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首页> 外文期刊>Journal of Composite Materials >Analysis of In-plane and Out-of-plane Thermo-mechanical Stresses in Un-symmetric Cross-ply Curved Laminated Strips
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Analysis of In-plane and Out-of-plane Thermo-mechanical Stresses in Un-symmetric Cross-ply Curved Laminated Strips

机译:非对称交叉弯曲层合板的面内和面外热机械应力分析

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摘要

A new approach for determining in-plane and out-of-plane stresses due to thermal and mechanical loading, in un-symmetric [0(n)/90(m)] cross-ply curved laminated strips is presented in this work. This approach can also be applicable to bi-modulus curved laminated strips. Predictions of curvatures, displacements, and stresses based on the superposition principle are carried out. In-plane stresses are calculated considering classical beam theory. In addition, out-of-plane stresses are predicted by using the Airy's stress function in polar coordinates. The new approach satisfies the continuity conditions at the interface between 0 degrees and 90 degrees layers. Results show that in-plane and out-of-plane stresses are particularly sensitive to the thickness ratio and to geometric conditions. Finally, thermo-mechanical predictions have revealed that out-of-plane stresses are much lesser than in-plane stresses for initially flat laminates. For laminates with high imposed curvatures out-of-plane stresses are high, leading to delamination failure.
机译:在这项工作中,提出了一种新方法,该方法可以确定在不对称[0(n)/ 90(m)]交叉弯曲的层合带中由于热和机械载荷而引起的面内和面外应力。该方法也可适用于双模弯曲叠片。根据叠加原理进行曲率,位移和应力的预测。平面应力是根据经典梁理论计算得出的。此外,通过在极坐标中使用艾里应力函数来预测平面外应力。新方法满足了0度和90度层之间的界面处的连续性条件。结果表明,面内和面外应力对厚度比和几何条件特别敏感。最后,热机械预测表明,对于最初平坦的层压板,平面外应力要比平面内应力小得多。对于具有高施加曲率的层压板,平面外应力较高,导致分层失败。

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