Claims
- 1. A differential gear comprising:
- (a) a differential mechanism including:
- (1) a differential case (49, 223);
- (2) pinion shafts (63, 251) rotatably supported within said differential case;
- (3) pinion gears (69, 253) rotatably supported by said pinion shafts, respectively; and
- (4) a pair of side gears (71, 73 or 255, 257) rotatably supported within said differential case in mesh with said pinion gears;
- (b) multiplate limit clutch means (83, 85 or 269, 271) disposed between said two side gears and two inner side wall surfaces of said differential case, respectively, for frictionally engaging one to said side gear with respective said inner sidewall surfaces for limiting the differential function of said differential mechanism;
- (c) first engaging means for providing a first axial force for engaging said limit clutch means for limiting the different action of said differential, said first engaging means responsive to differing rotation of said side gears relative to each other;
- (d) lock clutch means (87, 281) disposed within said differential case, for rotatably interconnecting one said side gear to said case, and for generating a second axial force for further engaging said limit clutch means for further locking the differential function of said differential mechanism; and
- (e) actuator means (127 or 293) disposed outside said differential case, for actuating said lock clutch means via at least one actuating member (119, 135 or 291, 287) passing through at least one space (137 or 285) formed in said differential case.
- 2. The differential gear of claim 1, wherein said lock clutch means (281) is disposed between one of said two side gears and a cylindrical recess formed in an inner side wall surface of said differential case, said lock clutch means comprising:
- (a) pressure receiving member (280) axially slidably coupled to said limit multiplate clutch provided for one of said two side gears and formed with first dog clutch projections (280A);
- (b) a clutch ring (277) axially slidably disposed within a wall thickness space of said differential case and formed with second dog clutch projections (277A) engageable with said first dog clutch projections; and
- (c) cam members (279) formed at a bottom of the cylindrical recess of said differential case and axially slidably always engaged with said clutch ring (277).
- 3. The differential gear of claim 2, wherein said actuator means (293) comprises:
- (a) a diaphragm (299) disposed outside said differential case and actuated by a hydraulic pressure applied thereinto;
- (b) a holding plate (291) fixed to said clutch ring (277) and actuated by said diaphragm to engage said lock clutch means when said diaphragm is actuated; and
- (c) a return spring (283) disposed between said pressure receiving member and said clutch ring, for urging said clutch ring to disengage said lock clutch means when said diaphragm is deactuated.
- 4. A differential gear comprising:
- (a) a differential mechanism including:
- (1) a differential case (223);
- (2) pinion shafts (251) rotatably supported within said differential case;
- (3) pinion gears (253) rotatably supported by said pinion shafts, respectively; and
- (4) a pair of side gears (255, 257) rotatably supported within said differential case in mesh with said pinion gears;
- (b) two frictional multiplate limit clutches (269, 271) disposed between said two side gears and two inner side wall surfaces of said differential case, respectively, for frictionally engaging one of said side gear with one of said inner sidewall surfaces for limiting the differential function of said differential mechanism;
- (c) first engaging means for providing a first axial force for engaging said limit clutch means for limiting the differential action of said differential, said first engaging means responsive to differing rotation of said side gears relative to each other;
- (d) lock clutch means (281) disposed between one of two side gears and a cylindrical recess formed in one inner wall surface of said differential case, for rotatably interconnecting one said side gear to said case, and for generating a second axial force for further engaging said limit clutch means for locking the differential function of said differential mechanism, including:
- (1) a pressure receiving member (280) axially slidably coupled to one of said limit multiplate clutch and formed with first dog clutch projections (280A);
- (2) a clutch ring (277) axially slidably disposed within a wall thickness space of said differential case and formed with second dog clutch projections (277A) engageable with said first dog clutch projection; and
- (3) cam member (279) formed in said differential case in contact with said clutch ring;
- (e) actuator means (293) including:
- (1) a diaphragm (299) disposed outside said differential case and actuated by a hydraulic pressure applied thereinto;
- (2) a holding plate (291) fixed to said clutch ring (277) and actuated by said diaphragm to engage said lock clutch means when said diaphragm is actuated; and
- (3) a return spring (283) disposed between said pressure receiving member and said clutch ring, for urging said clutch ring to disengage said lock clutch means when said diaphragm is deactuated.
Priority Claims (3)
Number |
Date |
Country |
Kind |
63-326075 |
Dec 1988 |
JPX |
|
1-84541 |
Jul 1989 |
JPX |
|
1-290077 |
Nov 1989 |
JPX |
|
Parent Case Info
This is a division of application Ser. No. 07/452,862, filed Dec. 19, 1989, now U.S. Pat. No. 5,098,360 issued Mar. 24, 1991.
US Referenced Citations (8)
Foreign Referenced Citations (3)
Number |
Date |
Country |
3813305 |
Nov 1988 |
DEX |
60-580 |
Aug 1984 |
JPX |
797921 |
Jan 1981 |
SUX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
452862 |
Dec 1989 |
|