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A Novel Micro-Scale Plastic Deformation Feature on a Bulk Metallic Glass Surface under Laser Shock Peening

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【作者】 魏延鹏魏炳忱王曦徐光跃李磊吴先前宋宏伟黄晨光

【Author】 WEI Yan-Peng;WEI Bing-Chen;WANG Xi;XU Guang-Yue;LI Lei;WU Xian-Qian;SONG Hong-Wei;HUANG Chen-Guang;Key Laboratory for Mechanics in Fluid-Solid Coupling Systems,Chinese Academy of Sciences;Key Laboratory of Microgravity(National Microgravity Laboratory),Institute of Mechanics,Chinese Academy of Sciences;Sinosteel Corporation;

【机构】 Key Laboratory for Mechanics in Fluid-Solid Coupling Systems,Chinese Academy of SciencesKey Laboratory of Microgravity(National Microgravity Laboratory),Institute of Mechanics,Chinese Academy of SciencesSinosteel Corporation

【摘要】 Laser shocking peening is a widely applied surface treatment technique that can effectively improve the fatigue properties of metal parts.We observe many micro-scale arc plastic steps on the surface of Zu47.9 Ti0.3Ni3.1Cu39.3Al9.4metallic glass subjected to the ultra-high pressure and strain rate induced by laser shock peening.The scanning electronic microscopy and atomic force microscopy show that the arc plastic step(APS) has an arc boundary,50-300 nm step height,5-50 μm radius and no preferable direction.These APSs have the ability to accommodate plastic deformation in the same way as shear band.This may indicate a new mechanism to accommodate the plastic deformation in amorphous metallic giass under high pressure,ultra-high strain rates,and short duration.

【Abstract】 Laser shocking peening is a widely applied surface treatment technique that can effectively improve the fatigue properties of metal parts.We observe many micro-scale arc plastic steps on the surface of Zu47.9 Ti0.3Ni3.1Cu39.3Al9.4metallic glass subjected to the ultra-high pressure and strain rate induced by laser shock peening.The scanning electronic microscopy and atomic force microscopy show that the arc plastic step(APS) has an arc boundary,50-300 nm step height,5-50 μm radius and no preferable direction.These APSs have the ability to accommodate plastic deformation in the same way as shear band.This may indicate a new mechanism to accommodate the plastic deformation in amorphous metallic giass under high pressure,ultra-high strain rates,and short duration.

【基金】 Supported by the National Natural Science Foundation of China under Grant No 11002150;the Basic Research Equipment Project of the Chinese Academy of Sciences under Grant No YZ200930;the National Basic Research Program of China under Grant No 2007CB613905
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2013年03期
  • 【分类号】TN249
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