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Development of Carbon Composite Bike Fork Using Finite Element Analysis and a New Pressure Molding Process

机译:碳纤维自行车前叉的有限元分析和新的压力成型工艺

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摘要

The aim of this study was to develop a new carbon composite part for a road bike. Through finite element analysis, an optimum structure of the bike fork including a lay-up sequence of each ply was obtained. The designed part was manufactured using a new press molding process called a "double blowing process", which uses dual air bladders to remove voids inside the resin. The mechanical properties of the composite fork were characterized and compared with the analysis results, showing a reasonable agreement between them. The failure analysis was carried out using the Tsai-Wu criterion, demonstrating that the composite bike fork was well designed using the current methodology involving prototype design based on expert knowledge, refined design using finite element method, manufacture of the design part, and comparison between the experiment and simulation.
机译:这项研究的目的是为公路自行车开发一种新的碳复合材料零件。通过有限元分析,获得了自行车前叉的最佳结构,其中包括每个帘布层的铺设顺序。设计的零件是使用称为“双吹制法”的新型压制成型法制造的,该工艺使用双气囊消除树脂内部的空隙。对该复合叉的力学性能进行了表征,并与分析结果进行了比较,表明它们之间具有合理的一致性。使用Tsai-Wu准则进行了失效分析,表明复合自行车前叉使用当前的方法进行了精心设计,包括基于专家知识的原型设计,使用有限元方法的精巧设计,设计零件的制造以及两者之间的比较。实验和模拟。

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