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Recent improvements and design formulae applied to front motorbike suspensions

机译:应用于摩托车前悬架的最新改进和设计公式

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The aim of this paper is to provide a methodology useful for the structural design and opti-mization of front motorbike suspensions. Two different types of shaft-hub couplings are used to assembly the whole suspension: interference fit couplings and bolted joints. Some mathematical models and engineering design formulae are proposed in order to calculate the tensile state and the fundamental design parameters of the main couplings, such as, for example, the fork-steering shaft and the leg-wheel pin couplings. Both experimental tests (based on the Design of Experiment approach) and numerical analyses (based on the Finite Elements Method) have been carried out to obtain the proposed results. All the research findings culminate in an innovative software (Front Suspension Design~C) which is useful to design and to verify the whole front motorbike suspension, by applying correct and effective results, obtained for different geometries and materials combinations.
机译:本文的目的是提供一种对前摩托车悬架的结构设计和优化有用的方法。两种不同类型的轴-轮毂联轴器用于组装整个悬架:过盈配合联轴器和螺栓连接。提出了一些数学模型和工程设计公式,以计算主要联轴器的拉伸状态和基本设计参数,例如,叉转向轴和腿轮销联轴器。实验测试(基于“实验设计”方法)和数值分析(基于“有限元法”)均已进行,以获取建议的结果。所有研究结果都以创新软件(Front Suspension Design〜C)达到高潮,该软件可通过应用正确和有效的结果(适用于不同的几何形状和材料组合)来设计和验证整个摩托车前悬架。

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