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A stress function based model for transient thermal stresses of composite laminates in various time-variant thermal environments

机译:各种时变热环境中复合层压板瞬态热应力的基于应力功能模型

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We present a study of transient thermal stresses of composite laminate in this work by means of stress function based approach considering various time-variant thermal environments. Two-dimensional temperature distribution is considered for both linear and quadratic temperature distributions. For each type of distribution, we consider three different cases to examine the effect off thermal transfer point on the distribution of thermal stresses. The proposed methodology uses the principle of complementary virtual work to develop the governing equations and consider the thermomechanical coupling in its constitutive equation. The Lekhnitskii stress functions are adopted as stress fields and the mode shape functions of clamped beam are adopted as stress trial functions. By means of the Rayleigh-Ritz method, we obtain a standard eigenvalue problem and further solve the eigen problem to obtain the solutions. We find that different temperature distributions affect the inhomogeneous equations, but they don't affect the homogeneous equations in the present model. The results will demonstrate the distributions of transient thermal stresses in angle-ply and cross-ply laminates under linear and quadratic temperature distributions. The present methodology is computationally efficient and accurate in calculating the transient thermal stresses, and it can be used in thermal stress analysis of laminated structures.
机译:考虑到各种时变热环境,我们通过应力函数的方法展示了在这项工作中的复合层压板的瞬态热应力研究。用于线性和二次温度分布的二维温度分布。对于每种类型的分布,我们考虑三种不同的情况,以检查热传递点对热应力分布的影响。所提出的方法使用互补虚拟工作的原理来开发控制方程,并考虑其本构方程中的热机械耦合。 LEKHNITSKII应力功能被采用作为应力场,夹紧光束的模式形状功能被采用作为应力试验功能。通过瑞利丽思方法,我们获得标准的特征值问题,进一步解决了eIGen问题以获得解决方案。我们发现不同的温度分布影响不均匀方程,但它们不会影响本模型中的均匀方程。结果将展示线性和二次温度分布下的角度帘布层和交叉层层压物中瞬态热应力的分布。本方法在计算瞬态热应力时,计算上有效和准确,可用于层叠结构的热应力分析。

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