Claims
- 1. A braking apparatus comprising:
a first contact unit disposed on a rotary shaft of a wheel; a second contact unit for contacting the first contact unit to generate a friction force; an actuator for moving and pressing the second contact unit toward the first contact unit; a control unit for controlling the operation of the actuator; a first memory, included in the control unit, which stores a first distance value set as a distance between the first and second contact units, the control unit controlling the actuator to cause the distance between the first and second contact units to be a second distance value which is narrower than the first distance value at a time of braking operation; a second memory, included in the control unit, which stores a third distance value different from the first and second distance values; and a switching unit which selects either one of the first and third distance values stored in the first and second memories, the distance between the first and second contact units being set to the third distance value by the control unit when the third distance value is selected.
- 2. A braking apparatus according to claim 1, wherein the second distance value is a value of the distance between the first and second contact units when the first and second contact units are almost in contact with each other.
- 3. A braking apparatus according to claim 1, wherein the third distance value is larger than the first distance value.
- 4. A braking apparatus according to claim 2, wherein the third distance value is larger than said first distance value.
- 5. A braking apparatus according to claim 1, wherein the first and second memories are included in a single memory device.
- 6. A braking apparatus according to claim 1, wherein the first and second memories are separate memory devices.
- 7. A braking apparatus comprising:
a first contact unit disposed on a rotary shaft of a wheel; a second contact unit for contacting the first contact unit to generate a friction force; an actuator for moving and pressing the second contact unit toward the first contact unit; a control unit for controlling the operation of the actuator; a first memory, included in the control unit, which stores a first distance value set as a distance between the first and second contact units; the control unit executing a position control for controlling the actuator to cause the distance between the first and second contact units to be a second distance value which is narrower than the first distance value at a time of braking operation; the control unit executing a braking force control for controlling a pressure force of the second contact unit against the first contact unit by the actuator according to a required pressure; a second memory, included in the control unit, which stores a third distance value different from the first and second distance values; and a switching unit which selects either one of the first and third distance values stored in the first and second memories, the distance between the first and second contact units being set to the third distance value by the control unit when the third distance value is selected.
- 8. A braking apparatus according to claim 7, wherein the second distance value is a value of the distance between the first and second contact units when the first and second contact units are almost in contact with each other.
- 9. A braking apparatus according to claim 7, wherein the third distance value is larger than the first distance value.
- 10. A braking apparatus according to claim 7, wherein the first and second memories are included in a single memory device, or separate memory devices.
- 11. A braking apparatus comprising:
a brake disk arranged on a rotary shaft of a wheel; at least a brake pad; a brake cylinder including a piston arranged to press the brake pad against the brake disk under the pressure of a brake fluid; a pump arranged to supply the brake fluid to the brake cylinder; and a controller arranged to regulate input of the brake fluid to the brake cylinder for maintaining a preset clearance between the brake pad and the brake disk, and for performing a position control operation to move the brake pad towards the brake disk and a force control operation to press the brake pad against the brake disk in accordance with a required braking force, the controller comprising:
a pad clearance setting unit arranged to set a preset clearance between the brake pad and the brake disk; a pad position control unit arranged to move the brake pad to a position substantially in contact with the brake disk; a brake force control unit arranged to control the pressure to press the brake pad against the brake disk; and a switching unit arranged to switch between the brake force control unit, the pad position control unit and the pad clearance setting unit, to regulate the input of the brake fluid to the brake cylinder.
- 12. A braking apparatus according to claim 11, further comprising:
a pressure sensor arranged to sense the pressure of the brake fluid applied to the brake cylinder and generate an output to the controller; and a flow rate detector arranged to detect the flow rate of the brake fluid applied to the brake cylinder and generate an output to the controller.
- 13. A braking apparatus according to claim 11, wherein a driving torque of the pump generated in response to a pad position command is larger than the driving torque of the pump generated in response to a braking force command.
- 14. A braking apparatus according to claim 11, wherein the controller contains a computer program to perform the functionality of the pad clearance setting unit, the pad position control unit, the braking force control unit, and the switching unit.
- 15. A braking apparatus comprising:
a brake disk arranged on a rotary shaft of a wheel; at least a brake pad; a mechanism arranged to control movement of the brake pad relative to the brake disk, including to press the brake pad against the brake disk; and a controller arranged to control the operation of the mechanism, including to maintain a preset clearance between the brake pad and the brake disk, and to perform a position control operation to move the brake pad towards the brake disk and a force control operation to press the brake pad against the brake disk in accordance with a required braking force, the controller comprising:
a pad clearance setting unit arranged to set a preset clearance between the brake pad and the brake disk; a pad position control unit arranged to move the brake pad to a position substantially in contact with the brake disk; a brake force control unit arranged to control the pressure to press the brake pad against the brake disk; and a switching unit arranged to switch between the brake force control unit, the pad position control unit and the pad clearance setting unit, to control movement of the brake pad relative to the brake disk.
- 16. A braking apparatus according to claim 15, wherein the mechanism controlling the movement of the brake pad relative to the brake disk comprises:
a brake cylinder including a piston arranged to press the brake pad against the brake disk under the pressure of a brake fluid; a pump arranged to supply the brake fluid to the brake cylinder; a pressure sensor arranged to sense the pressure of the brake fluid applied to the brake cylinder and generate an output to the controller to regulate the pressure of the brake fluid; and a flow rate detector arranged to detect the flow rate of the brake fluid applied to the brake cylinder and generate an output to the controller to regulate the pressure of the brake fluid.
- 17. A braking apparatus according to claim 16, wherein a driving torque of the pump generated in response to a pad position command is larger than the driving torque of the pump generated in response to a braking force command.
- 18. A braking apparatus according to claim 17, wherein the controller contains a computer program to perform the functionality of the pad clearance setting unit, the pad position control unit, the braking force control unit, and the switching unit.
- 19. A braking apparatus according to claim 15, wherein the mechanism controlling the movement of the brake pad relative to the brake disk comprises:
an actuator arranged to press the brake pad against the brake disk; and a detector arranged to detect the position of the brake pad relative to the brake disk and generate an output to the controller to control the operation of the actuator.
- 20. A braking apparatus according to claim 19, wherein the controller contains a computer program to perform the functionality of the pad clearance setting unit, the pad position control unit, the braking force control unit, and the switching unit.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-055966 |
Feb 2000 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation-in-part (CIP) of U.S. application Ser. No. 09/531,463, filed Mar. 20, 2000, and makes reference to, incorporates the same herein, and claims all benefits under 35 U.S.C. §120 from the U.S. application Ser. No. 09/531,463.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09531463 |
Mar 2000 |
US |
Child |
10265128 |
Oct 2002 |
US |