首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Design and manufacturing of a hybrid flax/carbon fiber composite bicycle frame
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Design and manufacturing of a hybrid flax/carbon fiber composite bicycle frame

机译:混合亚麻/碳纤维复合自行车架的设计与制造

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摘要

Carbon fiber composite frames were first used in Tour de France in 1986. With recent growth in research and development of composite frames, carbon fiber composites have become more popular in bicycle industry where lightweight and high stiffness are of upmost importance. Unfortunately, carbon fiber is expensive and has low impact toughness. One method of overcoming this shortcoming is to hybridize carbon fiber with natural fibers such as flax. The benefit of using hybrid composites is that the advantages of one type of fiber can overcome the disadvantages of the other type of fiber. As a result, a balance in cost, performance, and sustainability could be achieved through proper composite material design. In this study, carbon fiber was hybridized with flax fiber in an effort to manufacture a bicycle frame with the high-performance characteristics of carbon fiber and low cost and renewability of flax fiber. In addition, vibration damping properties of flax fiber will result in a more comfortable ride. The results of mechanical tests of the frame material revealed that the manufactured frame possess similar or higher stiffness and strength as commercially available carbon, titanium, and aluminum frames while exhibiting superior vibration damping properties. All these were achieved with a lower cost compared to carbon composite frames while maintaining 40% biocontent.
机译:1986年,碳纤维复合框架首先用于巡回赛法法国。随着最近复合框架的研发,碳纤维复合材料在自行车行业中变得更加流行,在那里重量轻,高刚度最重要的是。不幸的是,碳纤维昂贵并且具有低冲击韧性。一种克服这种缺点的方法是将碳纤维与天然纤维(如亚麻)杂交。使用混合复合材料的益处是一种纤维的优点可以克服其他类型的纤维的缺点。因此,通过适当的复合材料设计,可以实现成本,性能和可持续性的平衡。在该研究中,碳纤维与亚麻纤维杂交,以制造具有碳纤维的高性能特征的自行车框架和亚麻纤维的低成本和可再生性。此外,亚麻纤维的振动阻尼性能将导致乘坐更舒适的速度。框架材料的机械测试结果显示制造的框架具有与商业上可获得的碳,钛和铝框相似或更高的刚度和强度,同时表现出优异的振动阻尼性能。与碳复合框架相比,所有这些都以较低的成本实现,同时保持40%的生物不可分割。

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