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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Experimental investigation on suitability of carbon fibre thin plies for racquets
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Experimental investigation on suitability of carbon fibre thin plies for racquets

机译:碳纤维薄层用于球拍的实验研究

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摘要

In the world of fast-growing technology, switch from traditional wooden and metallic sports racquets to next generation powerful racquets is inevitable with the advent of carbon fibres, which offer benefits like increased strength, stiffness, impact, and efficient vibration and damping properties. The introduction of carbon fibres, however, comes with challenges of choosing a right matrix system that, in combination, provides the best solution without sacrificing performance. Non-crimp fabric thin C-Ply composites have the potential to suppress the micro cracks and delamination until the material's ultimate strength. But still, their usage and the possible advantages they can offer in sports applications like tennis racquets, badminton racquets or table tennis bats and so on are yet to be explored. This article aims at exploring the niche benefits offered by thin C-Ply carbon fibres in combination with thermoset and thermoplastic matrices in sports applications, especially racquets. The composites comprised multi-axial reinforcement fabricson-crimp fabrics infused with a room-temperature cure epoxy or a thermoplastic resin having low mix viscosity (200 cps) suitable for vacuum-assisted resin infusion. The mechanical properties of carbon fibre thin C-Ply/(thermoplastic or thermoset) composites pivotal in racquets, like tensile and flexural stiffness and modulus, have been determined experimentally. Double cantilever beam Mode I tests are also carried out to determine the bonding strength between the plies and the matrix interface as most of the failures in sports equipment are accompanied by either bond failures or imperfections within the structure. The findings of testing of various specimens are presented and discussed.
机译:在快速发展的技术世界中,随着碳纤维的出现,从传统的木制和金属运动球拍转变为下一代功能强大的球拍是不可避免的,碳纤维的优势在于强度,刚度,冲击力以及有效的振动和阻尼特性。然而,碳纤维的引入带来了选择正确的基质系统的挑战,这些系统结合起来可以在不牺牲性能的情况下提供最佳解决方案。非卷曲织物薄C-Ply复合材料具有抑制微裂纹和分层的潜力,直到材料达到极限强度为止。但是,它们的用途以及它们在体育应用中(例如网球拍,羽毛球拍或乒乓球拍等)可能提供的优势还有待探索。本文旨在探讨在体育应用(尤其是球拍)中,将C-Ply碳纤维薄碳纤维与热固性和热塑性基质相结合所带来的利基优势。所述复合物包括灌注有室温固化的环氧树脂或具有低混合粘度(200cps)的热塑性树脂的多轴增强织物/非卷曲织物,所述热塑性树脂适合于真空辅助的树脂灌注。已经通过实验确定了在球拍中枢转的碳纤维薄C-Ply /(热塑性或热固性)复合材料的机械性能,例如拉伸和弯曲刚度和模量。还进行了双悬臂梁I型测试,以确定板层与基体界面之间的粘结强度,因为运动器材中的大多数故障都伴随有粘结故障或结构内部的缺陷。介绍并讨论了各种样品的测试结果。

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