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STIFFNESS DESIGN, ANALYSIS AND VALIDATION OF A PARALLEL-MECHANISM EQUIVALENT SUSPENSION SYSTEM

机译:平行机构等效悬架系统的刚度设计,分析和验证

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This paper provides a systematic approach to design a vehicle's independent suspension system. In this approach, multi-link type suspension is selected. By treating it as a parallel mechanism, both the kinematic design and force analysis are conducted in the same framework of screw theory. Regarding the kinematic design, constraint-based approach is used to find suitable layouts of constraint limbs in accordance with desired degree of freedom. In the force analysis, stiffness matrix of the suspension mechanism is developed, leading to the deformation and stress analysis under various critical loads. The developed formulae are further utilized to design suitable suspension mechanism, followed by finite-element-simulation validation as well as optimization design to reduce the resulted maximum stresses.
机译:本文提供了一种设计车辆独立悬架系统的系统方法。在这种方法中,选择多链路类型悬架。通过将其作为并联机构将其处理,运动设计和力分析都在相同的螺杆理论框架中进行。关于运动学设计,基于约束的方法用于根据所需的自由度来找到约束肢的合适布局。在力分析中,开发了悬架机构的刚度基质,导致各种临界负载下的变形和应力分析。开发的公式进一步用于设计合适的悬架机构,然后是有限元模拟验证以及优化设计,以减少导致的最大应力。

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