Planetary gears are a crucial component in the drives of automation systems and robots. The vibrational behavior of these components can lead to detrimental structural-mechanical effects including fatigue, comfort and acoustics. As the system parameters can change during operation due to wear and damage, configuration changes need to be designed during the operation to avoid vibrational problems. Possible deviation of system parameters is especially true for the stiffness parameters of the gear mesh and bearings. Lumped-parameter models are efficient yet accurate and are used to ascertain eigenfrequencies as well as frequency responses of planetary gear sets. Using these models, the change in system parameters due to damage accumulation is ...
This paper presents a global optimization method able to find gear profile modifications that minimi...
Gear mesh flexibility is a varying and periodic quantity, which depends on several geometric, motion...
A nonlinear purely rotational dynamic model of a multistage closed-form planetary gear set formed by...
Planetary gears are a crucial component in the drives of automation systems and robots. The vibratio...
This study investigates the effect of tooth profile modification on the vibrations of a single stage...
Time-varying mesh stiffness in gears has been found to be the primary cause for vibration in gears. ...
This paper presents a global optimization method focused on planetary gear vibration reduction by me...
AbstractThis paper presents a global optimization method focused on planetary gear vibration reducti...
The Noise, Vibration and Harshness (NVH) of a vehicle is one of the decisive indices of vehicle perf...
Effect of tooth profile modifications on dynamic behaviour of the planetary gear systems is analysed...
Effect of tooth profile modifications on dynamic behaviour of the planetary gear systems is analysed...
This paper presents a global optimization method able to find gear profile modifications that minimi...
AbstractThis paper presents a global optimization method focused on planetary gear vibration reducti...
Gear mesh flexibility is a varying and periodic quantity, which depends on several geometric, motion...
Gear mesh flexibility is a varying and periodic quantity, which depends on several geometric, motion...
This paper presents a global optimization method able to find gear profile modifications that minimi...
Gear mesh flexibility is a varying and periodic quantity, which depends on several geometric, motion...
A nonlinear purely rotational dynamic model of a multistage closed-form planetary gear set formed by...
Planetary gears are a crucial component in the drives of automation systems and robots. The vibratio...
This study investigates the effect of tooth profile modification on the vibrations of a single stage...
Time-varying mesh stiffness in gears has been found to be the primary cause for vibration in gears. ...
This paper presents a global optimization method focused on planetary gear vibration reduction by me...
AbstractThis paper presents a global optimization method focused on planetary gear vibration reducti...
The Noise, Vibration and Harshness (NVH) of a vehicle is one of the decisive indices of vehicle perf...
Effect of tooth profile modifications on dynamic behaviour of the planetary gear systems is analysed...
Effect of tooth profile modifications on dynamic behaviour of the planetary gear systems is analysed...
This paper presents a global optimization method able to find gear profile modifications that minimi...
AbstractThis paper presents a global optimization method focused on planetary gear vibration reducti...
Gear mesh flexibility is a varying and periodic quantity, which depends on several geometric, motion...
Gear mesh flexibility is a varying and periodic quantity, which depends on several geometric, motion...
This paper presents a global optimization method able to find gear profile modifications that minimi...
Gear mesh flexibility is a varying and periodic quantity, which depends on several geometric, motion...
A nonlinear purely rotational dynamic model of a multistage closed-form planetary gear set formed by...