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In this paper, the coupled axial lateral torsional dynamics of a rotor bearing system geared by bevel gears is studied.
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In this paper, the effects of tooth crack on the vibration response of a one-stage gearbox with spur gears are studied.
The effect of major performance metrics of different helical gear tooth systems such as single, herringbone and crossed helical gear are studied through finite element approach (FEA) in ANSYS and compared with theoretical analysis of helical gear pair.
Then the periodic response of a non-unity gear pair system is studied in depth.
In this work the piezoelectric effect of one-dimensional ZnO gear-shaped microwires (GMWs) is studied by the finite element method.
Using the proposed procedure, a crossed beveloid gear pair with small shaft angle is studied.
As the shaft and bearing dynamics have also been considered in the model, the effect of lateral-torsional vibration coupling on the dynamics of gears can be studied.
The geometric characteristics of the tooth profiles of bevel gears can be studied by using the kinematics parametric polar angular (pressure angle) function, the meshing equation and the constraints of continuity conditions.
The electromechanical coupling due to the interactions between the motor and gear system are studied.
In this paper the problem of determining the temperature distribution and thermal residual stresses which are developed due to the non-uniform cooling of the molten plastic inside the mould cavity in the injection-moulded polystyrene gear has been studied.
The consequences of the direct physical disturbance of the seabed caused by towed bottom-fishing gear have been studied extensively with over 100 manipulations reported in the peer-reviewed literature.
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