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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Evaluation of Failure Behavior of Transversely Loaded Unidirectional Model Composites
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Evaluation of Failure Behavior of Transversely Loaded Unidirectional Model Composites

机译:评估失败的横向的行为单向加载模型复合材料

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A leading reason for the limited use of laminated composite materials in primary structural applications is that the failure initiates in the ply oriented transverse to the direction of the applied load at a much lower strain level than that which would cause the ultimate failure of the laminate. Previous studies indicate that transverse failure is manifested as either cavitation-induced failure of the matrix system or fiber-matrix debonding. The mechanism causing the failure initiation event is not decidedly known and depends on the local stress field of the constrained matrix that is a function of fiber spacing. In the present study a model composite system using a transparent matrix is employed in a cruciform-shaped specimen to evaluate the viability of several transverse failure theories. The cruciform-shaped specimen utilizes a low strain-to-failure 828/D230 RT cured epoxy and stainless steel wires arranged such that a fiber is placed at the intersection of face diagonals of four remaining fibers located at corners of a square. The transverse failure mechanism is observed in-situ via the reflected light method and recorded utilizing high resolution, high magnification microscope cameras. A parametric study is conducted using three dimensional finite element (FE) models to analyze the stress state in the cruciform specimen as a function of fiber spacing. The result of the 3-D FE models in conjunction with experimental observations are used to evaluate the transverse failure theories suggested in the literature. In addition this data will be used to develop a comprehensive failure criterion for transversely loaded multi-fiber composites that encompasses the dependence on fiber spacing.
机译:一个主要原因叠层的有限使用复合材料的主要结构应用程序的启动失败厚度的横向的方向应用加载应变水平比要低得多这将导致最终的失败层压板。也表现为横向失败cavitation-induced矩阵系统的失败或fiber-matrix脱胶。失败的起始事件并不明显众所周知,取决于当地的应力场约束矩阵的函数纤维间距。使用一个透明的矩阵复合系统受雇于cruciform-shaped标本一些横向的可行性进行评估失败的理论。利用低strain-to-failure 828 / D230 RT固化环氧树脂和不锈钢线安排这样一个纤维被放置在十字路口面对对角线的四个剩下的纤维位于广场的角落。失效机理是观察现场通过反射光方法和使用记录高分辨率,高放大倍数的显微镜相机。三维有限元(FE)模型分析十字形的应力状态标本作为纤维间距的函数。的结果与三维有限元模型实验观测是用来评估横向失败理论的建议文学。开发一个全面的故障判据横向加载多芯复合材料包含了对纤维间距的依赖。

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