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Thermally induced vibration and stability of laminated composite plates with temperature-dependent properties

机译:具有温度依赖性的层压复合板的热致振动和稳定性

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This paper presents a study on the buckling and vibration of initially stressed composite plates with temperature-dependent material properties in thermal environments. The initial stress is taken to be a combination of a pure bending stress and an axial stress. The temperature distribution in the plate is assumed to be uniform and linear in the transverse direction. The governing equations including the transverse shear deformation effects are established using the variational method. The effects of various parameters on the buckling and vibration behaviors of laminated plates with respective temperature-dependent and temperature-independent material properties are investigated. The buckling load and natural frequency are sensitive to the thermal stresses and initial stresses. Numerical results reveal that temperature-dependent material properties should be considered in the buckling and vibration analysis for laminated plates under thermal conditions.
机译:本文介绍了在热环境下,初始应力复合材料板的屈曲和振动与材料温度相关的特性。初始应力被认为是纯弯曲应力和轴向应力的组合。假定板中的温度分布在横向方向上是均匀且线性的。使用变分法建立了包括横向剪切变形效应的控制方程。研究了各种参数对层压板的屈曲和振动行为的影响,这些层压板具有与温度有关和与温度无关的材料特性。屈曲载荷和固有频率对热应力和初始应力敏感。数值结果表明,在热条件下,层压板的屈曲和振动分析应考虑温度相关的材料性能。

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