CN 41-1243/TG ISSN 1006-852X
Volume 40 Issue 4
Aug.  2020
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LIU Yao, LI Rui, ZHAO Yidong, XU Lijun, WU Chongjun. Experiment study on the 20CrMnTi ground surface performances[J]. Diamond & Abrasives Engineering, 2020, 40(4): 70-75. doi: 10.13394/j.cnki.jgszz.2020.4.0011
Citation: LIU Yao, LI Rui, ZHAO Yidong, XU Lijun, WU Chongjun. Experiment study on the 20CrMnTi ground surface performances[J]. Diamond & Abrasives Engineering, 2020, 40(4): 70-75. doi: 10.13394/j.cnki.jgszz.2020.4.0011

Experiment study on the 20CrMnTi ground surface performances

doi: 10.13394/j.cnki.jgszz.2020.4.0011
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  • Rev Recd Date: 2020-06-10
  • To explore the grinding parameters′ effect on 20CrMnTi ground surface quality, the grinding experiments by using CBN wheel were conducted. The characteristic of ground surface Rockwell hardness H, surface residential stress σs, and subsurface residential stress σss were discussed to reveal the grinding ability of 20 CrMnTi by using the single factor experiment. The results indicate that under the same condition, the H decrease with the increase of wheel speed vs and grinding depth ap, and increase with the increase of wheel feed rate vw. The ap has the greatest influence, followed by the vw and vs. The ground surface is equipped with the compressive residential stress. The compressive stress (absolute value) shows the increase with the increase of vw and decrease of ap. As the vs increase, the σs fluctuated. With the increase of subsurface depth, the σss changes from compressive stress to tensile stress and finally becomes close to 0. The σss distribution looks better in lower vs and shallower ap. By using vs=60 m/s, vw=1.045 m/s, ap=3 μm, the higher H and surface residential compressive stress, and better σss distribution can be obtained, which shows better ground surface quality.

     

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