Patent classifications
F16D13/69
Anti-flutter clutch assembly and related methods
A plurality of elastic elements are mounted to at least one of a plurality of interleaved input and output plates of a clutch stack such that, when the clutch stack is moved to a disengaged position, the plurality of elastic elements maintain separation in an axial direction between the plurality of interleaved input and output plates. Clutch flutter is avoided, reducing the drag between clutch plates.
Methods and apparatus for clutch and brake drag reduction using springs
Described herein are various embodiments of a clutch assembly and separator plates for a clutch assembly. The clutch assembly may comprise a first separator plate; a second separator plate; and a spring coupled to the first separator plate and contacting the second separator plate, such that when compressed the spring applies a repulsive force separating the first separator plate and the second separator plate.
Friction element for a frictional shifting element for a vehicle transmission
A friction element (1, 3) for a frictional shift element for a transmission of a vehicle, the friction element having an annular base body with a plurality of friction surface elements (5), the plurality of friction surface elements (5) protruding radially inwardly or radially outwardly and are distributed over a periphery of the annular base body. The friction element (1, 3) and the plurality of friction surface elements (5) are each formed as one piece.
Friction element for a frictional shifting element for a vehicle transmission
A friction element (1, 3) for a frictional shift element for a transmission of a vehicle, the friction element having an annular base body with a plurality of friction surface elements (5), the plurality of friction surface elements (5) protruding radially inwardly or radially outwardly and are distributed over a periphery of the annular base body. The friction element (1, 3) and the plurality of friction surface elements (5) are each formed as one piece.
Frictional shifting element for a vehicle transmission
A frictional shift element for a transmission of a vehicle, including a first friction element and a second friction element, wherein one friction element of the first and second friction elements has an approximately annular friction surface, and the other friction element of the first and second friction elements has an approximately annular base body and a plurality of friction surface elements distributed over a periphery of the approximately annular base body. The friction surface and the plurality of friction surface elements are brought into contact with each other in an overlap area for transmitting torque, wherein the friction surface elements protrude radially into the overlap area. The one friction element with the friction surface, the other friction element, and the friction surface elements are each formed as one piece. The one friction element and the approximately annular base body of the other friction element are spaced radially apart.
Frictional shifting element for a vehicle transmission
A frictional shift element for a transmission of a vehicle, including a first friction element and a second friction element, wherein one friction element of the first and second friction elements has an approximately annular friction surface, and the other friction element of the first and second friction elements has an approximately annular base body and a plurality of friction surface elements distributed over a periphery of the approximately annular base body. The friction surface and the plurality of friction surface elements are brought into contact with each other in an overlap area for transmitting torque, wherein the friction surface elements protrude radially into the overlap area. The one friction element with the friction surface, the other friction element, and the friction surface elements are each formed as one piece. The one friction element and the approximately annular base body of the other friction element are spaced radially apart.
Lift fan clutch plate for preventing blade tilt
A clutch for a lift fan is configured such that in an engaged position, two output clutch plates are in frictional communication with input clutch plates and a load is transferred from an input shaft to an output shaft via the two output clutch plates, the input clutch plates and an output shaft lug key, and in a disengaged position each of the two output clutch plates are axially displaced from input clutch plate. A metallic clip is coupled to the outer periphery of the output clutch plate. The metallic clip defines a key way in the output clutch plate.
Lift fan clutch plate for preventing blade tilt
A clutch for a lift fan is configured such that in an engaged position, two output clutch plates are in frictional communication with input clutch plates and a load is transferred from an input shaft to an output shaft via the two output clutch plates, the input clutch plates and an output shaft lug key, and in a disengaged position each of the two output clutch plates are axially displaced from input clutch plate. A metallic clip is coupled to the outer periphery of the output clutch plate. The metallic clip defines a key way in the output clutch plate.
Reduced drag clutch plate
A clutch plate includes an annular body having inner and outer diameters and first and second parallel surfaces extending therebetween; and an integral resilient portion connected to the annular body by a first circumferentially extending tab and including third and fourth parallel surfaces extending at respective acute angles to the first and second parallel surfaces; and, wherein the resilient portion fourth surface includes an edge including the outer diameter; and an axial distance of the edge is greater than a thickness of the annular body when measured from the first surface.
Reduced drag clutch plate
A clutch plate includes an annular body having inner and outer diameters and first and second parallel surfaces extending therebetween; and an integral resilient portion connected to the annular body by a first circumferentially extending tab and including third and fourth parallel surfaces extending at respective acute angles to the first and second parallel surfaces; and, wherein the resilient portion fourth surface includes an edge including the outer diameter; and an axial distance of the edge is greater than a thickness of the annular body when measured from the first surface.