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首页> 外文期刊>International Journal of Mechanical Sciences >Application of Rayleigh-Ritz formulation to thermomechanical buckling of variable angle tow composite plates with general in-plane boundary constraint
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Application of Rayleigh-Ritz formulation to thermomechanical buckling of variable angle tow composite plates with general in-plane boundary constraint

机译:Rayleigh-ritz制剂在可变角丝复合板具有一般内边界约束的热机械屈曲

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摘要

Variable Angle Tow (VAT) composites always exhibit in-plane variable stiffness property, which provides the designer with an extended freedom in stiffness tailoring to achieve higher structural performance for lightweight composite structures. In this paper, a methodology based on a generalised Rayleigh-Ritz formulation is developed to study the thermomechanical buckling response of symmetrical VAT composite plates with general in-plane boundary constraint. It is assumed that the material is of temperature-independent and the panel is exposed to an arbitrary in-plane temperature change. In the framework of thermoelastic theory, the principle of thermoelastic complementary energy in conjunction with Airy's stress function formulation, for the first time, is applied to solve the in-plane thermoelastic problem of the tow-steered plate. The non-uniform distribution of in-plane force resultant over the entire plane is determined by utilizing the Rayleigh-Ritz formulation enhanced by Lagrangian multiplier method. The merit of the proposed modelling strategy lies in that the application of Lagrangian multiplier method removes the restrictions inherent in conventional Rayleigh-Ritz formulation and thus provides generality to model general in-plane boundary constraint against thermal expansion or contraction. During the buckling analysis, the governing equation of thermomechanical buckling problem of the tow-steered plate under a combination of both temperature change and general in-plane boundary constraint is derived based on the third-order shear deformation theory of Reddy's type. The accuracy and robustness of the proposed Rayleigh-Ritz model is validated against finite element solutions and previously published results. Effects of boundary condition, fibre orientation angle and temperature change on the in-plane thermoelastic and thermomechanical buckling behaviours of VAT composite plates are studied by numerical examples. Finally, the mechanism of applying tow-steered technology to improve the thermomechanical buckling resistance of composite plates is explored.
机译:可变角度丝束(VAT)复合材料始终表现出面内可变刚度特性,其为设计者提供刚度剪裁的延伸自由,以实现更轻质的复合结构的结构性性能。在本文中,开发了一种基于广义瑞利 - 丽思制剂的方法,以研究对称增值税复合板的热机械屈曲响应与一般的平面内边界约束。假设材料具有温度无关,并且面板暴露于任意面内温度变化。在热弹性理论框架中,应用了热弹性互补能量与通风的应力函数配方的原理应用于解决牵引板的平面内热弹性问题。通过利用拉格朗日乘法器方法增强的瑞利-RITZ制剂来确定在整个平面上的面内力产生的不均匀分布。所提出的建模策略的优点在于拉格朗日乘法器方法的应用去除传统的瑞利 - 丽思制剂中固有的限制,从而为热膨胀或收缩提供了模型内面内边界约束的普遍性。在屈曲分析期间,基于Reddy类型的三阶剪切变形理论,推导出在两种温度变化和一般内边界约束下牵引板的热机械屈曲问题的控制方程。建议的Rayleigh-RITZ模型的准确性和稳健性用于针对有限元解决方案和先前公布的结果验证。用数值实例研究了边界条件,纤维取向角度和温度变化对VAT复合板的平面热弹性和热机械屈曲行为的影响。最后,探讨了应用牵引技术来提高复合板的热机械屈曲阻力的机理。

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