Claims
- 1. A vehicular brake apparatus comprising:
a motor that is electrically driven to revolve; a movement conversion portion for reducing a speed of revolution of the motor from a low gear ratio to a high gear ratio in at least two steps in accordance with one of a speed of revolution and a quantity of state according with a speed of revolution, and converting the revolution of the motor, which has been reduced in speed, to a linear movement; and a brake force generation portion for generating a braking force by pressing a friction member based on the linear movement by the movement conversion portion.
- 2. The vehicular brake apparatus according to claim 1, wherein:
the movement conversion portion includes a variable reduction portion for reducing the speed of revolution of the motor from the low gear ratio to the high gear ratio in at least two steps in accordance with one of the speed of revolution and the quantity of state according with the speed of revolution, and a linear movement conversion portion converting the revolution of the motor, which has been reduced in speed, to the linear movement.
- 3. The vehicular brake apparatus according to claim 2, wherein:
the brake force generation portion includes a disk for revolving integrally with a vehicle wheel and that is pressed by the friction member, and a friction material holding portion having an end surface that faces the friction member, which is movable in a direction that presses the friction member against the disk, the variable reduction portion is disposed so that a direction of an output shaft of the revolution of the motor, which has been reduced in speed, is in agreement with the movement direction of the friction material holding portion, and the linear movement conversion portion includes a straight inclined surface first ramp portion which has a constant gradient and is provided around a circumferential direction of the output shaft of the revolution of the variable reduction portion, and a second ramp portion that has a straight inclined surface with the same gradient as the first ramp portion and is provided at an opposite end portion to the friction member of the friction holding portion and contacts the first ramp portion by a straight inclined surface via a plurality of roller bearings.
- 4. The vehicular brake apparatus according to claim 2, wherein:
the variable reduction portion includes a first reduction portion that reduces the speed of revolution of the motor at a first reduction ratio, and a second reduction portion that reduces the speed of revolution of the motor at a second reduction ratio that is larger than the first reduction ratio, and the linear movement conversion portion includes a first linear movement conversion portion for converting the revolution of the motor, which has been reduced in speed by the first reduction portion, to the linear movement and pressing the friction member, and a second linear movement conversion portion for converting the revolution of the motor, which has been reduced in speed by the second reduction portion, to the linear movement and pressing the friction member.
- 5. The vehicular brake apparatus according to claim 4, wherein:
the first reduction portion is a screw mechanism formed coaxially with a shaft of the motor, and the first linear movement conversion portion is configured from the screw mechanism.
- 6. The vehicular brake apparatus according to claims 4, wherein:
the second reduction portion includes an input shaft driven by the revolution of the motor, a link member having an output shaft coaxial with the input shaft, a reduction mechanism for transmiting a speed of the input shaft to the output shaft at a speed determined by the second reduction ratio, and a ramp mechanism for converting revolution of the link member in a circumferential direction to movement in an axial direction, and the second linear movement conversion portion includes the ramp mechanism and pressing the friction member using the axial direction movement of the ramp mechanism.
- 7. The vehicular brake apparatus according to claims 4, wherein:
the variable reduction portion includes a reduction ratio switching portion for transmitting the revolution of the motor to the first reduction portion when a reaction force from the friction member that opposes pressure application of the friction member according with the revolution of the motor is less than a predetermined value, and transmits the revolution of the motor to the second reduction portion when the reaction force is at least the predetermined value.
- 8. The vehicular brake apparatus according to claim 7, wherein:
the reduction ratio switching portion includes a clutch portion and a release member, the clutch portion places the screw mechanism and the motor shaft into contact when the reaction force is less than the predetermined value, and the release member reduces a relative displacement between the release member and the clutch portion when the reaction force is at least the predetermined value, and by contacting the clutch portion, releases contact of the clutch portion and the motor shaft.
- 9. The vehicular brake apparatus according to claim 1, wherein:
the brake force generation portion has a master cylinder for generating a hydraulic pressure for a wheel cylinder of each wheel, the movement conversion portion includes a rack gear portion for moving a piston rod that pushes a piston of the master cylinder in a sliding direction of the piston, and a pinion gear portion for meshing with the rack gear portion and revolves by the revolution of the motor, and the rack gear portion and the pinion gear portion configure a variable gear mechanism.
- 10. The vehicular brake apparatus according to claim 9, wherein:
the rack gear portion has a gear formed with a predetermined gradient in a linear movement direction, this gradient changing, in at least two steps, from being large to small along with movement in the straight linear movement direction, and the pinion gear portion is a non-circular gear provided at the shaft of the motor.
- 11. The vehicular brake apparatus according to claim 1, wherein:
the brake force generation portion has a master cylinder for generating a hydraulic pressure for a wheel cylinder of each wheel, and the movement conversion portion has a cam which abuts with a head of a piston rod that pushes a piston of the master cylinder, a shaft of this cam is provided at a shaft of the motor, and the cam has a radius that is set to increase in size with a turning angle of the cam, such that the increase is larger during an initial period of revolution, and smaller during a final period of revolution.
- 12. The vehicular brake apparatus according to claim 1, wherein:
the brake force generation portion has a master cylinder for generating a brake hydraulic pressure for a wheel cylinder of each wheel, and the movement conversion portion has a link for connecting a piston road that pushes a piston of the master cylinder and a shaft of the motor.
- 13. A vehicular brake apparatus comprising:
a motor that is electrically driven to revolve; a linear movement conversion portion for converting revolution of the motor to a linear movement; and a brake force generation portion having a master cylinder for generating a brake hydraulic pressure for a wheel cylinder of each wheel, by sliding of a piston generated by the linear movement of the linear movement conversion portion, and generating a braking force by pressing a friction member based on the brake hydraulic pressure, wherein
the piston includes a small diameter portion and a large diameter portion having a diameter larger than the small diameter portion, and the master cylinder is such that a discharged amount of a brake fluid corresponding to a stroke amount changes from a large to a small amount, by variation of the piston diameter that actually acts upon the brake hydraulic pressure when the piston is sliding.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2002-78472 |
Mar 2002 |
JP |
|
2003-38561 |
Feb 2003 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is based upon and claims the benefit of Japanese Patent Application No. 2002-78472 filed on Mar. 20, 2002, and No. 2003-38561 filed on Feb. 17, 2003 the content of which are incorporated herein by reference.