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Investigation of the crater-like microdefects induced by laser shock processing with aluminum foil as absorbent layer

机译:以铝箔为吸收层的激光冲击加工引起的坑状微缺陷研究

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摘要

This paper reports that 3D crater-like microdefects form on the metal surface when laser shock processing (LSP) is applied. LSP was conducted on pure copper block using the aluminum foil as the absorbent material and water as the confining layer. There existed the bonding material to attach the aluminum foil on the metal target closely. The surface morphologies and metallographs of copper surfaces were characterized with 3D profiler, the optical microscopy (OM) or the scanning electron microscopy (SEM). Temperature increases of metal surface due to LSP were evaluated theoretically. It was found that, when aluminum foil was used as the absorbent material, and if there existed air bubbles in the bonding material, the air temperatures within the bubbles rose rapidly because of the adiabatic compression. So at the locations of the air bubbles, the metal materials melted and micromelting pool formed. Then under the subsequent expanding of the air bubbles, a secondary shock wave was launched against the micromelting pool and produced the crater-like microdefects on the metal surface. The temperature increases due to shock heat and high-speed deformation were not enough to melt the metal target. The temperature increase induced by the adiabatic compression of the air bubbles may also cause the gasification of the metal target. This will also help form the crater-like microdefects. The results of this paper can help to improve the surface quality of a metal target during the application of LSP. In addition, the results provide another method to fabricate 3D crater-like dents on metal surface. This has a potential application in mechanical engineering. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文报道了在应用激光冲击处理(LSP)时在金属表面形成3D坑状微缺陷。使用铝箔作为吸收材料,水作为约束层,在纯铜块上进行LSP。存在将铝箔紧密附着在金属靶材上的粘结材料。用3D轮廓仪,光学显微镜(OM)或扫描电子显微镜(SEM)表征了铜表面的表面形态和金相。从理论上评估了由于LSP引起的金属表面温度升高。已经发现,当将铝箔用作吸收材料时,如果在粘结材料中存在气泡,则气泡中的空气温度由于绝热压缩而迅速升高。因此在气泡的位置,金属材料熔化并形成微熔池。然后,在随后的气泡膨胀下,向微熔池发射了二次冲击波,并在金属表面产生了类似陨石坑的微缺陷。由于冲击热和高速变形而引起的温度升高不足以熔化金属靶。由气泡的绝热压缩引起的温度升高也可能导致金属靶的气化。这也将有助于形成类似陨石坑的微缺陷。本文的结果可以帮助改善LSP应用过程中金属靶材的表面质量。另外,结果提供了在金属表面上制造3D火山口状凹痕的另一种方法。这在机械工程中具有潜在的应用。 (C)2015 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Applied Surface Science》 |2015年第1期|75-84|共10页
  • 作者单位

    Jiangsu Univ, Sch Mech Engn, Zhenjiang 21203, Peoples R China|Jiangsu Univ, Jiangsu Prov Key Lab Sci & Technol Photon M, Zhenjiang 212013, Peoples R China;

    Jiangsu Univ, Sch Mech Engn, Zhenjiang 21203, Peoples R China;

    Jiangsu Univ, Sch Mech Engn, Zhenjiang 21203, Peoples R China;

    Jiangsu Univ, Sch Mech Engn, Zhenjiang 21203, Peoples R China;

    Jiangsu Univ, Sch Mech Engn, Zhenjiang 21203, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser shock processing; Microdefects; Temperature increase; Aluminum foil; Shock wave;

    机译:激光冲击处理;微缺陷;温度升高;铝箔;冲击波;

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