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Thermoelastic Response Induced by Volumetric Absorption of Uniform Laser Radiation in a Half-Space

机译:由半空间中均匀激光辐射的体积吸收引起的热弹性反应

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In this paper, the thermoelastic response in a generalized thermoelastic half-space induced by absorption of a penetrating pulsed laser radiation inside the medium is studied using the generalized theory with Dual-Phase-Lag (DPL). The surface of the target is considered stresses free and exposed to temperature-dependent heat losses. Laplace integral transform is used analytically for obtaining the general solution, while its inverse is carried out numerically. The copper element is used as an application to compare the predictions induced by volumetric absorption of the Dual-Phase-lag theory with those for Lord–Shulman (LS) and classical coupled (CTE) theories, moreover the response induced by volumetric absorption for (LS) and (CTE) models in this work were compared with those induced by surface absorption in a previous work.
机译:在本文中,使用具有双相滞后(DPL)的广义理论,研究了通过介质内部吸收穿透脉冲激光辐射引起的广义热弹性半空间中的热弹性响应。靶的表面被认为是无应力并暴露于温度依赖性的热损失。 LAPLACE积分变换用于分析用于获得一般解决方案,而其逆在数值上进行。铜元件用作应用程序,以比较通过对普卢曼(LS)和古典耦合(CTE)理论的那些对双相滞后理论的体积吸收诱导的预测诱导的预测,而且由体积吸收引起的响应( LS)和(CTE)在本工作中的模型与以前的工作中的表面吸收引起的那些进行比较。

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