Claims
- 1. An all wheel drive system for a motor vehicle comprising:a front differential; a pair of front halfshaft assemblies operatively connected to said front differential whereby said front differential supplies torque to said pair of front half shaft assemblies, each of said pair of front half shaft assemblies connected to a respective front wheel; a power takeoff unit operatively connected to said front differential; a constant velocity joint connected to said power takeoff unit whereby said front differential supplies torque to said constant velocity joint through said power takeoff unit; a first propshaft having a first end and a second end, said first end connected to said constant velocity joint; a plunging constant velocity joint connected to said second end of said first propshaft; a second propshaft having a first end and a second end, said first end connected to said plunging constant velocity joint; a universal joint having a first end and a second end, said first end of said universal joint connected to said second end of said second propshaft; a self contained speed sensing torque transfer device connected to said second end of said universal joint such that torque is selectively transferable when said self contained speed sensing torque transfer device is engaged, said self contained speed sensing torque transfer device including; a hub connected to a first set of friction plates, said hub also connected to said second end of said universal joint, a housing connected to a second set of friction plates whereby the first and second set of friction plates are disposed in a selectively interconnecting relationship; a piston located adjacent said first and second set of friction plates; a self contained shear pump for generating a pressure proportional to the speed difference between the hub and the housing, said pump comprising, a feed disc affixed to said hub, a fluid reservoir, a pump disc affixed to said housing and in fluid communication with said fluid reservoir, said pump disc having a circumferential pumping groove and at least one connecting hole forming a shear channel with said feed disc, said pump generating pressure on said piston at a set speed difference such that said piston transmits pressure to said first and second set of friction plates and torque is thereby transferable from said first set of friction plates to said second set of friction plate thereby transferring torque to said housing; a rear differential connected to said housing of said speed sensing torque transfer device; a pair of rear halfshaft assemblies operatively connected to said rear differential for transferring torque to said rear halfshaft assemblies, each of said rear halfshaft assemblies connected to a respective rear wheel whereby under normal operating conditions said all wheel drive system provides substantially all torque to said front differential, and in a slip condition when either of said front wheels begins to slip said front differential rotates at a higher speed than said rear differential and said self contained speed sensing torque transfer device engages thereby providing torque to said rear differential until said slip condition is resolved whereupon substantially all torque is transferred back to the front wheels; a torque arm assembly, said torque arm assembly comprising a torque arm having an elongate body for protecting said speed sensing torque transfer device from heat radiated from said motor vehicle, said torque arm having an asymmetric configuration including an upper section and a side section, each section affixed to said rear differential and also to said motor vehicle to reduce the torque reaction load of said rear differential; and a torque arm mount slidably affixable to said torque arm allowing positional adjustment of the torque arm in relation to said torque arm mount.
- 2. An all wheel drive system as in claim 1 wherein said upper section of said torque arm is generally planar, said side section of said torque arm is generally planar and said upper and side sections meet at a truss section to form a generally 90° angle.
- 3. An all wheel drive system for a motor vehicle comprising:a front differential; a pair of front halfshaft assemblies operatively connected to said front differential whereby said front differential supplies torque to said pair of front half shaft assemblies, each of said pair of front half shaft assemblies connected to a respective front wheel; a power takeoff unit operatively connected to said front differential; a constant velocity joint connected to said power takeoff unit whereby said front differential supplies torque to said constant velocity joint through said power takeoff unit; a first propshaft having a first end and a second end, said first end connected to said constant velocity joint; a plunging constant velocity joint connected to said second end of said first propshaft; a second propshaft having a first end and a second end, said first end connected to said plunging constant velocity joint, said second propshaft manufactured from a carbon fiber reinforced plastic material having a longitudinal stiffness to density ratio in a range from 3 to 9, a fiber by volume ratio greater that 50% and a winding angle of 60° of less; a universal joint having a first end and a second end, said first end of said universal joint connected to said second end of said second propshaft; a self contained speed sensing torque transfer device connected to said second end of said universal joint such that torque is selectively transferable when said self contained speed sensing torque transfer device is engaged, said self contained speed sensing torque transfer device including; a hub connected to a first set of friction plates, said hub also connected to said second end of said universal joint, a housing connected to a second set of friction plates whereby the first and second set of friction plates are disposed in a selectively interconnecting relationship; a piston located adjacent said first and second set of friction plates; a self contained shear pump for generating a pressure proportional to the speed difference between the hub and the housing, said pump comprising, a feed disc affixed to said hub, a fluid reservoir, a pump disc affixed to said housing and in fluid communication with said fluid reservoir, said pump disc having a circumferential pumping groove and at least one connecting hole forming a shear channel with said feed disc, said pump generating pressure on said piston at a set speed difference such that said piston transmits pressure to said first and second set of friction plates and torque is thereby transferable from said first set of friction plates to said second set of friction plate thereby transferring torque to said housing; a rear differential connected to said housing of said speed sensing torque transfer device; a pair of rear halfshaft assemblies operatively connected to said rear differential for transferring torque to said rear halfshaft assemblies, each of said rear halfshaft assemblies connected to a respective rear wheel whereby under normal operating conditions said all wheel drive system provides substantially all torque to said front differential, and a slip condition when either of said front wheels begins to slip said front differential rotates at a higher speed than said rear differential and said self contained speed sensing torque transfer device engages thereby providing torque to said rear differential until said slip condition is resolved whereupon substantially all torque is transferred back to the front wheels; a torque arm assembly, said torque arm assembly comprising a torque arm having an elongate body for protecting said speed sensing torque transfer device from heat radiated from said motor vehicle, said torque arm having an asymmetric configuration including an upper section and a side section, each section affixed to said rear differential and also to said motor vehicle to reduce the torque reaction load of said rear differential; and a torque arm mount slidably affixable to said torque arm allowing positional adjustment of the torque arm in relation to said torque arm mount.
- 4. An all wheel drive system as in claim 3 wherein said upper section of said torque arm is generally planar, said side section of said torque arm is generally planar and said upper and side sections meet at a truss section to form a generally 90° angle.
- 5. An all wheel drive system for a motor vehicle comprising:a front differential; a pair of front halfshaft assemblies operatively connected to said front differential whereby said front differential supplies torque to said pair of front half shaft assemblies, each of said pair of front half shaft assemblies connected to a respective front wheel; a power takeoff unit operatively connected to said front differential; a constant velocity joint connected to said power takeoff unit whereby said front differential supplies torque to said constant velocity joint through said power takeoff unit; a first propshaft having a first end and a second end, said first end connected to said constant velocity joint; a plunging constant velocity joint connected to said second end of said first propshaft; a second propshaft having a first end and a second end, said fist end connected to said plunging constant velocity joint, said second propshaft manufactured from a carbon fiber reinforced plastic material having a torsional stiffness to density ratio in a range from 1 to 2.2, a fiber by volume ratio greater that 50% and a winding angle of 60° or less; a universal joint having a first end and a second end, said firm end of said universal joint connected to said second end of said second propshaft; a self conned speed sensing torque transfer device connected to said second end of said universal joint such that torque is selectively transferable when said self contained speed sensing torque transfer device is engaged, said self contained speed sensing torque transfer device including; a hub connected to a first set of friction plates, said hub also connected to said second end of said universal joint, a housing connected to a second set of friction plates whereby the fist and second set of friction plates are disposed in a selectively interconnecting relationship; a piston located adjacent said first and second set of friction plates; a self contained shear pump for generating a pressure proportional to the speed difference between the hub and the housing, said pump comprising, a feed disc affixed to said hub, a fluid reservoir, a pump disc affixed to said housing and in fluid communication with said fluid reservoir, said pump disc having a circumferential pumping groove and at least one connecting hole forming a shear channel with said feed disc, said pump generating pressure on said piston at a set speed difference such that said piston transmits pressure to said first and second set of friction plates and torque is thereby transferable from said first set of friction plates to said second set of friction plate thereby transferring torque to said housing; a rear differential connected to sad housing of said speed sensing torque transfer device; a pair of rear halfshaft assemblies operatively connected to said rear differential for transferring torque to said rear halfshaft assemblies, each of said rear halfshaft assemblies connected to a respective rear wheel whereby under normal operating conditions said all wheel drive system provides substantially all torque to said front differential, and in a slip condition when either of said front wheels begins to slip said front differential rotates at a higher speed than said rear differential and said self contained speed sensing torque transfer device engages thereby providing torque to said rear differential until said slip condition is resolved whereupon substantially an torque is transferred back to the front wheels; a torque an assembly, said torque arm assembly comprising a torque arm having an elongate body for protecting said speed sensing torque transfer device from heat radiated from said motor vehicle, said torque arm having an asymmetric configuration and affixed to said rear differential and also said motor vehicle to reduce the torque reaction load of said rear differential; and a torque arm mount slidably affixable to said torque arm allowing positional adjustment of the torque arm in relation to said torque arm mount.
Parent Case Info
This application claims benefit for U.S. Provisional No. 60/086,512 filed May 22, 1998.
US Referenced Citations (20)
Non-Patent Literature Citations (1)
Entry |
SAE Technical Paper Series entitled “VISCO-LOK: A Speed Sensing Limited-Slip Device with High Torque Progressive Engagement” by Theodor Gassmann and John Barlage, Feb. 1996. |
Provisional Applications (1)
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Number |
Date |
Country |
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60/086512 |
May 1998 |
US |