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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >2D Quasi-Static Accurate Solutions for Isotropic Thermoelastic Materials with Applications
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2D Quasi-Static Accurate Solutions for Isotropic Thermoelastic Materials with Applications

机译:具有应用的各向同性热弹性材料的2D准静态精确解决方案

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Thermally induced stress is an important scientific problem in engineering applications. In this paper, an accurate and efficient method for the two-dimensional quasi-static thermal elastic problem is established to explore the thermal stress problem. First, the compact quasi-static two-dimensional general solution is derived in terms of simple potential functions. The general solution is simple in form and can be derived for arbitrary boundary problems subjected to a line heat load. This is completely new to the literature. Second, Green’s function solutions of an infinite plane under the line pulse heat source based on the general solutions are presented to analyze the thermal stress field. Lastly, numerical results are taken into account to study the temperature and stress field induced by the dynamic heat source load. The corresponding analysis can constitute to reveal the mechanism of thermal elastic problems and provide some guidance for experiments or engineering structural design in the future work.
机译:热诱导的应力是工程应用中的重要科学问题。本文建立了对二维准静态热弹性问题的准确有效的方法,以探讨热应力问题。首先,在简单的潜在功能方面导出了紧凑的准静态二维通用解决方案。通常的解决方案以形式简单,并且可以推导出对经受线热负荷进行的任意边界问题。这对文献来说是完全新的。其次,提出了基于通用解决方案的线脉冲热源下的无限平面的绿色功能解决方案以分析热应力场。最后,考虑了数值结果,以研究由动态热源负载引起的温度和应力场。相应的分析可以构成揭示的热弹性问题的机制和实验或工程在今后的工作结构设计提供一些指导。

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