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首页> 外文期刊>Journal of Thermophysics and Heat Transfer >Nonlinear Heat Conduction in Isotropic and Orthotropic Materials with Laser Heat Source
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Nonlinear Heat Conduction in Isotropic and Orthotropic Materials with Laser Heat Source

机译:激光热源在各向同性和正交各向异性材料中的非线性导热

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摘要

Although the convective cooling of simple materials undergoing laser irradiation has been well documented, the effects of radiative cooling for composite materials undergoing laser heating are not as well documented and are of increasing importance to the manufacturing and aerospace industries. The temperature distributions within one-dimensional homogeneous and two-dimensional orthotropic radiating plates subjected to a spatially decaying laser source are presented. The incident energy at the exposed external surface is partially absorbed and transferred through the plate by conduction. The temperature results are presented as a function of a wide variety of thermal and geometric dimensionless parameters. The effects of surface radiation and material conductivity are examined in detail. Results from this study are compared to data in the open literature to gain a better understanding of the effects that the fourth power law for radiation, local temperature gradient in conduction, and first power of the temperature difference in convection have on the resultant temperature profiles.
机译:尽管对经过激光辐照的简单材料的对流冷却已有很好的文献记录,但是对于经过激光加热的复合材料的辐射冷却效果却没有得到很好的记录,并且对制造和航空航天业越来越重要。给出了受到空间衰减激光源作用的一维均质和二维正交异性辐射板内的温度分布。暴露的外表面上的入射能量通过传导被部分吸收并通过板转移。温度结果是各种热和几何无量纲参数的函数。详细检查了表面辐射和材料电导率的影响。将该研究的结果与公开文献中的数据进行比较,以更好地理解辐射的第四幂定律,传导中的局部温度梯度以及对流温差的第一幂对所得温度分布的影响。

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