Patent classifications
F16D13/58
FRICTION PLATE
Problem—To provide a friction plate with reduced drag torque.
Solution—The friction plate is formed with oil grooves having the sectorial shapes spreading toward the inner circumference and the perimeter. The adjacent edges of the friction material segments are provided with the perimeter side vertex and the inner circumference side vertex respectively. The sectorial oil groove opening toward the perimeter side from the inner circumferential side vertexes can discharge a lube oil to the perimeter side efficiently by a centrifugal force. Also, owing to the sectorial oil groove opening toward the inner circumference side from the perimeter side vertexes, a lube oil can be made to run aground onto the friction material segments due to a centrifugal force, thus, reducing the drag torque markedly compared with the conventional plates.
COVER ASSEMBLY FOR A MOTOR VEHICLE CLUTCH INCLUDING PRESSURE PLATE
A cover assembly for a motor vehicle clutch is provided. The cover assembly includes a cover, a pressure plate, a leaf spring connecting the pressure plate to the cover such that the pressure plate is axially movable with respect to the cover, an actuator plate configured for axially moving the pressure plate away from the cover and a retainer fixed to the pressure plate. The retainer is arranged for limiting liftoff of the actuator plate from the pressure plate. The cover assembly also includes a washer sandwiched axially between the retainer and the leaf spring. A method of constructing a cover assembly for a motor vehicle clutch is also provided.
HYDROKINETIC TORQUE COUPLING DEVICE HAVING AXIALLY MOVABLE TURBINE-PISTON AND LOCKUP CLUTCH, AND RELATED METHODS
A hydrokinetic torque coupling device comprises a casing, a torque converter, a torsional vibration damper and a lockup clutch disposed within the casing. The torque converter comprises an impeller and a turbine-piston coaxially aligned with the impeller and axially movable toward and away from the casing to position the hydrokinetic torque coupling device into and out of a lockup mode in which the turbine-piston is non-rotatably frictionally coupled to the casing. The torsional vibration damper comprises an input member non-moveably secured to the turbine-piston, a first retainer plate and the elastic members elastically coupling the input member to the first retainer plate. The input member includes an actuating portion configured to actuate the lockup clutch. The lockup clutch is disposed within the casing between the actuating portion of the input member and a cover shell of the casing for frictionally coupling the casing and the turbine-piston.
Torque converters and methods and devices for rebuilding torque converters
Methods of repairing a torque converter that enable the continued use of a torque converter and result in a repaired torque converter with a higher-strength and more durable construction. In some examples, a backing ring can be replaced with a replacement backing ring that includes a spline ring for replacing the function of a cover spline ring. In some examples, a method of repairing a torque converter can be improved by providing a replacement backing ring with a radial protrusion for locating the backing ring on the cover, and a method of determining an axial location of the radial protrusion.
COMPACT, HIGH-CAPACITY, LONG-LIFE CLUTCHES
A compact, long-life clutch assembly employs a bearing and shaft system having a preloaded tapered roller bearing accommodating both high radial loads and axial loads while accommodating system misalignment resulting from such loads, deflections, and structural characteristics of input/output devices. A bell housing and end cover integrated into a single casting reduces costs, while the utilization of wave springs accommodate reduction in size and expense in manufacture and servicing.
COMPACT, HIGH-CAPACITY, LONG-LIFE CLUTCHES
A compact, long-life clutch assembly employs a bearing and shaft system having a preloaded tapered roller bearing accommodating both high radial loads and axial loads while accommodating system misalignment resulting from such loads, deflections, and structural characteristics of input/output devices. A bell housing and end cover integrated into a single casting reduces costs, while the utilization of wave springs accommodate reduction in size and expense in manufacture and servicing.
SELF-ADJUSTING CLUTCH
A self-adjusting clutch mechanism has a pressure plate, a wear compensation plate, a wear sensor adjusting plate, a wear sensor, a clutch cover, a first screw thread, and a second screw thread. The mechanism on the clutch pressure plate can keep clutch pedal load and clutch clamp load constant.
CONNECTING CLUTCH FOR A HYBRID DRIVE TRAIN HAVING A TORQUE SENSOR
The invention relates to a clutch for a hybrid drive train of a motor vehicle, including a first connecting component, which can be connected to an output shaft of an internal combustion engine in a rotationally fixed manner, and comprising a second connecting component, which can be connected to a shaft of a transmission and/or a rotor of an electric drive machine in a rotationally fixed manner, which connecting components are connected to each other in a torque-transmitting manner in a closed position of the clutch, whereas, in an open position of the clutch, the connecting components are arranged in such a way that the torque flow is interrupted, and having a clutch actuation system, which has a ramp mechanism and which switches the clutch between the open position and the closed position, wherein the ramp mechanism is operatively connected to the connecting components by a planetary gearing, wherein the first connecting component has two conducting segments connected in a rotationally fixed manner by a torque storage device, wherein the torque storage device is designed in such a way that the conducting segments are elastically preloaded in a direction of rotation in relation to each other at least in the closed position.
CONNECTING CLUTCH FOR A HYBRID DRIVE TRAIN HAVING A TORQUE SENSOR
The invention relates to a clutch for a hybrid drive train of a motor vehicle, including a first connecting component, which can be connected to an output shaft of an internal combustion engine in a rotationally fixed manner, and comprising a second connecting component, which can be connected to a shaft of a transmission and/or a rotor of an electric drive machine in a rotationally fixed manner, which connecting components are connected to each other in a torque-transmitting manner in a closed position of the clutch, whereas, in an open position of the clutch, the connecting components are arranged in such a way that the torque flow is interrupted, and having a clutch actuation system, which has a ramp mechanism and which switches the clutch between the open position and the closed position, wherein the ramp mechanism is operatively connected to the connecting components by a planetary gearing, wherein the first connecting component has two conducting segments connected in a rotationally fixed manner by a torque storage device, wherein the torque storage device is designed in such a way that the conducting segments are elastically preloaded in a direction of rotation in relation to each other at least in the closed position.
Cable Wrap Clutch With Torque Limiter Shutoff and Operator Controlled Re-Engagement
A rotational coupling includes input and output hubs disposed about a rotational axis and an attachment ring disposed about the axis on one side of the input hub opposite the output hub. A flexible, multi-coil body such as a cable is disposed radially outwardly of the input and output hubs and couples the hubs together for rotation upon rotation of the input hub in one rotational direction. The body has ends coupled to the output hub and attachment ring. A torque limiter includes a torque transmission plate configured to rotate with the input hub and an armature plate fixed against rotation. The torque transmission plate and armature plate are configured to move axially together along the axis of rotation. An electromagnet disposed on one side of the torque limiter opposite the input hub attracts the plates in a second axial direction away from the attachment ring when energized.