首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Design improvement and fatigue analysis for a bicycle handlebar stem system using uniform design method and genetic algorithm
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Design improvement and fatigue analysis for a bicycle handlebar stem system using uniform design method and genetic algorithm

机译:使用均匀设计方法和遗传算法设计改进和疲劳分析

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摘要

An integrating optimization procedure is presented to improve the von Mises stress and fatigue safety factor for a handlebar stem system in a bicycle system. The optimization procedure involves uniform design of experiment, Kriging interpolation, genetic algorithm, and nonlinear programming method. Using ANSYS/Workbench software and the ISO 4210 bicycle handlebar stem testing standard, the von Mises stress for the lateral bending test simulation and the fatigue safety factor for the fatigue test simulation is calculated. The von Mises stress and fatigue safety factor are combined into a single and integrated objective function, and Kriging interpolation is then used to create the surrogate model of the integrated objective function. When the integrating optimization procedure is used, the integrated objective function demonstrates that the von Mises stress for the optimized handlebar stem is reduced to 225 MPa and the fatigue safety factor increases to 1.796. This shows that the optimized design increases the strength of the handlebar stem. The proposed technique yields a handlebar stem with an optimized shape.
机译:提出了整合优化程序,以改善自行车系统中车把杆系统的von误判和疲劳安全系数。优化程序涉及统一设计实验,Kriging插值,遗传算法和非线性编程方法。使用ANSYS / WORKBENCH软件和ISO 4210自行车车把阀杆检测标准,计算横向弯曲试验模拟的VOM MIS,以及疲劳试验模拟的疲劳安全系数。将Von Mises应力和疲劳安全因子组合成单一和集成的目标函数,然后使用Kriging插值来创建综合目标函数的代理模型。当使用积分优化过程时,集成的目标函数表明,优化车把阀杆的von误声应力降低到225MPa,并且疲劳安全系数增加到1.796。这表明优化的设计增加了把手杆的强度。所提出的技术产生具有优化形状的车把杆。

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