Drive shaft assembly
View Patent ↗A drive shaft assembly ( 8 ) for automotive applications for transmitting a rotary drive. The drive shaft assembly ( 8 ) comprising a central flexible rotatable core shaft ( 14 ), an outer sleeve ( 12 ) surrounding the central flexible core shaft ( 14 ) and spaced from the core shaft ( 14 ), and at least one elastomeric damper ( 20 ) positioned at a location ( 42 ) along the length (l 1 ) of the drive shaft assembly ( 8 ). The damper ( 20 ) extending to and lightly abutting against an outer cylindrical surface of the core shaft ( 14 ).
1. A drive shaft assembly for automotive applications for transmitting a rotary drive, the drive shaft assembly comprising:
a central flexible rotatable core shaft having an outer cylindrical surface;
an outer sleeve surrounding the central flexible core shaft and spaced from the core shaft; and
at least one elastomeric damper located within the outer sleeve and positioned at a location along the length of the drive shaft assembly, the damper extending to and abutting against the outer cylindrical surface of the core shaft;
wherein the damper comprises an elastomeric washer with an inner bore defined in the center, the inner bore corresponding to the outer cylindrical surface of the core shaft; and
wherein the damper has a cross sectional profile which radially tapers to an apex at the defined inner bore of the washer thereby providing a knife edge support for the core shaft.
2. A drive shaft assembly as claimed in claim 1 in which the damper comprises a urethane damper.
3. A drive shaft assembly as claimed in claim 1 in which the damper comprises a rubber damper.
4. A drive shaft assembly as claimed in claim 1 comprising part of a vehicle seat adjustment assembly for transmitting rotary drive from a motor to the vehicle seat adjustment assembly.
5. A drive shaft assembly as claimed in claim 1 in which, in use, the core shaft rotates within an operating speed range with the core shaft, when rotating in isolation, having at least one of a calculated natural resonant frequency and resonant harmonic frequency within the operating range; the core shaft having at least one point along the length of the core shaft of maximum amplitude resonant displacement at said at least one of calculated natural resonant frequency and resonant harmonic frequency; the at least one damper is positioned at a location along the length of the core shaft generally corresponding to the at least one point of maximum amplitude resonant displacement of the core shaft.
6. A drive shaft assembly as claimed in claim 1 in which the damper is positioned halfway along the length of the core shaft.
7. A drive shaft assembly as claimed in claim 1 in which, in use, the core shaft rotates within an operating speed range with the core shaft, the at least one damper is positioned at a location along the length of the core shaft generally corresponding to at least one of a nodal stationary point of an altered natural resonant frequency and resonant harmonic frequency amplitude resonant displacement profile of the core shaft such that the thereby at least one of the altered natural resonant frequency and resonant harmonic frequency is substantially outside of the operating range.
8. A drive shaft assembly as claimed in claim 1 in which the at least one damper is positioned at a position one third of the length along the core shaft.
9. A drive shaft assembly as claimed in claim 8 which the at least one damper comprises a first and second damper, the first damper is positioned at a position one third of the length along the core shaft and the second damper is positioned at a position two thirds of the length along the core shaft.