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Analysis of five-point bending for determination of the interlaminar shear strength of unidirectional composite materials

机译:用于确定单向复合材料层间剪切强度的五点弯曲分析

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摘要

Analyses of a beam under five-point and three-point bending are presented, using orthotropic plane elasticity to investigate the interlaminar shear failure of unidirectional composites. The approach uses Fourier series expansions of the applied concentrated loads, together with the Saint Venant's semi-inverse method in which the stresses are obtained by a non-dimensional stress function. The computations of the stresses and displacements are conducted by a CRAY XM-P/25 supercomputer. The comparison of stress analyses between the five-point and three-point bending configuration is presented for a T300/5208 graphite/epoxy unidirectional composite with a span-to-height ratio of four. It has been round that five-point loading provides the advantage of a specimen having both high shear stresses and almost zero bending stresses over a substantial region of the specimen. This provides the possibility of using the five-point test configuration to measure interlaminar shear strength of unidirectional composites. In addition to the shear dominated stress distributions, the five-point bending fixture has several advantages against other test methods, such as simple fabrication of the specimen, economical testing jig, and easy stopping of test for study of phenomenon, and it can be used to take photographs of a failure. An optimal design in terms of the loading configuration, especially the load line distance of the upper loading applicators, is recommended for the most favorable stress states for interlaminar shear failure of a given composite beam.
机译:利用正交各向异性平面弹性研究单向复合材料的层间剪切破坏,给出了梁在五点和三点弯曲下的分析。该方法使用所施加集中载荷的傅立叶级数展开,以及圣维南的半反方法,其中通过无量纲应力函数获得应力。应力和位移的计算是由CRAY XM-P / 25超级计算机进行的。对于跨度-高度比为4的T300 / 5208石墨/环氧树脂单向复合材料,进行了五点和三点弯曲配置之间的应力分析比较。圆角的是,五点加载提供了这样的优点,即样品在整个样品区域都具有高剪切应力和几乎为零的弯曲应力。这提供了使用五点测试配置来测量单向复合材料的层间剪切强度的可能性。除了剪切应力分布外,五点弯曲夹具与其他测试方法相比还具有其他优点,例如样品制作简单,经济的测试夹具以及易于停止进行现象研究的测试,因此可以使用它。拍摄故障照片。对于给定复合梁的层间剪切破坏,为了获得最有利的应力状态,建议采用关于载荷配置(尤其是上部载荷施加器的载荷线距离)的最佳设计。

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