Multi-mechanism of metal surface modification by ultrafast laser hybrid processing
编号:44 访问权限:PARTICIPANT_ONLY 更新:2025-04-26 15:57:51 浏览:289次 特邀报告

报告开始:2025-05-11 16:25

报告时间:20min

所在会场:[H2] 材料表层强化和改性技术论坛二 [H22] 下午场

暂无文件

摘要
Metal materials have extensive applications in aerospace, rail transportation, energy resources, and other important fields. The surface structure and characteristics of metal materials are crucial factors that features their mechanical, optical, and chemical properties. The interaction between laser and metal is a complex process, involving thermal response, mechanical response, or the coupled response. Investigating the thermo-mechanical mechanism of laser-metal interaction is of great significance for addressing the scientific problems and technical challenges of metal components for the surface property enhancement. Due to the ultrashort pulse and ultrahigh energy density, ultrafast laser demonstrates unique advantages in surface modifications and processing of metal materials. Thus, this paper focuses on the thermo-mechanical effects of ultrafast laser processing, conducting research on the combined surface processing mechanism and techniques based on the thermo-mechanical effects of ultrafast laser, with specific content as follows: ultrafast laser processing model of metal materials and the corresponding structure response are investigated. A new strategy to promote the penning uniformity during ultrafast laser processing is proposed with magnetic field treatment enhanced dislocation motion. By enhancing light absorption on the metal surface, method to increase the affected depth of nanosecond laser shock peening is proposed by ultrafast laser.
 
关键词
surface modification,metal,ultrafast laser,hybird processing
报告人
贺广智
中国矿业大学机电工程学院;清华大学机械系

发表评论
验证码 看不清楚,更换一张
全部评论
重要日期
  • 会议日期

    05-09

    2025

    05-11

    2025

  • 05-11 2025

    注册截止日期

  • 05-14 2025

    摘要截稿日期

  • 05-14 2025

    初稿截稿日期

  • 08-07 2025

    报告提交截止日期

主办单位

中国机械工程学会表面工程分会

承办单位

天津大学
中国地质大学(北京)
海南大学
北京科技大学