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Interlaminar fracture toughness of vectran-stitched composites - Experimental and computational analysis

机译:Vectran缝合复合材料的层间断裂韧性-实验和计算分析

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摘要

In this article, mode I interlaminar fracture toughness (GIC) of Vectran-stitched laminated composite is determined experimentally and computa- tionally. Critical strain energy release rates are measured by performing double can- tilever beam test on composites stitched with Vectran as stitch fiber, and are found to increase with increasing stitch thread thickness and stitch density. It is also revealed that the relationship between GIC and stitch density or stitch thread volume fraction appears to be linear. Interlaminar tension test is conducted to identify important fracture behavior of a single Vectran stitch fiber thread. The finite-element (FE) model of the stitched composite incorporates the novel four-step stitch fracture pro- cess, namely, interfacial debonding, slack absorption, fiber breakage, and pullout friction. The FE predictions of load-displacement curves and critical mode I strain energy release rates show good agreement with the experimental results. The differ- ences in interdependent stitch mechanisms between moderately stitched and densely stitched composites are discussed.
机译:在本文中,通过实验和计算确定了Vectran缝合的层压复合材料的I型层间断裂韧性(GIC)。临界应变能释放速率是通过对以Vectran缝制为针刺纤维的复合材料进行双悬臂梁梁测试而测得的,并且发现随着缝线厚度和针迹密度的增加,释放速率会增加。还揭示出,GIC与针迹密度或针迹线体积分数之间的关系似乎是线性的。进行层间张力测试以识别单根Vectran缝制纤维线的重要断裂行为。缝合复合材料的有限元(FE)模型结合了新颖的四步缝合断裂过程,即界面剥离,吸收松弛,纤维断裂和拉拔摩擦。载荷-位移曲线和临界模式I应变能释放速率的有限元预测与实验结果吻合良好。讨论了中缝和密缝复合材料相互依赖的缝制机理的差异。

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