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Optimization of Lightened Fiber-Reinforced Composite City & Trekking Bicycle Frame
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 Title & Authors
Optimization of Lightened Fiber-Reinforced Composite City & Trekking Bicycle Frame
Yoon, Won Sok; Kim, Do Hyung; Kim, Hak Sung;
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In this paper, optimal designs of bicycle frame were studied for weight reduction of bicycle using carbon-fiber-reinforced plastic (CFRP), glass-fiber-reinforced plastic (GFRP) and Kevlar-fiber-reinforced plastic (KFRP), respectively. Based on the anisotropic properties of FRP material, stacking angle and thickness optimization were performed under the safety reference of European committee for standardization (CEN) to ensure the stability of bicycle frame. Finally, performances of FRP bicycle frame was evaluated by digital logic method based on the optimized results of weight, strength properties and cost. Then, the optimized bicycle frame composed of each FRPs were evaluated and ranked by total performance values.
Finite Element Analysis;Optimization;Tsai-Wu Failure Criterion;Bicycle Frame;Composite;Digital Logic Method;
 Cited by
Kwon, K. B. and Kim, H. K., 2008, Research of Structure Optimization of Bicycle Frame, Korea Institute of Sport Science.

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