Park brake actuator
A park-brake actuator includes a cam including first serrations and an open-ended slot, a piston including second serrations displaceable relative to the cam in response to variable pressure applied to the piston, a spring, and a rod including a pin urged by the spring toward the slot and contact with the first and second serrations, the pin moved by piston displacement from the slot, onto one of the first serrations to a flat-tow position.
1. A parking assembly, comprising:
a cam including first serrations and an open-ended slot;
a piston including second serrations displaceable relative to the cam in response to variable pressure applied to the piston;
a spring;
a rod including a pin urged by the spring toward the slot and contact with the first and second serrations, the pin moved by piston displacement from the slot, onto one of the first serrations to a flat-tow position.
2. The parking assembly of claim 1 , wherein the cam is fixed against axial displacement and rotation.
3. The parking assembly of claim 1 , wherein the slot includes a closed end stop surface that limits movement of the pin in the slot.
4. The parking assembly of claim 3 , wherein contact between the pin and the stop surface corresponds to a Park state of the actuator.
5. The parking assembly of claim 3 , wherein the pin being located in the slot between the stop surface and the open end of the slot corresponds to a no-Park state.
6. The parking assembly of claim 1 , wherein the pin is urged by the spring in opposition to said variable pressure toward the first and second serrations and into the slot.
7. The parking assembly of claim 1 , further comprising a second spring having a spring constant greater than a spring constant of the spring, a force produced by the second spring being applied to the pin.
8. The parking assembly of claim 7 , further comprising:
a first chamber containing hydraulic fluid;
a baffle secured to the rod, located in the chamber between the spring and the second spring, the baffle formed with an orifice through which fluid flows as the rod is displaced in the chamber.
9. The parking assembly of claim 1 , further comprising:
a park rod connected to the rod and to a pawl;
a park gear rotationally fixed to a transmission output shaft and alternately engaged and disengaged by the pawl in response to displacement of the rod.
10. A parking assembly, comprising:
a cam including first serrations and an open-ended slot;
a piston including second serrations displaceable relative to the cam in response to variable pressure applied to the piston;
a first and second springs located in a chamber containing fluid;
a rod including a pin urged by the springs toward the slot and contact with the first and second serrations, the pin moved by piston displacement from the slot, onto one of the first serrations to a flat-tow position,
a damper secured to the rod and located in the chamber.
11. The parking assembly of claim 10 , wherein the cam is fixed against axial displacement and rotation.
12. The parking assembly of claim 10 , wherein the slot includes a closed end stop surface that limits movement of the pin in the slot.
13. The parking assembly of claim 12 , wherein contact between the pin and the stop surface corresponds to a Park state of the actuator.
14. The parking assembly of claim 12 , wherein the pin being located in the slot between the stop surface and the open end of the slot corresponds to a no-Park state.
15. The parking assembly of claim 10 , wherein the pin is urged by the springs in opposition to said variable pressure toward the first and second serrations and the slot.
16. The parking assembly of claim 10 , further comprising:
a park rod connected to the rod and to a pawl;
a park gear rotationally fixed to a transmission output shaft and alternately engaged and disengaged by the pawl in response to displacement of the rod.
17. A method for operating a parking assembly, comprising:
fixing a cam including first serrations and an open-ended slot against axial displacement and rotation;
supporting a piston including second serrations for displaceable relative to the cam in response to variable pressure applied to the piston;
applying a spring force to a rod that includes a pin urged by a spring toward the slot and contact with the first and second serrations;
using piston displacement and the second serrations to move the pin from the slot, onto one of the first serrations to a flat-tow position.
18. The method of claim 17 , further comprising maintaining the pin in the flat-tow position by reducing said variable pressure to zero.
19. The method of claim 17 , further comprising:
removing the pin the pin from in the flat-tow position by increasing said variable pressure;
using said variable pressure to remove the pin from the first serration; and
using said variable pressure to move the pin onto the second serrations.