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Hygrothermal Loading Effects in Bending Analysis of Multilayered Composite Plates

机译:多层复合板弯曲分析中的湿热负荷效应

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The paper analyzes the hygrothermal loading effects in the bending of multilayered composite plates. Refined two-dimensional models are used to evaluate these effects, they are implemented in the framework of the Carrera's Unified Formulation (CUF) which also allows classical models to be obtained. Hygroscopic and thermal effects are evaluated by means of hygroscopic and thermal load applications, respectively. Such loads can be determined via a priori linear or constant moisture content and temperature profiles through the thickness of the plate, or by calculating them via the solution of the Fick moisture diffusion law and the Fourier heat conduction equation, respectively. These equations are solved in steady-state conditions and in a range of moisture content and temperature variations which requires constant material properties to be considered. Comparisons between assumed linear and calculated moisture content and temperature profiles are also made for different thickness ratios and lamination sequences. The presence of hygroscopic and thermal effects modifies the bending response in composite structures by increasing the maximum deflection and the discontinuity values of in-plane stresses at the layer interfaces.
机译:本文分析了多层复合板弯曲中的湿热负荷效应。精致的二维模型用于评估这些效果,它们在Carrera的统一配方(CUF)框架内实现,该框架也可以获取经典模型。分别通过吸湿和热负荷应用评估吸湿和热效应。可以通过先验的线性或恒定水分含量和温度曲线(通过板的厚度),或者通过分别通过Fick水分扩散定律和傅立叶热传导方程的解来计算这些载荷,来确定这些载荷。这些方程式在稳态条件下以及在水分含量和温度变化范围内都需要求解,因此需要考虑恒定的材料特性。还针对不同的厚度比和层压顺序对假定的线性和计算的水分含量以及温度曲线进行了比较。吸湿和热效应的存在通过增加最大挠度和层界面处平面内应力的不连续值来修改复合结构的弯曲响应。

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