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Boundary element method applied to three dimensional thermoelastic contact

机译:边界元法在三维热弹性接触中的应用

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In this paper we present a boundary element method to analyze and solve three dimensional frictionless thermoelastic contact problems. Although many problems in engineering can be solved with one-dimensional or two-dimensional models, those simplifications there are not possible in many others, such as the design of microelectronics packages. We calculate the stresses, movements, temperatures and thermal gradients on 3D solids. A thermal resistance at the contact zone depends on the local pressure is considered. The problem is solved by a double iterative method, so that in the final solution do not appear tensions in the contact zone or penetrations between the two solids. The solutions are compared with other works, where possible, to validate the method.
机译:在本文中,我们提出了一种边界元方法来分析和解决三维无摩擦热弹性接触问题。尽管可以用一维或二维模型解决工程中的许多问题,但是这些简化在其他许多方面是不可能的,例如微电子封装的设计。我们计算3D实体上的应力,运动,温度和热梯度。考虑接触区域的热阻取决于局部压力。该问题通过双重迭代方法解决,因此在最终解决方案中,不会在接触区出现张力或在两种固体之间穿透。将解决方案与其他工作(如果可能)进行比较,以验证该方法。

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