Effect of ultrasonic surface rolling on the surface integrity and wear resistance of IN718
编号:142 访问权限:PARTICIPANT_ONLY 更新:2024-10-13 21:26:44 浏览:1427次 张贴报告

报告开始:2024-10-19 11:40

报告时间:20min

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摘要
Nickel-base superalloys have an irreplaceable position in the aerospace field due to their unique high temperature resistance and corrosion resistance. IN718 is susceptible to wear failure in harsh service environments, so high wear resistance is one of the desired properties of IN718 superalloy. In this paper, the optimal parameters of ultrasonic surface rolling process for IN718 were explored through orthogonal tests. Microstructure characterization, microhardness measurements, and wear resistance analysis at room temperature were carried out by laser confocal microscope, scanning electron microscope, X-ray diffractometer, microhardness tester and friction and wear testing machine. The results show that ultrasonic surface rolling can reduce the surface roughness of the material and increase the microhardness, which gradually decreased from the surface of the material to the core. In the friction and wear test with a load of 10N, it was found that the ultrasonic surface rolling process improved the anti-wear performance of IN718.
Nickel-base superalloys have an irreplaceable position in the aerospace field due to their unique high temperature resistance and corrosion resistance. IN718 is susceptible to wear failure in harsh service environments, so high wear resistance is one of the desired properties of IN718 superalloy. In this paper, the optimal parameters of ultrasonic surface rolling process for IN718 were explored through orthogonal tests. Microstructure characterization, microhardness measurements, and wear resistance analysis at room temperature were carried out by laser confocal microscope, scanning electron microscope, X-ray diffractometer, microhardness tester and friction and wear testing machine. The results show that ultrasonic surface rolling can reduce the surface roughness of the material and increase the microhardness, which gradually decreased from the surface of the material to the core. In the friction and wear test with a load of 10N, it was found that the ultrasonic surface rolling process improved the anti-wear performance of IN718.
 
关键词
Ultrasonic surface rolling,Wear resistance,Surface integrity,IN718
报告人
Hongli Liao
Chongqing University, China

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重要日期
  • 会议日期

    10-18

    2024

    10-20

    2024

  • 10-17 2024

    报告提交截止日期

  • 10-20 2024

    注册截止日期

  • 11-18 2024

    初稿截稿日期

主办单位

中国机械工程学会表面工程分会

承办单位

大连理工大学
山东理工大学

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