasma sintering/microstructure/mechanical properties

分类

矿业与冶金

引用本文复制引用

钟韬,郭荣臻,林晓川,柳龙婷,王佳鑫,徐志强,郭世柏..等离子烧结工艺对WC/Cr3C2/La2O3刀具材料力学性能的影响[J].粉末冶金技术,2024,42(6):582-588,7.

基金项目

湖南省教育厅重点资助项目(23A0379) (23A0379)

湖南省大学生创新创业一般项目(S202310534108) (S202310534108)

中国大学生创新创业项目(S202310534003S) (S202310534003S)

湖南省教研教改一般项目(HNJG-2021-0643) (HNJG-2021-0643)

粉末冶金技术

OA北大核心CSTPCD

1001-3784

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