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Analytical investigation into laser pulse heating and thermal stresses

机译:激光脉冲加热和热应力的分析研究

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摘要

Laser pulse heating of metallic surfaces results in rapid rise of temperature in the region irradiated by the laser beam. This in turn results in high temperature gradient in this region. The irradiated substrate material expands as a response to the temperature gradient. Consequently, high thermal stress levels are developed in the region of the high temperature gradient. In the present study, closed form solutions for temperature and stress fields due to a laser pulse decaying exponentially in time are presented. A Laplace transformation method is employed in the analysis. The resulting equations are non-dimensionalized with the appropriate parameters. It is found that temperature rises rapidly during the early heating period in the surface region. In this case, internal energy gain dominates the conduction losses from the surface vicinity. The thermal stress levels attain high values in the surface region. The stress wave developed is compressive and it propagates with a wave speed c1 inside the substrate.
机译:金属表面的激光脉冲加热导致激光束照射区域的温度快速升高。这又导致该区域中的高温梯度。被辐射的基板材料响应于温度梯度而膨胀。因此,在高温梯度的区域中产生了高的热应力水平。在本研究中,由于激光脉冲随时间呈指数衰减,提出了温度和应力场的封闭形式解。分析中使用拉普拉斯变换方法。得到的方程式没有使用适当的参数进行量纲化。发现在表面区域的早期加热期间温度迅速升高。在这种情况下,内部能量增益将控制表面附近的传导损耗。在表面区域中,热应力水平达到较高的值。产生的应力波是压缩性的,并以波速c1在基板内部传播。

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