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COMPLIANT MECHANISM ROAD BICYCLE BRAKE: A RIGID-BODY REPLACEMENT CASE STUDY

机译:合规性公路自行车制动:刚体更换案例研究

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摘要

This paper demonstrates rigid-body replacement synthesis in the design a mechanism with known design objectives. The design of high-performance bicycle brakes is complicated by a variety of competing design objectives, including increased performance and low weight. But this challenge also provides a good case study to demonstrate the design of compliant mechanisms to replace traditional rigid-link mechanisms. This paper briefly reviews current road brake designs, demonstrates the use of rigid-body replacement synthesis to design a compliant mechanism, and illustrates the combination of compliant mechanism design tools. The resulting concept was generated from the modified dual-pivot brake design and is a partially compliant mechanism where one pin has the dual role of a joint and a mounting pin. The pseudo-rigid-body model, finite element analysis, and optimization algorithms are used to generate design dimensions, and designs are considered for both titanium and E-glass flexures. The resulting design has the potential of reducing the part count and overall weight while maintaining a performance similar to the benchmark.
机译:本文演示了在设计中采用已知设计目标的机制的刚体置换合成。高性能自行车制动器的设计因各种相互竞争的设计目标而变得复杂,包括提高性能和减轻重量。但是,这一挑战也提供了一个很好的案例研究,以展示可替代传统刚性连杆机构的柔顺机构的设计。本文简要回顾了当前的道路制动器设计,演示了使用刚体替代综合技术设计柔顺机构,并说明了柔顺机构设计工具的组合。由此产生的概念是由改进的双枢轴制动器设计产生的,并且是一种部分顺应性的机构,其中一个销钉具有接头和安装销钉的双重作用。伪刚体模型,有限元分析和优化算法用于生成设计尺寸,并考虑了钛和E玻璃弯曲的设计。最终的设计有可能减少零件数量和总重量,同时保持与基准测试相似的性能。

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