首页> 外文期刊>Journal of thermal stresses >OPTIMIZATION OF FUNCTIONALLY GRADED MATERIALS IN THE SLAB SYMMETRICALLY SURFACE HEATED USING TRANSIENT ANALYTICAL SOLUTION
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OPTIMIZATION OF FUNCTIONALLY GRADED MATERIALS IN THE SLAB SYMMETRICALLY SURFACE HEATED USING TRANSIENT ANALYTICAL SOLUTION

机译:用瞬态解析法优化平板对称表面加热中的功能梯度材料。

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摘要

Functionally graded materials (FGMs) have been introduced to significantly reduce the temperature and thermal stresses on structures at severe thermal loading. Design and development of FGMs as the heat treatable and energy-absorbing materials for high-temperature and thermal protection systems requires understanding of exact temperature and thermal stress distribution, in order to optimize their resistance to failure. In this study, transient temperature and associated thermal stresses in a functionally graded slab symmetrically heated on both sides are determined by separation of the variables scheme. This method is applied to the heat conduction equation in terms of heat flux for obtaining the temperature profile. Further, the method of the thermo-elastic problem solution can be readily extended for non-homogenous problems with arbitrary temperature profile. Exponential space dependent function of physical properties is considered. Role of heat and stress wave propagation speeds on the problem is illustrated. Effect of the inhomogeneity parameter and the Fourier number on the distribution of temperature, displacement, and stress is discussed. Moreover, determination of the dynamical thermal stresses magnitude due to end effects is investigated. Based on findings, the optimal designs of FGMs are shown for stress reduction and improving heat treatable behavior.
机译:已经引入功能梯度材料(FGM),以在剧烈的热负荷下显着降低结构上的温度和热应力。 FGM作为高温和热保护系统的可热处理和吸收能量的材料的设计和开发需要了解确切的温度​​和热应力分布,以优化其抗故障能力。在这项研究中,通过变量方案的分离确定在两侧对称加热的功能梯度板中的瞬态温度和相关的热应力。该方法根据热通量应用于热传导方程,以获得温度曲线。此外,对于具有任意温度分布的非均匀问题,热弹性问题解决方法可以轻松扩展。考虑物理性质的指数空间依赖性函数。说明了热和应力波传播速度对问题的作用。讨论了非均匀性参数和傅立叶数对温度,位移和应力分布的影响。此外,研究了确定由于端效应引起的动态热应力大小的方法。基于这些发现,FGMs的最佳设计可以降低应力并改善可热处理性能。

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