Improvement of laser shock peening depth through regulation of surface optical absorption
ID:307 View Protection:ATTENDEE Updated Time:2022-10-08 09:13:12 Hits:2634 Oral Presentation

Start Time:2023-04-23 09:15(Asia/Shanghai)

Duration:15min

Session:I 激光加工及增材制造技术论坛 » I1上午场

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Abstract
Laser shock peening is conducted to enhance the mechanical properties of metals. Efficient optical absorption of metal surface is desirable to increase the laser shock peening depth. In this work, a method is proposed to regulate the absorption behavior by surface colorizing to increase the affected depth and magnitude of nanosecond laser shock peening (NLSP). Colorized samples are fabricated with high absorption of 400–1500 nm, which is 89% higher than that of un-colorized samples. This regulated optical response is attributed to the multi-reflection/absorption behavior within nano-to-microscale structures. Nano-to-microscale structure-based approaches offer controllable concurrent tailoring of a higher residual stress depth and greater magnitude. Black samples exhibit higher affected depth (64.71%) and magnitude (17.87%) values for the compressive residual stress than un-colorized samples with unit peak power density after NLSP. Experimental results show that coarse grains are refined on surfaces, and the depths of grain refinement and dislocation propagation increase for colorized samples, which exhibit a regulated surface optical behavior. Therefore, this study represents a promising approach that the regulation of surface optical absorption of metals can be incorporated into the improvement of laser shock peening depth.
Keywords
optical absorption regulation,laser shock peening,affected depth,grain refinement,dislocation generation
Speaker
贺广智
清华大学机械工程系;高端装备界面与技术全国重点实验室

Submission Author
贺广智 清华大学机械工程系;高端装备界面与技术全国重点实验室
闫剑锋 清华大学机械工程系;高端装备界面与技术全国重点实验室
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Important Date
  • Conference Date

    Apr 21

    2023

    to

    Apr 23

    2023

  • Apr 20 2023

    Draft paper submission deadline

  • Apr 23 2023

    Registration deadline

Sponsored By
中国机械工程学会表面工程分会
Organized By
武汉材料保护研究所有限公司
特种表面保护材料及应用技术国家重点实验室
Supported By
中国科学院兰州化学物理研究所
中国科学院宁波材料技术与工程研究所
中国科学院上海硅酸盐研究所
中国科学院金属研究所
广东省新材料研究所
大连理工大学
西安交通大学
北京科技大学
西南交通大学
哈尔滨工业大学
Contact Information
  • 段金弟(中国机械工程学会表面工程分会)
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  • 蒋超(中国机械工程学会表面工程分会)
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  • 刘炼(武汉材料保护研究所有限公司)
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  • 田丰(武汉材料保护研究所有限公司)
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