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首页> 外文期刊>Research journal of applied science, engineering and technology >Thermal Stresses in an Anisotropic Thin Plate Subjected to Moving Plane Heat Sources
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Thermal Stresses in an Anisotropic Thin Plate Subjected to Moving Plane Heat Sources

机译:平面热源作用下各向异性薄板的热应力

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The aim of this study is to numerically simulate the plane moving heat source through anisotropic mild steal thin plate. Heat conduction problems in anisotropic material, where the thermal conductivity varies with direction and involving a moving heat source have several industrial applications, such like metal cutting, flame or laser hardening of metals, welding and others. The parabolic heat conduction model is used for the prediction of the temperature history. The temperature distribution inside the plate is determined from the solution of heat equation. Thus, the heat equation is solved numerically using finite deference method and the temperature distributions are determined. The thermal stresses in this case are, also, investigated and computed numerically. It is found that the thermal conductivity ratio affect in both temperature and thermal stresses distributions, in additional to the speed and heat source intensity.
机译:这项研究的目的是通过各向异性的轻质薄钢板对平面运动的热源进行数值模拟。各向异性材料中的导热问题,其中导热率随方向变化并涉及移动的热源,具有多种工业应用,例如金属切割,金属的火焰或激光硬化,焊接等。抛物线导热模型用于预测温度历史。板内部的温度分布由热方程解确定。因此,使用有限差分法对热方程进行数值求解,并确定温度分布。还对这种情况下的热应力进行了数值研究和计算。已经发现,除了速度和热源强度之外,导热率还影响温度和热应力分布。

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