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Analysis on Synchronizer of Manual Transmission using Finite Element Analysis

机译:用有限元分析分析手动传输的同步器

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A simulation model of the single cone synchronizer is presented using the dynamic implicit algorithm with commercial Finite Element Analysis (FEA) software Abaqus. The meshing components include sleeve gear, blocking ring and clutch gear, which are all considered as deformation body. The processes mainly contain the contact between sleeve teeth and blocking teeth, meshing period and the impact of sleeve teeth and clutch gear teeth, and these nonlinear contact steps are realized with Abaqus. In addition, a shift force derives from experiment is applied to the sleeve ring, and a moment is added to the clutch gear to realize the relative rotational speed. Based on the FEA model, the effect of the varied frictional coefficients between the cone surfaces of blocking ring and clutch gear on the synchronizer time and contact stress is discussed. Variation of stresses and contact force with respect to time are evaluated from this analysis. The simulation results can help improving the shift quality and lifespan of the synchronizer.
机译:使用具有商业有限元分析(FEA)软件ABAQUS的动态隐式算法来提出单锥同步器的仿真模型。啮合部件包括套筒齿轮,阻挡环和离合器齿轮,其全部被认为是变形体。该方法主要包含套筒齿和阻挡齿之间的接触,啮合周期和套筒齿和离合器齿轮齿的冲击,并且这些非线性接触步骤与ABAQU实现。另外,将换档力从实验中衍生给套筒环,并且将片刻添加到离合器齿轮中以实现相对旋转速度。基于FEA模型,讨论了阻挡环和离合器齿轮在同步器时间和接触应力上的锥形表面之间的变化摩擦系数的影响。根据该分析评估应力和接触力相对于时间的变化。仿真结果可以帮助提高同步器的换档质量和寿命。

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