Abstract:
A vehicle door driving apparatus includes a driving mechanism fixed to a vehicle door and including a motor and a drum rotationally driven by the motor. A rope member is wound around the drum and linked to the vehicle body, and rotation of the drum is transmitted to the vehicle body by the rope member to open and close the vehicle door. The driving mechanism includes: a first small-diameter gear linked to the rotary axis of the motor to rotate together with the rotary shaft of the motor; a transmission gear rotatable around the axis extending in the vehicle width direction; a sun gear rotatable around such axis; a ring gear disposed on the same axis as the sun gear; and a carrier having a planet gear engaging the sun gear and the ring gear, and linked to the drum so that the carrier rotates together with the drum.
Abstract:
A door opening/closing apparatus automatically opens and closes a door, and the door is supported by a vehicle body such that the door can open and close in a vertical direction. A plurality of link members connect the door and the vehicle body, and at least one of the link members is driven by the drive motor. At least one of the link members is provided with a drive motor, and a connection shaft connects the link member having the drive motor and another link member that is adjacent to the former link member. The connection shaft is rotated by the drive motor.
Abstract:
A support post includes an inner post that supports rotation of an outer post. The inner post includes a journal assembly that supports and facilitates rotation about a central axis. The journal assembly that supports the outer post on the inner post includes a single ball bearing disposed along the axis of rotation. The inner post is fixed and supports a central post on which the ball bearing is supported. The outer post includes a sleeve that fits over the ball bearing and the central post. Support of the outer post along the central axis provides for improved mounting and gate support. An actuator can be utilized to automatically or remotely open the gate. The actuator is disposed within the inner post that drives rotation of the outer post. The outer post remains supported by the journal assembly and is rotated by the actuator with the inner post.
Abstract:
A door closing mechanism which comprises a hydraulic rotation damper 5, comprising a closed cylinder cavity 20 within a cylinder barrel 19, a rotational damper shaft 22 which extends into the cylinder cavity 20, a piston 21 dividing the cylinder cavity 20 into a first side 20a above the piston 21 and a second side 20b below the piston 21, a one-way valve 33 allowing fluid flow from said first side 20a to said second side 20b of the cylinder cavity 20, and a fluid passage 31 between said first and second sides 20a,20b of the cylinder cavity 20, with a flow restrictor, in particular in the form of a needle valve 32, adjustable through an orifice in the cylinder barrel 19, wherein said second side 20b of the cylinder cavity 20 and said orifice are at opposite sides of the flow restrictor.
Abstract:
A support post includes an inner post that supports rotation of an outer post. The inner post includes a journal assembly that supports and facilitates rotation about a central axis. The journal assembly that supports the outer post on the inner post includes a single ball bearing disposed along the axis of rotation. The inner post is fixed and supports a central post on which the ball bearing is supported. The outer post includes a sleeve that fits over the ball bearing and the central post. Support of the outer post along the central axis provides for improved mounting and gate support. An actuator can be utilized to automatically or remotely open the gate. The actuator is disposed within the inner post that drives rotation of the outer post. The outer post remains supported by the journal assembly and is rotated by the actuator with the inner post.
Abstract:
A powered sliding device includes a wire drum (16) connected to a vehicle sliding door (11) through wire cables (18, 19), a motor (14) for rotating the wire drum, a clutch mechanism (25) provided between the motor and the wire drum, a rotational member (85) rotated integrally with the wire drum, detection apparatus (86) for detecting the rotation of the rotational member, and a housing (74). The housing includes a first space (76) accommodating the wire drum and communicating with the outside of the housing through the wire cables and a second space accommodating the rotational member and the detection apparatus, and a housing body (73) provided between the first space and the second space which separates the first space and the second space.
Abstract:
An opening/closing apparatus for a vehicle, which has a door-lock mechanism, is provided. An output of a motor unit is transmitted to a drum having a planetary gear mechanism, and the slide door of the vehicle is driven by an open-side cable and a close-side cable wound around the drum. A closer cable of the door-lock mechanism is coupled to a carrier of the planetary gear mechanism, and coupled to a latch of the door-lock mechanism via a coupling link. The coupling link is constituted as a toggle mechanism so as to regulate the rotation of the latch by the traction force of the closer cable until the latch is rotated toward a full latch direction from an unlatch position. When the regulation of the latch by the toggle mechanism is released, the latch is rotationally driven toward the full latch direction due to the rotation of the carrier.
Abstract:
A sliding wall-mounted interior door system that includes a telescoping door actuating mechanism that is attached to the upper portion of the door, and a roller assembly that extends horizontally from the wall and engages a track in the lower portion of the door. The door actuating system is designed so that the movement of one of the door panels simultaneously moves the other door panel in the opposite direction. The actuating mechanism is designed so that a gearing assembly within the actuating mechanism moves laterally when the door system is moved between the open and closed positions.
Abstract:
An adjusting system of a motor vehicle for the adjustment of a closing part is disclosed. The closing part may be a rear flap, a trunk deck, a sliding or swinging door. The closing part may be adjustable between an opened position and a closed position along a setting range. A body opening of a motor vehicle body is closed in the closed position by a closing part. The adjusting system uses at least two springs to effect the closing. The two springs may be selectively operated over a range of operation settings.
Abstract:
The invention relates to a servo drive comprising an electromechanical energy converter, which has a rotatably mounted disc rotor for generating a torque and a stepping up mechanism that is connected downstream of the disc rotor, for coupling the disc rotor to an output element and for stepping up the torque that acts on the disc rotor and comprising a locking mechanism that locks a rotational displacement of the output element, when a torque is introduced on the output side. According to the invention, the locking mechanism comprises a coil spring which can be radially expanded and compressed and which extends around the outer periphery of the stepping up mechanism.