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Exact solution considering layerwise mechanics for laminated composite and sandwich curved beams of deep curvatures

机译:考虑层压复合材料和夹层弯曲梁的层状机械师的精确解决方案

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摘要

In this work, a third-order efficient layerwise theory (ELWT) has been developed for laminated composite and sandwich curved beams of deep curvatures. The circumferential displacement is assumed to have global third-order variation in thickness (radial) coordinate with a linear layerwise variation. The number of independent variables is reduced to 3 by imposing the continuity of displacement and transverse shear stress at interfaces and shear free conditions on the outer and inner surfaces. Equations of the motion are derived using Hamilton's principle. Navier type analytical solution is obtained for simply supported ends. Results for static deflection, stresses, and natural frequencies are presented for laminated composites and sandwich curved beams of different radii of curvature and thicknesses. The importance of inclusion of the deepness terms (1 + z/ R) in the formulation for the static and free vibration responses are discussed by comparing with the exact 2D elasticity solution. It is shown that the results predicted by the present ELWT are more accurate than equivalent single layer theories having same number of variables. For sandwich curved beams, the predictions of third-order theory (TOT) are extremely poor in comparison with ELWT. The results presented in the paper will be useful for assessing the accuracy of other simplified 1D theories.
机译:在这项工作中,已经开发了三阶高效的层状理论(ELWT),用于层压复合材料和深曲线的夹层弯曲梁。假设圆周位移具有具有线性层状变化的厚度(径向)坐标的全局三阶变化。通过在接口处施加位移和横向剪切应力的连续性和外表面上的剪切条件来减少到3的独立变量的数量。运动的方程是使用Hamilton的原则来源的。获得简单支持的端部获得Navier型分析解决方案。静态偏转,应力和自然频率的结果用于层叠复合材料和不同曲率和厚度的夹层弯曲梁。通过比较精确的2D弹性溶液,讨论将深度术语(1 + Z / R)包含在静态和自由振动响应的配方中的重要性。结果表明,目前ELWT预测的结果比具有相同数量的变量的等效单层理论更准确。对于夹心弯曲梁,与ELWT相比,三阶理论(Tot)的预测非常差。本文提出的结果对于评估其他简化的1D理论的准确性是有用的。

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