针对某前置后驱型微型车传动系扭振引致的车内低频轰鸣声问题,建立扭振当量计算模型,对传动系的扭振特性进行分析。基于该模型研究微型车传动系抗扭振设计中,传统扭振减振器(TVD)转动惯量与扭转刚度对传动系扭振响应的影响规律。并基于...针对某前置后驱型微型车传动系扭振引致的车内低频轰鸣声问题,建立扭振当量计算模型,对传动系的扭振特性进行分析。基于该模型研究微型车传动系抗扭振设计中,传统扭振减振器(TVD)转动惯量与扭转刚度对传动系扭振响应的影响规律。并基于对传统TVD的功能、结构分析,找到使用金属惯量盘替代TVD的可行性依据,并实施惯量盘设计、试制,开展针对性的整车试验。试验结果表明,安装适当的金属惯量盘可以有效减小微型车传动系扭振响应,在重点关注的1 500 r/min附近降低车内噪声约9 d B(A),有效提升整车NVH性能。展开更多
Researchers face di culties in studying the e ects of driveline e ciency on car fuel economy via bench and road tests because of long working periods, high costs, and heavy workloads. To simplify the study process and...Researchers face di culties in studying the e ects of driveline e ciency on car fuel economy via bench and road tests because of long working periods, high costs, and heavy workloads. To simplify the study process and shorten test cycles, a car fuel economy simulation forecast method for combining computer simulation forecasting with bench tests is proposed. Taking a continuously variable transmission(CVT) as the research object, a transmission e ?ciency model based on a bench test is constructed. An optimal economic variogram based on the original CVT vari?ogram, the boundary conditions of vehicle performance, the road conditions and the driving behavior of the driver is generated in the Gear Shift Program(GSP)?Generation module in AVL Cruise. And on this basis a driveline simulation model that can calculate the fuel consumption based on the driveline data of a test car is built. The model is used to forecast fuel consumption and calculate real?time CVT e ciency under di erent conditions. Contrastive analyses on simulation results and real car drum test results are made. The largest error between simulation results and drum test results in driving cycles is 4.099%, which is 5.449% under constant velocity condition in driver control mode and 4.2% under constant velocity condition in automatic cruise mode. The results confirm the feasibility of the method and the good performance of the driveline simulation model in accurately forecasting fuel consumption. The method can e ciently investigate the e ects of driveline e ciency on car fuel economy. Moreover, this research provides instruc?tion for accurately forecasting fuel economy as well as references for studies on the e ects of drivelines on car fuel economy.展开更多
文摘针对某前置后驱型微型车传动系扭振引致的车内低频轰鸣声问题,建立扭振当量计算模型,对传动系的扭振特性进行分析。基于该模型研究微型车传动系抗扭振设计中,传统扭振减振器(TVD)转动惯量与扭转刚度对传动系扭振响应的影响规律。并基于对传统TVD的功能、结构分析,找到使用金属惯量盘替代TVD的可行性依据,并实施惯量盘设计、试制,开展针对性的整车试验。试验结果表明,安装适当的金属惯量盘可以有效减小微型车传动系扭振响应,在重点关注的1 500 r/min附近降低车内噪声约9 d B(A),有效提升整车NVH性能。
基金Supported by National Natural Science Foundation of China(Grant No.51575220)International S&T Cooperation Program of China(Grant No.2014DFA71790)
文摘Researchers face di culties in studying the e ects of driveline e ciency on car fuel economy via bench and road tests because of long working periods, high costs, and heavy workloads. To simplify the study process and shorten test cycles, a car fuel economy simulation forecast method for combining computer simulation forecasting with bench tests is proposed. Taking a continuously variable transmission(CVT) as the research object, a transmission e ?ciency model based on a bench test is constructed. An optimal economic variogram based on the original CVT vari?ogram, the boundary conditions of vehicle performance, the road conditions and the driving behavior of the driver is generated in the Gear Shift Program(GSP)?Generation module in AVL Cruise. And on this basis a driveline simulation model that can calculate the fuel consumption based on the driveline data of a test car is built. The model is used to forecast fuel consumption and calculate real?time CVT e ciency under di erent conditions. Contrastive analyses on simulation results and real car drum test results are made. The largest error between simulation results and drum test results in driving cycles is 4.099%, which is 5.449% under constant velocity condition in driver control mode and 4.2% under constant velocity condition in automatic cruise mode. The results confirm the feasibility of the method and the good performance of the driveline simulation model in accurately forecasting fuel consumption. The method can e ciently investigate the e ects of driveline e ciency on car fuel economy. Moreover, this research provides instruc?tion for accurately forecasting fuel economy as well as references for studies on the e ects of drivelines on car fuel economy.