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Development of a dynamic snowmobile model for ride dynamic analysis.

机译:开发用于乘车动力学分析的动态雪地车模型。

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摘要

Owing to the high magnitudes of vibration transmitted to the snowmobile driver, ride comfort forms a major design requirement. Current development processes are based upon prototyping and sequential field-testing. An analytical model for investigating the dynamic snowmobile behaviour would enhance the designers' efficiency at achieving the desired ride performance. In this respect, only limited efforts have been made thus far. This dissertation research aims at developing a comprehensive, industry-viable ride dynamic model of the snowmobile to help in vehicle development.; A nine degrees-of-freedom model was implemented in the ADAMS software through the integration of nonlinear subsystem models, namely, a lumped frame model, detailed suspension representations, a track model, deformable ground model, trail surface representations, a quasi-steady traction model, and a simplified rider and seat model. Four different trails were measured and analyzed, characterizing their roughness in terms of spatial power spectral density. A field test program, undertaken with Bombardier Recreational Products Inc., provided the vehicle response data. Laboratory measurements were performed to obtain static and dynamic properties of the vehicle and its components. The measurements were compared to the model outputs to evaluate its validity, revealing reasonably good agreements for some of the trails, while considerable differences were observed for others.; The model was then used to perform a parametric analysis on nine ride-related factors. Following the response surface methodology, with seat surface vertical rms acceleration as response variable, lead to the identification of a range of parameter values reducing acceleration by 58%. The process revealed, among else, the model's high sensitivity.
机译:由于传递到雪地摩托驾驶员的高强度振动,乘坐舒适性成为主要的设计要求。当前的开发过程基于原型设计和顺序现场测试。用于研究动态雪地摩托行为的分析模型将提高设计人员获得所需乘车性能的效率。在这方面,迄今为止仅作出了有限的努力。本文的研究旨在开发一种全面的,行业可行的雪地摩托动力模型,以帮助车辆开发。通过集成非线性子系统模型,在ADAMS软件中实现了九自由度模型,即集总框架模型,详细的悬架表示,轨道模型,可变形的地面模型,后表面表示,准稳态牵引力模型,以及简化的骑手和座椅模型。测量并分析了四个不同的路径,根据空间功率谱密度表征了它们的粗糙度。由庞巴迪娱乐产品公司进行的现场测试程序提供了车辆响应数据。进行实验室测量以获得车辆及其部件的静态和动态特性。将该测量结果与模型输出进行比较以评估其有效性,从而揭示了某些路径的合理良好一致性,而其他路径则存在相当大的差异。然后,该模型用于对9个与乘车相关的因素进行参数分析。按照响应表面方法,将座椅表面垂直均方根加速度作为响应变量,可以确定一系列参数值,从而将加速度降低58%。该过程显示了该模型的高灵敏度。

著录项

  • 作者

    Hebert, Paul-Andre.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 M.A.Sc.
  • 年度 2006
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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