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A simplified beam analysis of the end notched flexure mode II delimitation specimen

机译:端部切口弯曲模式II划界标本的简化梁分析

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A modified classical beam theory solution is developed for the end notched flexure (ENF) specimen, one of the most widely used model II delimitation tests for fibre reinforced composite materials. The effect of crack tip deformation is analyzed by assuming that a region of certain length close to the crack tip rests on an elastic shear spring foundation. The mathematical procedure of the present analysis is simple and clear, and the resulting solutions for the compliance and the strain energy release rate of the ENF specimen are highly accurate. Excellent agreement is obtained over a wide range of material and geometrical properties of ENF specimens when the current results are compared with finite element results and other analytical analyses that include the effect of crack tip deformation in their solutions. The success of the present analysis indicates that the effect of crack tip deformation is the most important factor that must be considered when calculating the relationship between G_II and the load in the ENF specimen.
机译:针对端部弯曲挠曲(ENF)标本开发了一种改进的经典梁理论解决方案,这是纤维增强复合材料使用最广泛的II型定界测试之一。通过假定靠近裂纹尖端的一定长度的区域位于弹性剪切弹簧基础上来分析裂纹尖端变形的影响。本分析的数学过程简单明了,所得到的ENF标本顺应性和应变能释放率的解决方案非常准确。当将当前结果与有限元结果以及其他包括裂纹尖端变形影响的分析分析进行比较时,在ENF样品的各种材料和几何特性上都获得了极好的一致性。目前分析的成功表明,裂纹尖端变形的影响是计算G_II与ENF试样中载荷之间关系时必须考虑的最重要因素。

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