带热源的多层复合空心球的热弹性行为

S. Pawar, J. Bikram, G. D. Kedar
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引用次数: 2

摘要

本文用数学方法讨论了多层复合材料空心球在各层随时间产生的体积热作用下径向变化的瞬态温度分布。最初,这些层处于任意温度,分析假设物体的所有层都是热各向同性的,并且具有完美的热接触。将温度场问题分解为齐次瞬态和非齐次稳态两部分,采用分离变量的方法得到温度场的精确解,是一种新颖的方法。利用解析技术的严格应用,借助于特征值展开法,对得到的方程组进行了求解。在非耦合热弹性的背景下研究了热弹性响应。结果表明,分层产热参数对温度和热应力的大小和分布有很大影响。以铝、铜、铁三层空心球为例,在一定条件下验证了该模型的准确性和可行性。尽管进行了广泛的搜索,但在公开文献中很难找到本文所提出的结果。
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Thermoelastic Behaviour in a Multilayer Composite Hollow Sphere with Heat Source
This paper deals with the mathematical approach to discuss the radially varying transient temperature distribution in a multilayer composite hollow sphere subjected to the time independent volumetric generation of heat in each layer. Initially the layers are at arbitrary temperature and the analysis assumes all the layers of the body are thermally isotropic and having a perfect thermal contact. It is novel to obtain the exact solution for temperature field by the separation of variables by splitting the problem into two parts homogeneous transient and non-homogeneous steady state. The set of equations obtained are solved by using the rigorous applications of analytic techniques with the help of eigen value expansion method. The thermoelastic response is studied in the context of uncoupled Thermoelasticity. The results obtained pointed out that the magnitude and distribution of the temperature and thermal stresses are greatly influenced by the layered heat generation parameter. The accuracy and feasibility of the proposed model is demonstrated by an example of three layered hollow sphere of Aluminium, Copper and Iron subjected to given conditions. The results presented in this article could be found hardly in an open literature despite of extensive search.
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