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Investigation of stress distributions in the resin rich region and failure behavior in glass fiber composites with microvascular channels under tensile loading

机译:拉伸载荷下具有微血管通道的玻璃纤维复合材料的富树脂区应力分布和破坏行为研究

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摘要

Microvascular channels in fiber-reinforced composites offer various functional enhancements such as damage monitoring and self healing. As an adverse effect, presence of such channels can harm the mechanical behavior of composites. In the present study, 3D models are generated to investigate the stress concentrations in the resin-rich pocket and failure behavior considering different stacking configuration and vascule sizes. Similar results were obtained for [0/90](4s) and [90/0](4s) stacking configuration in spite of having different layer just above the channel and different resin pocket dimensions. The effect of changing the vascule diameter is mostly observed in UD 0 configuration. Utilizing elliptical channels results in reduced stress concentrations compared to the circular ones with the same diameter. While the staking configuration affect the failure in the resin rich zone, it does not affect the failure from the laminate region.
机译:纤维增强复合材料中的微血管通道可提供各种功能增强功能,例如损伤监测和自我修复。不利的是,此类通道的存在会损害复合材料的机械性能。在本研究中,考虑到不同的堆叠结构和血管大小,生成了3D模型以研究富含树脂的袋中的应力集中和破坏行为。尽管[0/90](4s)和[90/0](4s)堆叠配置获得了相似的结果,尽管在通道的正上方具有不同的层,并且树脂袋的尺寸也不同。改变血管直径的效果通常在UD 0配置中观察到。与具有相同直径的圆形通道相比,使用椭圆形通道可降低应力集中。虽然铆接结构影响树脂富集区的破坏,但它不影响层压区域的破坏。

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