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首页> 外文期刊>Mechanics of composite materials >Mechanics of Unidirectional Fiber-Reinforced Composites: Buckling Modes and Failure Under Compression Along Fibers
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Mechanics of Unidirectional Fiber-Reinforced Composites: Buckling Modes and Failure Under Compression Along Fibers

机译:单向纤维增强复合材料的力学:沿纤维压缩的屈曲模式和失效

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摘要

One-dimensional linearized problems on the possible buckling modes of an internal or peripheral layer of unidirectional multilayer composites with rectilinear fibers under compression in the fiber direction are considered. The investigations are carried out using the known Kirchhoff-Love and Timoshenko models for the layers. The binder, modeled as an elastic foundation, is described by the equations of elasticity theory, which are simplified in accordance to the model of a transversely soft layer and are integrated along the transverse coordinate considering the kinematic coupling relations for a layer and foundation layers. Exact analytical solutions of the problems formulated are found, which are used to calculate a composite made of an HSE 180 REM prepreg based on a unidirectional carbon fiber tape. The possible buckling modes of its internal and peripheral layers are identified. Calculation results are compared with experimental data obtained earlier. It is concluded that, for the composite studied, the flexural buckling of layers in the uniform axial compression of specimens along fibers is impossible - the failure mechanism is delamination with buckling of a fiber bundle according to the pure shear mode. It is realized (due to the low average transverse shear modulus) at the value of the ultimate compression stress equal to the average shear modulus. It is shown that such a shear buckling mode can be identified only on the basis of equations constructed using the Timoshenko shear model to describe the deformation process of layers.
机译:考虑了在纤维方向上压缩下的直线纤维的单向多层复合材料的内部或外围层的可能屈曲模式的一维线性化问题。使用已知的Kirchhoff-Love和Timoshenko模型来进行调查。由弹性理论的方程描述了作为弹性基础的粘合剂,其根据横向软层的模型简化,并且考虑到层和基础层的运动耦合关系,沿着横向坐标进行集成。找到配制的问题的确切分析解,其用于计算基于单向碳纤维带的HSE 180 REM预浸料的复合物。识别其内部和外围层的可能屈曲模式。将计算结果与先前获得的实验数据进行比较。结论是,对于所研究的复合材料,沿着纤维均匀轴向压缩层的层的弯曲屈曲是不可能的 - 根据纯剪切模式,失效机构与纤维束的屈曲。在最终压缩应力的值等于平均剪切模量的值下实现(由于低平均横剪模量)实现(由于低平均横剪模量)。结果表明,这种剪切屈曲模式可以仅基于使用TimosheNKO剪切模型构造的方程来识别,以描述层的变形过程。

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