Claims
- 1. A drive mechanism for a power operated slideable side door that is attached to a hinge and roller assembly that travels in a track of a vehicle, the drive mechanism having a flexible drive member that travels in the track juxtaposed the hinge and roller assembly, a front pulley engaging the flexible drive member at a front end of the track, a rear pulley engaging the flexible drive member at a rear end of the track, an electric motor driving one of the pulleys, a clutch mounted on the hinge and roller assembly for clamping the hinge and roller assembly to the flexible drive member, the clutch having a stationary plate and a moveable plate straddling a portion of the flexible drive member, and an actuator for moving the moveable plate with respect to the stationary plate to clamp the portion of the flexible drive member between the stationary plate and the moveable plate for driving the door or to release the flexible drive member for moving the door manually without back driving the flexible drive member, characterized in that:
the actuator further includes a rod that moves the moveable plate and a transfer lever that is pivotally attached to the hinge and roller assembly and moves the rod.
- 2. The drive mechanism as defined in claim 1 wherein the transfer lever pivots between an engaged position where the moveable plate clamps the flexible drive member and a release position where the moveable plate releases the flexible drive member and wherein the transfer lever is spring biased toward the engaged position where the moveable plate clamps the flexible drive member.
- 3. The drive mechanism as defined in claim 2 wherein the actuator further includes a push pull cable that is attached to the transfer lever for pivoting the transfer lever between the engaged position and the release position.
- 4. A drive mechanism for a power operated slideable side door that is attached to a hinge and roller assembly that travels in a track of a vehicle, the drive mechanism having a flexible drive member that travels in the track juxtaposed the hinge and roller assembly, a front pulley engaging the flexible drive member at a front end of the track, a rear pulley engaging the flexible drive member at a rear end of the track, an electric motor driving one of the pulleys, a clutch mounted on the hinge and roller assembly for clamping the hinge and roller assembly to the flexible drive member, the clutch having a stationary plate and a moveable plate straddling a portion of the flexible drive member, and an actuator for moving the moveable plate with respect to the stationary plate to clamp the portion of the flexible drive member between the stationary plate and the moveable plate for driving the door or to release the flexible drive member for moving the door manually without back driving the flexible drive member, characterized in that:
the actuator further includes a rod that moves the moveable plate and a transfer lever that is pivotally attached to the hinge and roller assembly and moves the rod; the transfer lever pivots between an engaged position where the moveable plate clamps the flexible drive member and a release position where the moveable plate releases the flexible drive member, and the actuator includes front and rear bell crank levers that are pivotally attached to the hinge and roller assembly on either side of the rod, the bell crank levers having a triggered position holding the transfer lever in the engaged position and an armed position holding the transfer lever in the release position.
- 5. The drive mechanism as defined in claim 4 wherein the bell crank levers are operatively connected for coordinated movement and wherein one of the bell crank levers has a detent that engages a first shoulder of the transfer lever to hold the transfer lever in the engaged position and the bell crank levers in the triggered position.
- 6. he drive mechanism as defined in claim 5 wherein the detent engages a second stop shoulder on the transfer lever to hold the bell crank levers in the armed position when the transfer lever is in the release position.
- 7. The drive mechanism as defined in claim 6 wherein the bell crank levers are spring biased toward the armed position.
- 8. The drive mechanism as defined in claim 7 wherein a coil spring is attached to the transfer lever and to one of the bell crank levers to bias the transfer lever toward the engaged position and the bell crank levers toward the armed position.
- 9. The drive mechanism as defined in claim 7 wherein the bell crank levers have arms that extend toward each other, the arms having end portions that overlap each other and that are connected to each other by a pin and slot arrangement.
- 10. The drive mechanism as defined in claim 7 wherein the track has a first stop that engages one of the bell crank levers to move the bell crank levers from the armed position to the triggered position when the door is closed manually and a second stop that engages another on the bell crank levers to move the bell crank levers from the armed position to the triggered position when the door is opened fully manually.
- 11. A hinge and roller assembly for a drive mechanism for a power operated slideable side door of a vehicle, the hinge ad roller assembly comprising:
a carriage, a clutch on the carriage having a stationery plate and a movable plate, an actuator for moving the movable plate with respect to the stationary plate, the actuator comprising a transfer lever that is pivotally mounted on the carriage and attached to the moveable plate, the transfer lever having a forward stop and a rearward stop, forward and rearward bell crank levers that are pivotally mounted on the carriage for rotation about spaced respective pivots, the bell crank levers having arms that extend toward each other and are coupled together so that the bell crank levers rotate each other, the bell crank levers having second arms for rotating the respective bell crank levers, one of the bell crank levers having a third arm engageable with the forward and rearward stops of the transfer lever, and a spring biasing the third arm into engagement with the forward stop when the transfer lever is in a first position or with the rearward stop when the transfer lever is in a second position.
- 12. The hinge and roller assembly as defined in claim 11 wherein the spring is connected to the transfer lever at one end and to one of the bell crank levers having the third arm at the other end.
- 13. The hinge and roller assembly as defined in claim 12 wherein one of the forward and rearward stops is a two-way stop.
RELATED APPLICATION
[0001] This patent application claims benefit of U.S. Provisional patent application No. 60/295,606 filed Jun. 4, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60295606 |
Jun 2001 |
US |