期刊文献+

长脉冲激光对金属材料热破坏的分析 被引量:4

Theoretical research: the thermal damage of matel materials,under millisecond-pulsed laser irradiations
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摘要 在入射激光光斑半径远远大于材料热扩散长度的条件下,应用固体热传导理论,建立并求解了描述表面吸收材料温升和熔融过程的一维热传导方程,得到了材料表面熔化前后温度场分布随脉冲宽度变化情况及熔融深度随脉冲宽度变化情况的解析表达式。计算了金属材料银、铝和铜的熔融破坏阈值和汽化破坏阈值,并与利用MSC.Marc有限元分析软件所得数据结果做了对比,相对误差小于4%。所得结果为高功率激光的应用提供了理论依据。 Under the conditions of the radius of the incident larser beam is much larger than the thermal diffusivity of the materials, a kind of one - dimensional thermal conductor equations that describe the temperature - risings and melting procedures of the surface - absorbing materials, are built and solved. The analytical expressions of the temperature distributions versus the pulse time before and after the surfaces of the materials melt and the analytical expressions of the melt depth are gained. From the analytical expressions, the melt damage thresholds and the vaporization damage thresholds of metal materials Al, Ag and Cu are given out numerically. And a comparison with the result of the finite element analysis software ( MSC. Marc) show that the relative errors of our methods are smaller than 4%.
出处 《激光杂志》 CAS CSCD 北大核心 2006年第2期75-76,共2页 Laser Journal
基金 西南技术物理研究所资助课题
关键词 ms脉冲激光 钕玻璃激光器 热传导方程 熔融深度 损伤阈值 Millisecond- pulsed laser Thermal conduct equation Melt depths Damage threshold.
作者简介 蒋艳锋(1979-),男,四川大学电子信息学院研究生。
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参考文献4

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共引文献21

同被引文献47

  • 1徐立君,张喜和,倪晓武,毕娟.不同光斑半径的连续激光作用金属靶材的温度场[J].红外与激光工程,2007,36(z1):632-635. 被引量:5
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