CN 41-1243/TG ISSN 1006-852X
Volume 39 Issue 6
Dec.  2019
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Article Contents
FAN Xiaowen, WANG Guozhen, LU Fengxiang. Study on fabrication and tribological properties of TiB2-based cutting tools[J]. Diamond & Abrasives Engineering, 2019, 39(6): 62-68. doi: 10.13394/j.cnki.jgszz.2019.6.0011
Citation: FAN Xiaowen, WANG Guozhen, LU Fengxiang. Study on fabrication and tribological properties of TiB2-based cutting tools[J]. Diamond & Abrasives Engineering, 2019, 39(6): 62-68. doi: 10.13394/j.cnki.jgszz.2019.6.0011

Study on fabrication and tribological properties of TiB2-based cutting tools

doi: 10.13394/j.cnki.jgszz.2019.6.0011
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  • Rev Recd Date: 2019-09-09
  • Available Online: 2022-04-06
  • Three groups of TiB2-based cutting tools with different compositions were prepared by hot pressing sintering. The microstructure, mechanical properties and tribological properties of B73H18N0, B49H18N24 and B41H18C32 samples were compared and analyzed. The results show that no new phase is formed in B49H18N24 and B41H18C32 samples which have TiN and TiC added. The hardness, bending strength and fracture toughness of three TiB2-based cutting tools samples are respectively B73H18N0 > B41H18C32 > B49H18N24, B73H18N0 > B41H18C32 > B49H18N24 and B41H18C32 > B49H18N24 > B73H18N0. Under the same sliding speed or load, the wear rate of three TiB2-based cutting tools against TA2 titanium alloy increases with the increase of load or sliding speed, and the wear rate of B41H18C32 sample is the lowest, indicating that B41H18C32 sample has relatively better wear resistance when grinding TA2 titanium alloy. The wear mechanisms of three TiB2-based cutting tool specimens during dry friction and wear are abrasive wear, adhesive wear and oxidation wear, and mainly adhesive wear.

     

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