Introducing the mesh stiffness variation and higher harmoics of driving torque into the equation of motion of one pair of helical gear system, the effects of the mesh stiffness variation, the ratio of static torque to dynamic one and higher harmonics of driving torque on the rattle are studied by numerical analysis. As a result, the followings were made clear. (1) Because of interaction of dynamic torque and mesh stiffness variation, resonance occurs in low frequency region. (2) The ratio of static torque to dynamic one influences the occurrence of higher harmonic resonance. (3) When the dynamic torque is larger than the static one, vibration with larger amplitude than that of fundamental resonance occurs in extremely low frequency. (4) The...
Abstract: Manual transmission gear rattle is an NVH (noise, vibration, and harshness) concern in the...
International audienceWe consider the automotive gearbox rattle noise resulting from vibro-impacts t...
The torsional dynamic model of double-helical gear pair considering time-varying meshing stiffness, ...
Gear rattle of multi-step helical gear system is treated. Mesh stiffness variations and higher harmo...
Introducing the mesh stiffness variation and tooth profile error into the equation of motion of one ...
Gear rattle of multi-step helical gear system is treated. Mesh stiffness variations and tooth profil...
Gear trains are plagued by self-excited vibrations that are concentrated at the mesh frequency and i...
In light of ignoring the effect of backlash on mesh stiffness in existing gear dynamic theory, a pre...
The article presents an analysis of gear rattle induced by multi-harmonic excitation. The analysis i...
The article presents an analysis of gear rattle induced by multi-harmonic excitation. The analysis i...
The article presents an analysis of gear rattle induced by multi-harmonic excitation. The analysis i...
To reveal the nonlinear dynamic behavior of gear rattling vibration caused by gear backlash, a 2-DOF...
Time-varying mesh stiffness in gears has been found to be the primary cause for vibration in gears. ...
In my research, I have performed an extensive experimental investigation of harmonic-drive propert...
This study is to systematically analyze the influences of time-varying meshing stiffness (TVMS) and ...
Abstract: Manual transmission gear rattle is an NVH (noise, vibration, and harshness) concern in the...
International audienceWe consider the automotive gearbox rattle noise resulting from vibro-impacts t...
The torsional dynamic model of double-helical gear pair considering time-varying meshing stiffness, ...
Gear rattle of multi-step helical gear system is treated. Mesh stiffness variations and higher harmo...
Introducing the mesh stiffness variation and tooth profile error into the equation of motion of one ...
Gear rattle of multi-step helical gear system is treated. Mesh stiffness variations and tooth profil...
Gear trains are plagued by self-excited vibrations that are concentrated at the mesh frequency and i...
In light of ignoring the effect of backlash on mesh stiffness in existing gear dynamic theory, a pre...
The article presents an analysis of gear rattle induced by multi-harmonic excitation. The analysis i...
The article presents an analysis of gear rattle induced by multi-harmonic excitation. The analysis i...
The article presents an analysis of gear rattle induced by multi-harmonic excitation. The analysis i...
To reveal the nonlinear dynamic behavior of gear rattling vibration caused by gear backlash, a 2-DOF...
Time-varying mesh stiffness in gears has been found to be the primary cause for vibration in gears. ...
In my research, I have performed an extensive experimental investigation of harmonic-drive propert...
This study is to systematically analyze the influences of time-varying meshing stiffness (TVMS) and ...
Abstract: Manual transmission gear rattle is an NVH (noise, vibration, and harshness) concern in the...
International audienceWe consider the automotive gearbox rattle noise resulting from vibro-impacts t...
The torsional dynamic model of double-helical gear pair considering time-varying meshing stiffness, ...