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An Axisymmetric Stress Analysis In A Single Fibre Composite Of Finite Length Under A Thermal Expansion Mismatch

机译:热膨胀失配下有限长单纤维复合材料的轴对称应力分析

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In this paper, an exact solution is derived for the characterization of thermal stresses in a single-fibre composite of finite length. All the required boundary and interfacial conditions of the thermo-elastic problem are thus satisfied exactly. The proposed method involves a particular solution that is added to a three-dimensional (3D) complementary displacement field which satisfies automatically the Navier's equations. Based on experimental data provided by fibre Bragg grating sensors, an axisymmetric analysis is used then to determine the residual stress field inside the composite due to matrix shrinkage. The numerical results clearly indicate that all stress components vary significantly near the ends. An abrupt change of the shear stresses is thus predicted close to the edges. The results of the model are also found to be in good agreement with those obtained from finite element simulations. A comparison of the proposed approach with three other published theoretical models is also presented.
机译:在本文中,为表征有限长度的单纤维复合材料中的热应力提供了精确的解决方案。因此精确地满足了热弹性问题的所有要求的边界和界面条件。所提出的方法涉及一种特殊的解决方案,该解决方案被添加到自动满足Navier方程的三维(3D)互补位移场中。基于光纤布拉格光栅传感器提供的实验数据,然后使用轴对称分析确定复合材料内部由于基质收缩而产生的残余应力场。数值结果清楚地表明,所有应力分量在端部附近均发生显着变化。因此,预测在靠近边缘处的剪切应力会突然变化。还发现该模型的结果与从有限元模拟获得的结果非常一致。还提出了该建议的方法与其他三个已发布的理论模型的比较。

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