IP Library Granted Patent US 12663064
Granted Patent B2
US 12663064 · App. 19/238,866 · Granted Jun 23, 2026

Clutch

Inventor: Eugenio Tiziani (Cameri, IT)
Assignee: Meritor Heavy Vehicle Systems Cameri S.p.A.
F16H48/32F16H48/24
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Quick Facts
Patent No.
US 12663064
App. No.
19/238,866
Granted
Jun 23, 2026
Kind
B2
Abstract

A clutch for a differential lock mechanism including a clutch collar configured to be disposed on a shaft extending in an axial direction so as to be movable along the axial direction. The clutch including a clutch collar actuator mechanism for actuating the clutch collar to move along the axial direction. The clutch collar actuator mechanism includes an actuator piston configured to be disposed around the shaft and to move along the axial direction of the shaft. The actuator piston is fixed relative to the clutch collar so as to move together with the clutch collar.

Claims (40)

1 . A clutch for a differential lock mechanism comprising:

a clutch collar configured to be disposed on a shaft, the shaft extending in an axial direction and the clutch collar movable along the axial direction; and

a clutch collar actuator mechanism configured to actuate the clutch collar to move along the axial direction, the clutch collar actuator mechanism including:

an actuator piston configured to be disposed around the shaft and to move along the axial direction of the shaft, and wherein the actuator piston is fixed relative to the clutch collar so as to move together with the clutch collar,

a restoring arrangement configured to urge the actuator piston from an extended position to a retracted position, and

a cover configured to be disposed around the shaft, wherein the restoring arrangement includes a preload member fixed to the cover and an elastic member interposed between the preload member and the actuator piston so as to urge the piston towards the cover.

2 . The clutch of claim 1 , wherein the clutch collar actuator mechanism includes the cover configured to be disposed around the shaft, the cover partially accommodates the actuator piston in a piston recess, and wherein the cover and the actuator piston form therebetween a pressure chamber configured to be pressurized and depressurized to move the piston back and forth.

3 . The clutch of claim 1 , wherein the clutch collar actuator mechanism includes a guiding arrangement to guide the movement of the actuator piston in the axial direction.

4 . The clutch of claim 3 , wherein the clutch collar actuator mechanism includes the cover configured to be disposed around the shaft, wherein the guiding arrangement includes a guiding member fixed to the cover and a guiding hole formed in the actuator piston through which the guiding member penetrates in the axial direction.

5 . The clutch of claim 2 , wherein the actuator piston circumferentially extends around the axial direction, and the cover circumferentially extends around the axial direction.

6 . The clutch of claim 2 , wherein the cover includes an inlet port and a communication path for connecting the inlet port and the pressure chamber for supplying pressurized fluid into the pressure chamber.

7 . The clutch of claim 1 , wherein the clutch collar actuator mechanism includes the cover configured to be disposed around the shaft, the cover defining a piston recess and the actuator piston is disposed in the piston recess,

wherein a peripheral surface of the actuator piston comprises a step having a surface facing the axial direction,

wherein a peripheral surface of the piston recess facing the peripheral surface of the actuator piston having the step comprises a step having a surface facing the axial direction and opposed to the surface of the step of the actuator piston, and

wherein the pressure chamber is interposed between the surface of the step of the actuator piston and the surface of the step of the piston recess.

8 . The clutch of claim 1 , wherein the actuator piston is disposed around the clutch collar such that the actuator piston and the clutch collar at least partially overlaps in a radial direction.

9 . The clutch of claim 2 , wherein the cover is disposed around the clutch collar such that the cover and the clutch collar at least partially overlaps in a radial direction.

10 . The clutch of claim 1 , wherein the actuator piston includes an engaging protrusion engaging with the clutch collar for coupling the actuator piston to the clutch collar.

11 . The clutch of claim 10 , wherein the engaging protrusion of the actuator piston protrudes from an inner peripheral surface towards a radial inner side.

12 . The clutch of claim 10 , further comprising:

a plurality of engaging protrusions distributed at equal intervals around a circumference of the actuator piston, wherein the plurality of engaging protrusions includes the engaging protrusion of the actuator piston; and

a plurality of guiding arrangements distributed at equal intervals around the circumference of the actuator piston, and

wherein positions of the engaging protrusions in a circumferential direction correspond to positions of the guiding arrangements.

13 . A differential comprising:

a shaft;

a gear provided on the shaft so as to be rotatable on the shaft; and

a differential lock mechanism including the clutch of claim 1 ,

wherein the clutch collar is provided on the shaft so as to be rotationally fixed to the shaft and movable in the axial direction of the shaft,

wherein the actuator piston includes an engaging protrusion engaging with the clutch collar for coupling the actuator piston to the clutch collar, and

wherein the clutch is configured to selectively engage the clutch collar with the gear so that the gear is rotationally fixed to the shaft, and wherein the clutch includes,

a plurality of engaging protrusions distributed at equal intervals around a circumference of the actuator piston, wherein the plurality of engaging protrusions includes the engaging protrusion of the actuator piston; and

a plurality of guiding arrangements distributed at equal intervals around the circumference of the actuator piston, and

wherein positions of the engaging protrusions in a circumferential direction correspond to positions of the guiding arrangements.

14 . A clutch for use in a differential lock mechanism, the clutch comprising:

a clutch collar configured to be disposed on a shaft, the shaft extending in an axial direction and the clutch collar movable in the axial direction along a portion of the shaft; and

a clutch collar actuator mechanism configured to actuate the clutch collar to move the clutch collar in the axial direction and along the shaft, the clutch collar actuator mechanism including:

an actuator piston configured to be disposed radially outward from shaft and to move in the axial direction, and wherein the actuator piston is fixed relative to the clutch collar so as to move together with the clutch collar and the actuator piston at least partially overlaps the clutch collar with respect to a radial direction.

15 . The clutch of claim 14 , wherein the clutch collar actuator mechanism includes a cover configured to be disposed around the shaft, the cover defining a piston recess and the actuator piston disposed in the piston recess, wherein the cover and the actuator piston form a pressure chamber configured to be pressurized and depressurized to move the piston back and forth.

16 . The clutch of claim 15 , wherein the cover defines an inlet port and a communication path for connecting the inlet port and the pressure chamber for supplying pressurized fluid into the pressure chamber.

17 . The clutch of claim 15 , wherein the cover at least partially overlaps the clutch collar with respect to the radial direction.