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激光弯曲机理的评述

Remark on laser bending mechanisms

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【作者】 苏余鹏王秀凤陈光南胡世光Janos TakacsGyorgy Krallics

【Author】 Su Yu-peng, Wang Xiu-feng, Chen Guang-nan, Hu Shi-guang, Janos Takacs,Gyorgy Krallics ( School of Mechanical Engineering and Automation, BUAA, Beijing 100083 China; Institute of Mechanics, Chinese Academy of Science, Beijing, 100080, China; Budapest University of Technology and Economics, Hungary, H-1502)

【机构】 北京航空航天大学机械工程及自动化学院中国科学院力学所材料工艺研究中心Budapest University of Technology and EconomicsBudapest University of Technology and Economics 北京 100083北京 100083 中国科学院力学所材料工艺研究中心北京 100080北京 100083匈牙利 H-1502匈牙利 H-1502

【摘要】 对激光弯曲变形机理问题进行了探讨,提出了激光弯曲的变形机理本质上是温度梯度机理,反向弯曲机理和增厚机理是当材料厚度方向的温度梯度很小时,针对不同厚度的材料而出现的现象.实验发现有限厚度材料在激光辐照作用下,其内部产生了用经典傅里叶定律无法解释的非常规温度分布,将其定义为泛傅里叶效应,用于进一步揭示激光弯曲机理的实质.

【Abstract】 Laser bending mechanism is remarked and its essence is the temperature gradient mechanism. The reverse bending and the thickened mechanisms are included in the temperature gradient mechanism. We think that the reverse bending and the thickened of the material are only different phenomena based on different thickness of the material. Experimental result shows that there is a kind of un-convention temperature distribution in the limit thickness specimen under laser irradiation. This phenomenon cannot be explained by the classical Fourier Law and defined as Pan-Fourier effect in order to explain laser bending mechanism further.

  • 【文献出处】 材料科学与工艺 ,Material Science and Technology , 编辑部邮箱 ,2004年05期
  • 【分类号】TG385
  • 【被引频次】11
  • 【下载频次】149
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