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首页> 外文期刊>Advances in Mechanical Engineering >Modelling and simulation of synchronization and engagement for self-energizing synchronizer with multibody dynamics:
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Modelling and simulation of synchronization and engagement for self-energizing synchronizer with multibody dynamics:

机译:具有多体动力学的自激式同步器的同步和啮合建模和仿真:

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摘要

A multibody dynamic model of the self-energizing synchronizer in a 14-speed manual transmission gearbox is presented. While the contact forces between the engaged splines/teeth and friction torques between the synchro rings are hardly observed by conventional experiments, detailed contact and friction models in consideration of lubrication are established to simulate these contact/friction forces during shifting. The space motion of the sleeve is considered; thus, the differences in the contact forces between the engaged teeth can be simulated and observed. A pneumatic model is established to model the varying shift force acting on the synchronizer. An experiment is conducted for the self-energizing synchronizer to validate the presented synchronizer model. Moreover, to demonstrate the self-energizing function of the synchronizer, a synchronizer without self-energizing mechanism is modelled and compared with the original one.
机译:提出了一种14速手动变速箱自增力同步器的多体动力学模型。虽然通过常规实验很难观察到啮合的花键/齿之间的接触力和同步环之间的摩擦扭矩,但建立了考虑润滑的详细接触和摩擦模型,以模拟换挡过程中的这些接触/摩擦力。考虑套筒的空间运动;因此,可以模拟并观察啮合齿之间的接触力差异。建立了一个气动模型来模拟作用在同步器上的变速力。对自激式同步器进行了实验,以验证所提出的同步器模型。此外,为了演示同步器的自激励功能,对没有自激励机制的同步器进行了建模,并将其与原始同步器进行了比较。

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