Optimization Design and Analysis for Pre-Shift Control Parameters of Wet Dual Clutch Transmissions Based on Dynamic Modeling of Synchronizer

Ke-li Zheng, Jianjun Hu, Bangzhi Wu, Yin Wang
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Abstract

The DCTs have increased in prevalence for achieving power uninterrupted shifting and pre-shift process significantly influences the DCTs shift quality. Research on the multistage and nonlinear characteristics of the gear preselect process is not comprehensive so that there are shortcomings such as high impact, long synchronization time and poor economy. In view of above detrimental phenomenon, control parameters optimization is conducted in order to realize fast, smooth and economic pre-shifting on the basis of analyzing the sensitivity of the factors affecting pre-shift process. Considering the engagement of sleeve, synchro ring and dog gear, the multi-body dynamics theory is applied to establish an accurate synchronizer dynamics model. Based on the model, simulations are conducted to confirm factors like sleeve mass, cone angle fluctuating the pre-shift quickness and smoothness, sorting structure parameters according to factors sensitivity. Furthermore, the formula of energy loss characteristics relating to two control parameters which are pre-shift force and pre-shift trigger time is obtained, deriving from exploring the hydraulic loss caused by pre-shift force and the drag torque energy loss created by pre-shift trigger time. The optimal synchronizer structure parameters are obtained by adopting multi-objective optimization method. Simulation results indicate the optimal control parameters improve pre-shift comprehensive performance including quickness, smoothness and economy compared with conventional scheme.
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基于同步器动态建模的湿式双离合器变速器换挡前控制参数优化设计与分析
实现功率不间断换挡的dct越来越普遍,而换挡前处理对dct换挡质量有显著影响。对齿轮预选过程的多阶段非线性特性研究不全面,存在冲击大、同步时间长、经济性差等缺点。针对上述不利现象,在分析预换档过程影响因素敏感性的基础上,对控制参数进行优化,以实现快速、平稳、经济的预换档。考虑套筒、同步环和狗齿的啮合,应用多体动力学理论建立了精确的同步器动力学模型。在此基础上,通过仿真验证了套筒质量、锥角波动等因素对换档前快速性和平整性的影响,并根据影响因素的灵敏度对结构参数进行了排序。在此基础上,通过对预换档力造成的液压损失和预换档触发时间造成的阻力转矩能量损失的研究,得到了预换档力和预换档触发时间两个控制参数的能量损失特性公式。采用多目标优化方法,得到了同步器的最优结构参数。仿真结果表明,与常规方案相比,最优控制参数提高了换挡前综合性能,包括快速性、平稳性和经济性。
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