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Failure Mechanisms of Composite Plates With a Circular Hole Under Remote Biaxial Planar Compressive Loads

机译:双向孔平面压缩载荷作用下带圆孔复合板的破坏机理

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摘要

We report the results of an experimental investigation carried out for the analysis of failure mechanisms in fibrous laminated composite plates containing stress raisers, in the form of circular cutouts, under static biaxial planar compressive loading (i.e., compression in the two inplane orthogonal directions). A series of biaxial tests were carried out with 48 ply graphite/epoxy composites of varying fiber orientation. In all cases, the hole diameter to plate width aspect ratio remained in a range suitable for infinite plate assumptions. Fiber microbuckling, fiber kink banding, and fiber/ matrix debonding are identified as the dominant failure mechanisms.
机译:我们报告了一项实验研究的结果,该分析用于分析在静态双轴平面压缩载荷(即在两个面内正交方向上的压缩)下以圆形切口形式包含应力提升剂的纤维层压复合板的破坏机理。对48种纤维取向不同的石墨/环氧树脂复合材料进行了一系列双轴测试。在所有情况下,孔径与板宽的长宽比均保持在适合无限板假设的范围内。纤维微屈曲,纤维扭结带和纤维/基体剥离是主要的失效机理。

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