Abstract:
A powered actuator for moving a motor vehicle closure panel from a closed position to an open position and method of construction thereof. Powered actuator includes an electric motor configured to rotate a driven shaft and a gearbox coupled to the driven shaft. An extensible member extends through the gearbox to a proximal end on one side of the gearbox for attachment to one of a vehicle body or the closure member and to a distal end on an opposite side of the gearbox. Extensible member is configured to move between retracted and extended positions in response to rotation of the driven shaft. A contamination cover enshrouds the extensible member between the gearbox and the distal end of the extensible member. Contamination cover moves between an axially extended state and an axially retracted state while the extensible member moves between the respective retracted position and the extended position.
Abstract:
In a door hinge device for the vehicle, in a vehicle without a B pillar, a hinge slider connected to a hinge portion of a door slides and moves in an external diagonal direction of a vehicle body along upper and lower rails by a driving torque of a motor inside a case, securing a rotation trajectory of the door, and then a striker fixed to the hinge slider is restrained by a latch portion fixed to the case to fix the slide movement position of the hinge slider, ensuring stability of the opening/closing operation of the door.
Abstract:
A power strut for raising and lowering a liftgate of an automotive vehicle includes an outer housing tube carrying a first attachment element for attaching the power strut to a vehicle. A spindle bearing an outer thread is rotatable relative to the outer housing tube via an electric motor. The spindle is axially stationary relative to the outer housing tube. A spindle nut having an inner thread meshing with the outer thread of the spindle is displaceable along the longitudinal axis. A nut tube is rigidly connected to the spindle nut and surrounds the spindle. A second attachment element is located opposite the first attachment element. The first attachment element has a first snap structure that is complementary to a second snap structure formed on the outer housing tube. The first and second snap structures non-rotatably secure the first attachment element to the outer housing tube.
Abstract:
This device for actuating a tip-up or sectional door comprises an elongated frame structure supporting a linearly movable member driven through a worm screw or a chain connected to the door to be driven, and secured at two upper points of which one is located at one end of the frame structure. This one end is secured to a fixed support formed with a vertical notch of which the bottom edge has a groove formed therein, the upper edge of this notch being limited by a surface located at a predetermined distance from the groove bottom. The frame structure comprises a support surface, for example in the form of a pin, and a locking surface, for example in the form of another pin, located at a distance from the first pin which corresponds to the predetermined distance. This frame structure can be fitted by a single person by anchoring the lower pin of the support and then raising the frame structure to a substantially horizontal position, so as to lock automatically the device in its operative position.
Abstract:
Electromechanical operating device for a slidingly movable door, which device comprises a motor driving a worm on which is mounted a nut connected to the door which is is to be moved, said nut being secured in respect of rotation by a slide guide having a step at the point corresponding to the end of the stroke of the door. This step allows a certain rotation of the nut and constitutes a stop preventing the rearward displacement of the nut when the latter is acted on by means of the door.The nut is composed of two parts axially fastened to one another and mounted for rotation one about the other, these parts being so shaped as to ensure that they will be fastened together in respect of rotation with considerable angular play.The aim of the device is to prevent untimely unlocking of the closed door through the elastic torsional cocking of the worm.
Abstract:
A door closer is described in which transmission characteristics which change in dependence on the closing angle can be realized either by two pistons disposed coaxially within one another and displaceable relative to one another, or by eccentric toothed elements.
Abstract:
A tubular first housing (10), a motor part (30) that is provided in the first housing (10), and an end damper (38) and a damper member (63), one of which is provided on each of both ends in an axial direction of the motor part (30) and absorbs vibration are provided, wherein the motor part (30) is supported in a floating state by the first housing (10) via the end damper (38) and the damper member (63).
Abstract:
An adjustable device, in particular for a sliding door gear, comprising a housing (1) with a slider (2) movable along vertical axis of the housing (1) and provided with a screw (3) and a nut (4), characterized in that the housing (1) has a shape enabling its mounting inside a cylindrical recess (5) shaped in a base plate (6), preferably a sliding door wing, and in that the screw (3) is movable along vertical axis of the slider (2) and works with the nut (4) immovably mounted in the slider (2).
Abstract:
An operator device for moving the leaf of a swing gate, comprises an outer tubular body (10), a mobile stem (12) inserted telescopically in the outer tubular body (10) and a motor apparatus (14) able to move said mobile stem. In the outer tubular body (16) there is a longitudinal slot (24) at least near one end, engaged by a end-stroke element (30) comprising a stop element (32) inside the outer tubular body (10). The mobile stem (12) comprises a radial abutment boss (40) suitable to axially engage the stop element (32) so as to stop the mobile stem, the end- stroke element (30) being translatable along the longitudinal slot (24) so as to be fixed in a desired axial position to define a limit stop position of the operator device.
Abstract:
Un dispositif d'actionnement à écrou (17) et vis réversible (3) est relié par un accouplement (12, 13) à une porte coulissante, la vis (3) étant elle-même reliée à un moteur. Un chariot (11) mobile le long de la vis comprend un verrou (16, 22, 28, 24) pour verrouiller automatiquement ce chariot lorsque l'écrou (17) atteint une extrémité de sa course et pour le déverrouiller automatiquement lorsque la vis est mise en mouvement en sens contraire. Le verrou (16, 22, 28, 24) est mobile par rapport à l'écrou et est sollicité vers une position de verrouillage par un ressort hélicoïdal (29) travaillant à l'enroulement. Un moyen de déverrouillage manuel comprend une plaquette (37) mobile autour d'un axe (40), de façon à aligner le doigt de verrouillage (22) et son galet (28) avec une glissière (23) à l'encontre du ressort (29), ce déverrouillage étant possible même lorsque la vis force dans le sens de la fermeture pour une raison de sécurité, le déverrouillage n'étant alors validé que lorsque la vis est relâchée. Application à une porte de voiture de transport en commun.