Laser shock processing to improve residual stresses with and without paint layer on 6061-T6 aluminum alloy

G. Gómez-Rosas, C. Rubio-González, J. Ocaña, C. Molpeceres, J. Porro, M. Morales, F. J. Casillas, M. Mora-González, W. Chi-Moreno
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引用次数: 1

Abstract

Laser shock processing (LSP) or laser shock peening has been proposed as a competitive alternative technology to classical treatments for improving fatigue and wear resistance of metals. This process induces a compressive residual stress field which increases fatigue crack initiation life and reduce fatigue crack growth rate. We present a configuration and results in the LSP concept for metal surface treatments in underwater laser irradiation at 1064 nm with and without a thin surface paint layer. A convergent lens is used to deliver 1, 2 J/cm2 with a 8 ns laser FWHM pulse produced by a 10 Hz, Q-switched Nd:YAG laser with a spot diameter of a 1,5 mm moving forward along the workpiece. A LSP configuration with experimental results using a pulse density of 5000 pulses/cm2 in 6061-T6 aluminum samples are presented.
激光冲击处理改善6061-T6铝合金涂漆和不涂漆残余应力
激光冲击加工(LSP)或激光冲击强化已被提出作为一种有竞争力的替代技术,以提高金属的疲劳和耐磨性。这一过程产生了压缩残余应力场,延长了疲劳裂纹萌生寿命,降低了疲劳裂纹扩展速率。我们提出了一个配置和结果在水下激光辐照金属表面处理的LSP概念在1064nm有和没有薄表面涂层。采用会聚透镜,利用光斑直径为1.5 mm的10 Hz调q Nd:YAG激光器产生的8 ns激光FWHM脉冲,沿工件向前移动,提供1.2 J/cm2。给出了6061-T6铝样品中脉冲密度为5000脉冲/cm2的LSP配置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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