This paper is aimed to investigate the influence of dual-mass flywheel (DMF) kinetic parameters on driveline torsional vibration in engine start-up process, which prescribes the design requirements under start-up condition for DMF matching. On the basis of driveline excitation analysis during engine start-up, the analytical model of DMF driveline torsional vibration system is built and simulated. The vehicle start-up test is conducted and compared with the simulation results. On account of the partial nonstationary characteristic of driveline during start-up, the start-up process is separated into 3 phases for discussing the influence of DMF rotary inertia ratio, hysteresis torque, and nonlinear torsional stiffness on attenuation effect. Th...
Abstract The influence of the dynamic parameters of a dual mass flywheel (DMF) on its vibration redu...
Automotive industry drives development towards down-sized and down-speeded engines and higher cylind...
The hysteresis, stick–slip, and rotational speed-dependent characteristics in a basic dual mass flyw...
This paper investigates the torsional dynamic behaviour of a Dual Mass Flywheel (DMF) both numerical...
The vehicle industry faces big challenges when it comes to reducing the emissions of heavy vehicles....
New powertrain design poses new challenges in terms of driveline vibration or ultimately in terms of...
Theoretical modeling and experimental research are carried out on the dynamic torsional characterist...
Internal combustion engines produce a fluctuating torque due to discrete combustion events, as well...
Internal combustion engines produce a fluctuating torque due to discrete pistons combustion, as well...
Dual Mass Flywheel (DMF) systems are today widely adopted in compression ignition automotive powertr...
In order to meet new requirements on exhaust emissions the trend is to downsize and reduce the speed...
As the heavy-duty combustion engine development goes towards lower rotational speeds and higher cyli...
In the development and application of highly dynamic mechanical systems, major problems can arise fr...
The heavy-duty vehicle manufacturers face large challenges when it comes to reducing CO2 emissions f...
In the development and application of highly dynamic mechanical systems, major problems can arise fr...
Abstract The influence of the dynamic parameters of a dual mass flywheel (DMF) on its vibration redu...
Automotive industry drives development towards down-sized and down-speeded engines and higher cylind...
The hysteresis, stick–slip, and rotational speed-dependent characteristics in a basic dual mass flyw...
This paper investigates the torsional dynamic behaviour of a Dual Mass Flywheel (DMF) both numerical...
The vehicle industry faces big challenges when it comes to reducing the emissions of heavy vehicles....
New powertrain design poses new challenges in terms of driveline vibration or ultimately in terms of...
Theoretical modeling and experimental research are carried out on the dynamic torsional characterist...
Internal combustion engines produce a fluctuating torque due to discrete combustion events, as well...
Internal combustion engines produce a fluctuating torque due to discrete pistons combustion, as well...
Dual Mass Flywheel (DMF) systems are today widely adopted in compression ignition automotive powertr...
In order to meet new requirements on exhaust emissions the trend is to downsize and reduce the speed...
As the heavy-duty combustion engine development goes towards lower rotational speeds and higher cyli...
In the development and application of highly dynamic mechanical systems, major problems can arise fr...
The heavy-duty vehicle manufacturers face large challenges when it comes to reducing CO2 emissions f...
In the development and application of highly dynamic mechanical systems, major problems can arise fr...
Abstract The influence of the dynamic parameters of a dual mass flywheel (DMF) on its vibration redu...
Automotive industry drives development towards down-sized and down-speeded engines and higher cylind...
The hysteresis, stick–slip, and rotational speed-dependent characteristics in a basic dual mass flyw...