为研究双质量飞轮(dual mass flywheel,DMF)对整车传动系扭振的影响,基于DMF理论搭建了仿真模型,并通过试验台架测试了DMF在不同振幅工况下的扭转刚度特性。通过不同工况下迟滞曲线仿真和试验对比,验证了DMF仿真模型的精度。基于准确的...为研究双质量飞轮(dual mass flywheel,DMF)对整车传动系扭振的影响,基于DMF理论搭建了仿真模型,并通过试验台架测试了DMF在不同振幅工况下的扭转刚度特性。通过不同工况下迟滞曲线仿真和试验对比,验证了DMF仿真模型的精度。基于准确的DMF模型,搭建了传动系扭振仿真模型,并通过整车状态怠速和3挡节气门全开工况的仿真和试验转速波动对标,验证了传动系扭振模型的精度。通过DMF设计参数的灵敏度分析,研究了传动系扭振开发和DMF设计的匹配。结果显示,DMF能衰减70%~90%的发动机燃烧主阶次转速波动幅值,极大降低扭振问题发生的风险。展开更多
The influence of the dynamic parameters of a dual mass flywheel(DMF)on its vibration reduction performance is analyzed,and several optimization algorithms are used to carry out multiobjective DMF optimization design.F...The influence of the dynamic parameters of a dual mass flywheel(DMF)on its vibration reduction performance is analyzed,and several optimization algorithms are used to carry out multiobjective DMF optimization design.First,the vehicle powertrain system is modeled according to the parameter configuration of the test vehicle.The accuracy of the model is verified by comparing the simulation data with the test results.Then,the model is used to analyze the influence of the moment of inertia ratio,torsional stiffness,and damping in reducing DMF vibration.The speed fluctuation amplitude at the transmission input shaft and the natural frequency of the vehicle are taken as the optimization objectives.The passive selection method,multiobjective particle swarm optimization,and the nondominated sorting genetic algorithm based on an elite strategy are used to carry out DMF multiobjective optimization design.The advantages and disadvantages of these algorithms are evaluated,and the best optimization algorithm is selected.展开更多
对某周向长弧形弹簧式双质量飞轮(circumferential arc spring dual mass flywheel,DMF-CS)的非线性扭转刚度及其扭振特性进行了研究。首先,对DMF-CS进行了扭转特性试验,结果表明:DMF-CS的扭转刚度与阻尼均具有转速相关性且随着转速的...对某周向长弧形弹簧式双质量飞轮(circumferential arc spring dual mass flywheel,DMF-CS)的非线性扭转刚度及其扭振特性进行了研究。首先,对DMF-CS进行了扭转特性试验,结果表明:DMF-CS的扭转刚度与阻尼均具有转速相关性且随着转速的升高而增加。其次,对产生非线性扭转刚度的原因进行了理论分析,考虑摩擦力的影响,对DMF-CS传递扭矩与扭转变形之间的关系进行了理论分析。再次,依据理论分析结果,建立了DMF-CS传递扭矩模型,并由试验数据对模型参数进行了识别,并由此获得了DMF-CS非线性扭转刚度的表达式。最后,对匹配有DMF-CS的VM发动机动力传动系统一档工况下的扭振特性进行分析,结果表明非线性扭转刚度对系统的固有扭振特性影响较小,但会削弱DMF-CS在高速区域时的减振性能。展开更多
文摘为研究双质量飞轮(dual mass flywheel,DMF)对整车传动系扭振的影响,基于DMF理论搭建了仿真模型,并通过试验台架测试了DMF在不同振幅工况下的扭转刚度特性。通过不同工况下迟滞曲线仿真和试验对比,验证了DMF仿真模型的精度。基于准确的DMF模型,搭建了传动系扭振仿真模型,并通过整车状态怠速和3挡节气门全开工况的仿真和试验转速波动对标,验证了传动系扭振模型的精度。通过DMF设计参数的灵敏度分析,研究了传动系扭振开发和DMF设计的匹配。结果显示,DMF能衰减70%~90%的发动机燃烧主阶次转速波动幅值,极大降低扭振问题发生的风险。
基金National Natural Science Foundation of China,Grant/Award Number:52075388。
文摘The influence of the dynamic parameters of a dual mass flywheel(DMF)on its vibration reduction performance is analyzed,and several optimization algorithms are used to carry out multiobjective DMF optimization design.First,the vehicle powertrain system is modeled according to the parameter configuration of the test vehicle.The accuracy of the model is verified by comparing the simulation data with the test results.Then,the model is used to analyze the influence of the moment of inertia ratio,torsional stiffness,and damping in reducing DMF vibration.The speed fluctuation amplitude at the transmission input shaft and the natural frequency of the vehicle are taken as the optimization objectives.The passive selection method,multiobjective particle swarm optimization,and the nondominated sorting genetic algorithm based on an elite strategy are used to carry out DMF multiobjective optimization design.The advantages and disadvantages of these algorithms are evaluated,and the best optimization algorithm is selected.
文摘对某周向长弧形弹簧式双质量飞轮(circumferential arc spring dual mass flywheel,DMF-CS)的非线性扭转刚度及其扭振特性进行了研究。首先,对DMF-CS进行了扭转特性试验,结果表明:DMF-CS的扭转刚度与阻尼均具有转速相关性且随着转速的升高而增加。其次,对产生非线性扭转刚度的原因进行了理论分析,考虑摩擦力的影响,对DMF-CS传递扭矩与扭转变形之间的关系进行了理论分析。再次,依据理论分析结果,建立了DMF-CS传递扭矩模型,并由试验数据对模型参数进行了识别,并由此获得了DMF-CS非线性扭转刚度的表达式。最后,对匹配有DMF-CS的VM发动机动力传动系统一档工况下的扭振特性进行分析,结果表明非线性扭转刚度对系统的固有扭振特性影响较小,但会削弱DMF-CS在高速区域时的减振性能。