Articulated lever couplings are used as transfer units of rotations and torques in power trains.
Under the assumption of small deformations and ideal joints the transmission
characteristics can be examined by a rigid multi-body model. The considered rigid body
model of the joint lever coupling has the degree of freedom f = 2, whereby the
transmission from the driveside shaft to the driven-side shaft is influenced by dynamic
effects. At first these effects are considered analytically for a coaxial arrangement
of the drive-side shaft and the driven-side shaft and afterwards the influence of
misalignments between the shafts is studied in a numerical simulation.
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Articulated lever couplings are used as transfer units of rotations and torques in power trains.
Under the assumption of small deformations and ideal joints the transmission
characteristics can be examined by a rigid multi-body model. The considered rigid body
model of the joint lever coupling has the degree of freedom f = 2, whereby the
transmission from the driveside shaft to the driven-side shaft is influenced by dynamic
effects. At first these effects are considered analytically fo...
»