Abstract:
A slider (10) is provided for use with an elongated channel (12) having a pair of spaced apart side walls (14, 16) interconnected by a base wall (18) and an upper wall (20, 22) projecting from each side wall spaced from and generally parallel to the base wall. The slider has a body portion (30) defined by a top surface (32), bottom surface (34) and plurality of side surfaces (36) interconnecting the top and bottom surfaces. The slider also has a plurality of axial slots (42) extending between the top and bottom surfaces adjacent each side surface and a plurality of lateral slots (52) extending between each of the side surfaces and the respective axial slot (42) for allowing the side surface to flex and bias the slider between the side walls of the channel (12). The slider (10) further has a plurality of raised ridges (44) projecting from each of the top and bottom surfaces for flexing and biasing the slider between the upper walls and the base wall of the channel. Finally, the slider includes a plurality of semi-spherical embosses (48) extending from the top and bottom surfaces for slidably engaging and guiding the slider between the upper walls and the base wall within the channel (12).
Abstract:
The invention relates to a cable window lifter for moving a window glass (5) in a vehicle, especially an automobile or the like. Said lifter has two guide sections (1, 2) in which a sliding element (3, 4) is moveably guided. The cable (6) engages on at least one sliding element (3, 4). The window glass (5) is fixed on both sliding elements (3, 4). One of the sliding elements (4) is guided with a degree of play at least in certain areas of the corresponding guide section (1) in the direction of the longitudinal axis (X axis) of the vehicle so that the sliding element (4) can execute a compensating movement in the direction of the X axis when the window glass (5) is moved.
Abstract:
The invention relates to a door module (1) of the type formed by a single part and from a single injected material, which module comprises a substantially flat supporting face (2) and at least one guide rail (34) of a window regulator system, said rail (34) being intended to guide and maintain a motor vehicle window supporting device (32). The rail (34) forms at least part of one of one of the side end parts (4) of the supporting face (2), said rail (34) extending continuously with the rest of the module (1) and forming a projection (40) in relation to the supporting face (2). The rail (34) extends in at least two planes different from the plane of the supporting face (2).
Abstract:
In an aspect, a lifter plate is provided that is capable of a relatively strong connection to a vehicle window. The lifter plate includes a lifter plate body including a first side wall and a second side wall configured to receive a vehicle window therebetween, a window holding member positionable in a locking position to prevent the withdrawal of the vehicle window from between the first and second side walls, and a locking member positioned to prevent the movement of the window holding member out of the locking position in the event of a force urging the withdrawal of the vehicle window from between first and second side walls.
Abstract:
In an aspect, a lifter plate is provided that is capable of a relatively strong connection to a vehicle window. The lifter plate includes a lifter plate body including a first side wall and a second side wall configured to receive a vehicle window therebetween, a window holding member positionable in a locking position to prevent the withdrawal of the vehicle window from between the first and second side walls, and a locking member positioned to prevent the movement of the window holding member out of the locking position in the event of a force urging the withdrawal of the vehicle window from between first and second side walls.
Abstract:
A window regulator for a vehicle, includes a slider fixed to a slide windowpane which moves up and down in a vehicle door; a guide rail which is fixed to the door panel, extends in an up/down direction of the slide windowpane and supports the slider; a wire orientation changing member provided the guide rail; a drive wire which is wound around the wire orientation changing member, wherein the drive wire moves up and down with the slider; a drive drum which moves the drive wire up and down; and a slide contact portion which is provided on the guide rail, extends in the up/down direction and is greater in length than the slider in the up/down direction, wherein the slider slides on the slide contact portion when the slider moves up and down.
Abstract:
In an aspect, the invention is directed to a window regulator assembly that includes a carrier, a set of lifter plates, a drive motor and drive cables for operatively connecting the drive motor to the lifter plates. At least one rail may be integral with the carrier. The carrier has a carrier seal that is co-molded therewith. The carrier has a pulley assembly thereon that includes a pulley and a pulley bearing member that has a pulley bending load bearing surface that is conical and that mates with a carrier bending load bearing surface that is inner-conical. The lifter plate is capable of a relatively strong connection to a vehicle window. The lifter plate has a window pass-through member that passes through a locking aperture in the vehicle window. The window pass-through member has two ends and is supported at both ends against vertical withdrawal of the vehicle window. The lifter plate also has a reduced tendency to bind when in use. The lifter plate has lateral engagement surfaces that are for engagement with lateral guide surfaces and has cable mounts for receiving drive cables. The cable mounts are positioned laterally between the lateral engagement surfaces. Additionally, the vehicle window lifter plate has lateral engagement surfaces that are for engagement with lateral guide surfaces. The lateral engagement surfaces are biased against the lateral guide surfaces, thereby giving the lifter plate the capability to accommodate lateral forces with a reduced tendency to bind. A wiring harness clip for holding wiring harnesses to the carrier is provided. The wiring harness clip has two clip elements that together define a wiring harness retaining aperture in a longitudinal direction and an inlet thereto. The wiring harness inlet is canted to a non-zero angle relative to the longitudinal direction. The perpendicular spacing between the two clip elements is larger than the distance between them in the transverse direction.
Abstract:
A carrier for connection of a window pane to a window lift of a motor vehicle comprises guiding claws spaced apart from each other in a longitudinal direction of a guide rail of the window lift for guiding the carrier on the guide rail. The carrier includes a window pane holder for connecting the window pane with the carrier and an adjusting device for adjusting the position and/or orientation of the window pane with respect to the guide rail. To ensure an exact bearing of the window pane on an associated sealing contour on a motor vehicle body with simple constructive means, little mounting effort and few components, at least one guiding claw is adjustable in a direction vertical to the longitudinal extension of the guide rail or in longitudinal extension of the guide rail and vertical to the longitudinal extension of the guide rail.
Abstract:
A guiding system for a sliding door, especially a motor vehicle, comprising a sliding rail (5) with an upper cover (6) and a lower edge (7) arranged opposite the upper cover (6), and a roller element (101) which is guided in the sliding rail (5) and comprises a roller element housing (102) is presented. Three rollers (103, 104) are rotatably fixed to the roller element housing (102), two rollers (103) extending along the upper cover (6) of the sliding rail (5) and the third roller (104) extending along the lower edge (7). The invention creates one such guiding system in such a way that there is no play, it operates quietly, and has a taut system characteristic. To this end, a spring element (109) is fixed to the roller element housing (102), said spring element pressing on of the first two roller (103) and the third roller (104) against the sliding rail (5).
Abstract:
A cassette for force transmission in a window winder, with fitting means for fitting at least one force-introducing means on the cassette. The fitting means have a passage opening which completely penetrates the cassette from a first cassette side to a second cassette side and the force-introducing means, which is passed through the passage opening, can be fitted on the cassette by the fitting means.