IP Library Granted Patent US 12663077
Granted Patent B2
US 12663077 · App. 18/939,106 · Granted Jun 23, 2026

Blocking mechanism

Inventor: Adrien Nerriere (Amiens, FR)
Assignee: VALEO EMBRAYAGES
F16H63/3425F16H63/3466
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12663077
App. No.
18/939,106
Granted
Jun 23, 2026
Kind
B2
Abstract

A blocking mechanism includes a mobile pawl mounted with the ability to pivot between a locking position and a release position. The mobile pawl includes a cam surface, a pushing device including a cam follower able to move on the cam surface in order to move the mobile pawl from the release position to the locking position, and an actuating lever moving the pushing device and including a first notch and a second notch. A positioning member engages in the first notch in the locking position and in the second notch in the release position. The positioning member includes a first fixing surface and a second fixing surface which are offset from one another axially.

Claims (35)

1 . A blocking mechanism able to be mounted in a transmission casing for rotationally blocking a shaft of a vehicle having at least one locking recess, the blocking mechanism comprising:

a mobile pawl comprising a locking finger, the mobile pawl being mounted with the ability to pivot about an axis of pivoting between a locking position in which the locking finger is engaged in the locking recess and a release position in which the locking finger is disengaged from said locking recess, the mobile pawl comprising a cam surface;

a pushing device including a cam follower able to move on the cam surface in order to move the mobile pawl from the release position to the locking position;

an actuating lever mounted with the ability to pivot about an axis of actuation and configured to move the pushing device, the actuating lever comprising an external periphery including a first angular-positioning notch and a second angular-positioning notch; and

a positioning member collaborating with the external periphery of the actuating lever, the positioning member including a bearing surface configured to engage in the first angular-positioning notch when the mobile pawl is in the locking position and in the second angular-positioning notch when the mobile pawl is in the release position;

wherein the positioning member comprises a first fixing surface and a second fixing surface, the first fixing surface and the second fixing surface being offset from one another in a direction parallel to the axis of actuation.

2 . The blocking mechanism according to claim 1 , wherein the axis of actuation of the actuating lever is parallel to the axis of pivoting of the mobile pawl.

3 . The blocking mechanism according to claim 2 , wherein the first fixing surface and the second fixing surface are substantially perpendicular to the axis of actuation.

4 . The blocking mechanism according to claim 2 , wherein the external periphery of the actuating lever is made up of surfaces parallel to the axis of actuation.

5 . The blocking mechanism according to claim 2 , wherein the positioning member comprises a flexible blade directly or indirectly applying force to the external periphery of the actuating lever.

6 . The blocking mechanism according to claim 1 , wherein the first fixing surface and the second fixing surface are substantially perpendicular to the axis of actuation.

7 . The blocking mechanism according to claim 1 , wherein the external periphery of the actuating lever is made up of surfaces parallel to the axis of actuation.

8 . The blocking mechanism according to claim 1 , wherein the positioning member comprises a flexible blade directly or indirectly applying force to the external periphery of the actuating lever.

9 . The blocking mechanism according to claim 8 , wherein the positioning member comprises a rolling element arranged on the flexible blade, the rolling element being configured to roll along the external periphery of the actuating lever.

10 . The blocking mechanism according to claim 9 , wherein the first fixing surface and the second fixing surface are produced in the form of a first bent tab and of a second bent tab, the first and second bent tabs being bent at an angle of 90° from a first portion of the flexible blade and positioned axially one on each side of said first portion of the flexible blade.

11 . The blocking mechanism according to claim 8 , wherein the first fixing surface and the second fixing surface are produced in the form of a first bent tab and of a second bent tab, the first and second bent tabs being bent at an angle of 90° from a first portion of the flexible blade and positioned axially one on each side of said first portion of the flexible blade.

12 . The blocking mechanism according to claim 11 , wherein the first bent tab is bent in an opposite direction to the second bent tab.

13 . The blocking mechanism according to claim 8 , wherein the flexible blade has a shape that is bent over on itself to form a V-shape.

14 . The blocking mechanism according to claim 13 , wherein the V-shape comprises a first planar wall and a second planar wall, an angle of bending being established between the first planar wall and the second planar wall, the angle of bending being comprised between 0° and 80°.

15 . The blocking mechanism according to claim 14 , wherein a curved wall connects the first planar wall and the second planar wall.

16 . The blocking mechanism according to claim 14 , wherein the first planar wall and the second planar wall are parallel to the axis of actuation.

17 . The blocking mechanism according to claim 1 , wherein:

a first fixing means collaborates with the first fixing surface in order to limit the movement of the positioning member in a plane perpendicular to the axis of actuation; and

a second fixing means collaborates with the second fixing surface to block the movement of the positioning member along an axis parallel to the axis of actuation.

18 . The blocking mechanism according to claim 17 , wherein the flexible blade has a shape configured to leave unobstructed a passage along an axis parallel to the axis of actuation to allow the first and second fixing means to be assembled.

19 . A transmission system comprising a shaft having at least one locking recess and a blocking mechanism according to claim 1 .

20 . A blocking mechanism able to be mounted in a transmission casing for rotationally blocking a shaft of a vehicle having at least one locking recess, the blocking mechanism comprising:

a mobile pawl comprising a locking finger, the mobile pawl being mounted with the ability to pivot about an axis of pivoting between a locking position in which the locking finger is engaged in the locking recess and a release position in which the locking finger is disengaged from said locking recess, the mobile pawl comprising a cam surface;

a pushing device including a cam follower able to move on the cam surface in order to move the mobile pawl from the release position to the locking position;

an actuating lever mounted with the ability to pivot about an axis of actuation and configured to move the pushing device, the actuating lever comprising an external periphery including a first angular-positioning notch and a second angular-positioning notch; and

a positioning member collaborating with the external periphery of the actuating lever, the positioning member including a bearing surface configured to engage in the first angular-positioning notch when the mobile pawl is in the locking position and in the second angular-positioning notch when the mobile pawl is in the release position;

wherein the positioning member comprises a first fixing surface and a second fixing surface, the first fixing surface and the second fixing surface being offset from one another in a direction parallel to the axis of actuation, and

wherein:

a first fixing means collaborates with the first fixing surface in order to limit the movement of the positioning member in a plane perpendicular to the axis of actuation; and

a second fixing means collaborates with the second fixing surface to block the movement of the positioning member along an axis parallel to the axis of actuation.