Optimization Design and Structural Dynamic Analysis of Cycling

Zhuang Min
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Abstract

In this paper, the research object is cycling equipment which is common fitness equipment. The dynamic cha- racteristics of the cycling equipment were optimized in a virtual prototype, and analysis was carried out on its structural mechanical characteristics and dynamic performance, etc. The dynamic characteristics of this cycling equipment were ob- tained through modal, random response and harmonic response analyses, and the structural reasonability after optimiza- tion was verified. This can avoid unreasonable design of the cycling equipment, and an effective analysis and assessment method for cycling equipment design was proposed. With the improvement of people's livelihood, fitness industry enjoys rapid development, so stricter requirement is proposed for the innovation and R&D of fitness equipment. The researchers provide reasonable parameters according to ergonomics, and simulate it by means of the theories of kin- ematics of mechanism, thus optimizing the parameters of the cycling equipment, which can achieve the highest design efficiency. In this paper, simulation and optimization for the simplified mechanism of cycling equipment was realized by Adams software. After optimization, some of its mechanical characteristics were analyzed by building a finite element model of the cycling equipment. The finite element model was used for verifying that the cycling equipment of this dimension could meet the requirement of intensity in daily use. The results show that the speed stationarity of the opti- mized cycling equipment is improved within its operating stroke, which improves the comfort. The optimization of the mechanism design is realized by means of the optimization design of many-body dynamics software and finite element software, which provides a feasible design method for cy- cling equipment.
循环优化设计与结构动力学分析
本文的研究对象是自行车器材,这是一种常见的健身器材。在虚拟样机中对循环设备的动态特性进行了优化,并对其结构力学特性和动态性能等进行了分析。通过模态响应、随机响应和谐波响应分析,获得了该循环装置的动态特性,验证了优化后结构的合理性。从而避免了自行车装备设计的不合理,提出了一种有效的自行车装备设计分析与评估方法。随着人民生活水平的提高,健身产业得到快速发展,对健身器材的创新和研发提出了更严格的要求。研究人员根据工效学原理提供合理的参数,并利用机构运动学理论对其进行仿真,从而优化循环设备的参数,使其达到最高的设计效率。本文利用Adams软件对简化后的循环装置机构进行了仿真和优化。优化后,通过建立循环装置的有限元模型,分析了循环装置的部分力学特性。利用有限元模型验证了该尺寸的循环装置在日常使用中能够满足强度要求。结果表明,优化后的循环装置在运行行程内的速度平稳性得到改善,舒适性得到提高。通过多体动力学软件和有限元软件的优化设计,实现了机构设计的优化,为环抱设备提供了一种可行的设计方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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