Claims
- 1. An anti-lock braking system (ABS) for a wheel of an automotive vehicle comprising:
- master cylinder means for supplying pressurized fluid;
- sensor means to determine a rotational speed of the wheel,
- a wheel brake means receiving pressurized fluid from said master cylinder means and for restraining rotational movement of said wheel;
- an ABS controller cognizant of the rotational condition of said wheel via the sensor means and providing a signal when the rotational condition of said wheel is within present parameters;
- an actuator frame having a bore with means of fluid communication with said wheel brake means;
- a piston slidably sealably mounted with said bore for providing a variable control volume in communication with said wheel brake means and thereby modulating the pressure therein;
- a nut operatively associated with said piston and slidably mounted within said bore in a non-rotative fashion;
- a power screw projecting into said nut and threadedly engaged within in a low friction backdriveable manner, said power screw having a fixed rotational axis with respect to said actuator frame;
- reversible motor means for powering said power screw, said motor means being responsive to signals given by said controller;
- a non-rotative sleeve located between said power screw and said motor means in a fixed position, said sleeve having an inner diameter of a first value;
- a coil spring having a free outer diameter of a second value generally equal to or greater than said first value, said coil spring being captured with said non-rotative sleeve, and said coil spring having a first tang on one end and a second tang on another end;
- a drive member with a torsion transfer portion projecting into said non-rotative sleeve, said driver member having a rotational axis, said driver member having an angular position in correspondence with the angular position of said motor means, said driver member having a first contact surface for engagement with said first spring tang to cause said tang to release and to allow said spring to have sliding movement within said non-rotative sleeve in a first direction;
- a driven member with an angular position in correspondence with the angular position of said power screw, said driven member having a rotational axis generally coterminous with said rotational axis of said driver member and said driven member having a nesting tab with a generally radial bore for nesting said second tang, and said driven member having projecting into said sleeve a torsion transfer portion for making contact with said driver member torsion transfer portion for transferring torque from said driver member to said power screw, said driven member having at least one contact surface on said nesting tab for making contact on said spring tang to cause said spring release and to allow said spring to having sliding movement within said non-rotative sleeve in a second direction opposite said first direction, and said nesting tab having a second contact surface to make contact on said second tang on the opposite side said first contact surface makes contact on to cause said spring to radially expand and lock within said sleeve to prevent torque from said power screw being transferred to said motor means when said piston is moving away from a position more adjacent to said actuator frame bore means of fluid communication with said wheel brake means by fluid pressure within bore.
- 2. A braking system for a wheel of an automotive vehicle comprising:
- master cylinder means for supplying pressurized fluid;
- sensor means to determine a rotational speed of the wheel,
- a wheel brake means receiving pressurized fluid from said master cylinder means and for restraining rotational movement of said wheel;
- a controller cognizant of the rotational condition of said wheel via the sensor means and providing a signal when the rotational condition of said wheel is within present parameters;
- an actuator frame having a bore with means of fluid communication with said wheel brake means;
- a piston slidably sealably mounted with said bore for providing a variable control volume in communication with said wheel brake means and thereby modulating the pressure therein;
- a nut operatively associated with said piston and slidably mounted within said bore in a non-rotative fashion;
- a power screw projecting into said nut and threadedly engaged within in a flow friction backdriveable manner, said power screw having a fixed rotational axis with respect to said actuator frame;
- reversible motor means for powering said power screw, said motor means being responsive to signals given by said controller;
- a non-rotative sleeve located between said power screw and said motor means in a fixed position, said sleeve having an inner diameter of a first value;
- a coil spring having a free outer diameter of a second value generally equal to or greater than said first value, said coil spring being captured within said non-rotative sleeve, and said coil spring having a first tang on one end and a second tang on another end;
- a driver member with a torsion transfer portion projecting into said non-rotative sleeve, said driver member having a rotational axis, said driver member having an angular position in correspondence with the angular position of said motor means, said driver member having a first contact surface for engagement with said first spring tang to cause said tang to release and to allow said spring to have sliding movement within said non-rotative sleeve in a first direction;
- a driven member with an angular position in correspondence with the angular position of said power screw, said driven member having a rotational axis generally coterminous with said rotational axis of said driver member and said driven member having a nesting tab with a generally radial bore for nesting said second tang, and said driven member having projecting into said sleeve a torsion transfer portion for making contact with said driver member torsion transfer portion for transferring torque from said driver member to said power screw, said driven member having at least one contact surface on said nesting tab for making contact on said spring tang to cause said spring to release and to allow said spring to have sliding movement within said non-rotative sleeve in a second direction opposite said first direction, and said nesting tab having a second contact surface to make contact on said second tang on the opposite side said first contact surface makes contact on to cause said spring to radially expand and lock within said sleeve to prevent torque from said power screw being transferred to said motor means when said piston is moving away from a position more adjacent to said actuator frame bore means of fluid communication with said wheel brake means by fluid pressure within bore.
Parent Case Info
The present invention is a Continuation-in-Part of Ser. No. 353,320 filed May 17, 1989, now U.S. Pat. No. 5,011,237.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2651607 |
May 1978 |
DEX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
353320 |
May 1989 |
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