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首页> 外文期刊>Journal of Composite Materials >Mechanisms of in-plane shear deformation in hybrid three-dimensional woven composites
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Mechanisms of in-plane shear deformation in hybrid three-dimensional woven composites

机译:混合三维机织复合材料的面内剪切变形机理

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摘要

The in-plane shear response of a hybrid three-dimensional woven composite laminate is studied, and the deformation and failure micromechanisms are analysed by means of full-field strain measurements and X-ray microtomography. It was found that the laminate presented a very high failure strain (approximate to 38%), much higher than that of conventional two-dimensional laminates. Extensive damage was clearly observed during deformation in the form of matrix/fibre debonding and tow splitting by shear. Nevertheless, the through-thickness reinforcement hindered the development of failure by interply delamination and improved the ductility. Final fracture took place by tensile fibre failure, and the strain-to-failure was enhanced by the higher ductility of the glass fibres.
机译:研究了混合三维编织复合材料层压板的面内剪切响应,并通过全场应变测量和X射线显微断层摄影术分析了变形和破坏的微观机制。发现该层压板呈现出非常高的破坏应变(约38%),远高于常规的二维层压板。在变形过程中清楚地观察到广泛的破坏,其形式为基体/纤维脱粘和剪切引起的丝束分裂。然而,贯穿厚度的增强阻碍了层间剥离导致的失效发展并改善了延展性。最终断裂是由于拉伸纤维失效而引起的,而断裂应变则由于玻璃纤维的较高延展性而得到增强。

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