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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Meso-scale study of non-linear tensile response and fiber trellising mechanisms in woven composites
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Meso-scale study of non-linear tensile response and fiber trellising mechanisms in woven composites

机译:机织复合材料非线性拉伸响应和纤维网格化机理的中尺度研究

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摘要

The non-linear deformation response of plain woven carbon fiber-reinforced composites is experimentally studied at meso-scales. Stereovision digital image correlation is utilized to capture the full-field strain distribution over a 10x10mm(2) area of interest located at the center of the specimens. The evolution of local strains on the fiber bundles and matrix-rich regions as a function of loading is extracted. The effect of fiber orientation angle on fiber bundles stretch ratio and their angle of rotation (fiber trellising) and the related underlying failure mechanisms are analyzed using the measured full-field displacement data. The results indicate that the local load-bearing mechanisms are different in on-axis and off-axis loading conditions, whereas the larger global failure strain noticed in off-axis conditions is attributed to the occurrence of fiber rotation. The fiber trellising is also shown to promote high local shear strain and consequently leads to the protrusion of the matrix material on the deformed specimen surface.
机译:在中尺度上对平纹碳纤维增强复合材料的非线性变形响应进行了实验研究。利用Stereovision数字图像相关性来捕获位于标本中心的10x10mm(2)感兴趣区域上的全场应变分布。提取了纤维束和富基质区域上的局部应变随载荷的变化。使用测得的全场位移数据分析了纤维取向角对纤维束拉伸比及其旋转角(纤维架)的影响以及相关的潜在破坏机制。结果表明,在轴上和轴外的负载条件下,局部承载机制不同,而在轴外条件下,较大的整体破坏应变归因于纤维旋转的发生。纤维网状结构还显示出促进高的局部剪切应变,因此导致基质材料在变形的样品表面上突出。

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