Abstract:
A vehicle includes a chassis, a door track, a door operatively connected to the door track and adapted to move between a closed position and an open position, and a hinge assembly coupled to the door. The hinge assembly is movably coupled to the door track and includes a first bracket coupled to the door, a second bracket coupled to the first bracket, and a transport assembly coupled to the second bracket and adapted to move along the door track as the door moves between the open and closed positions. The transport assembly includes a coupling member for releasably coupling the second bracket to the transport assembly. Upon movement of the second bracket from the first position to the second position, the door moves to an extended open position with respect to the door track.
Abstract:
Provided is a small plug door device capable of performing an opening/closing operation and a plugging operation with a door drive mechanism for causing a force in a vehicle front-rear direction to act on a door, and further applicable also to a one-panel sliding door. A slide base 12 is installed slidably in a vehicle width direction relative to a fixed base 11. A door drive mechanism 13 for moving one door 104 in a vehicle front-rear direction via a connecting portion 19 has a drive portion 13a including an electric motor 21, a drive wheel member 13b, a follower wheel member 13c, and an endless member 13d, and is installed on the slide base 12. A guide portion 15 guides a shaft portion 14 provided on the connecting portion 19 so as to move the shaft portion 14 in a vehicle width direction. In a double-speed rail 16 in which a pinion 16c is disposed between two racks (16a, 16b), one rack 16b is connected to the slide base 12, the other rack 16a is connected to the door 104 side, and the pinion 16c is connected to the connecting portion 19.
Abstract:
A sliding door installation includes a roller running track and at least one roller carriage supported to be displaceable in the roller running track, at which carriage a sliding door is attached. A closing device is provided with an elastic traction means, wherein a first end of the elastic traction means is stationarily attached with regard to the roller running track, and a second end of the elastic traction means is attached to the at least one roller carriage for changing the tensile stress in the elastic traction means during a movement of the roller carriage in the roller running track.
Abstract:
A system of ejecting a sliding door of a closet, comprising a plurality of ejection assemblies and a connecting mechanism, which connects one assembly to the other. Each ejection assembly comprises a rail and a slidable member configured to slide along the rail, where the rail engages with a frame of the closet. The connecting mechanism allows synchronizing the ejection force applied upon the door at different locations of the door, by connecting the ejection assemblies through the connecting mechanism. This configuration allows ejecting and retrieving of the door outwardly and inwardly by sliding the slidable member of each assembly along the rail.
Abstract:
The present invention relates to a refrigerator and/or freezer with a door or flap for closing the appliance interior, with a hinge, by means of which the door or flap can be swivelled relative to the body of the appliance, wherein the hinge includes means for producing a closing force acting in closing direction of the door or flap, and with a damper which at least over a part of the closing movement of the door or flap applies a force directed against the closing movement of the door or flap, wherein the means for producing a closing force include an eccentric and means which exert a force that acts on the eccentric and is dependent on the opening angle of the door or flap.
Abstract:
A retraction mechanism includes a striker provided in either a fixed body or a movable body which is movably supported by the fixed body; a catcher provided in the other body and engaging the striker at a predetermined moved position of the movable body to be capable of engaging and disengaging; and an urging device enabling to accumulate urging forces in a moving process of the movable body. The retraction mechanism retracts the movable body by the urging forces accumulated in the urging device in a state wherein the striker and the catcher are engaged. The retraction mechanism includes a guide device controlling a relative position between the striker and the catcher, and when the striker and the catcher change the relative position, the change thereof is absorbed by the guide device, so that the engagement becomes possible.
Abstract:
Drive mechanism for a furniture part, in particular a drawer or door, which is mounted moveably in or on an item of furniture, having a drive apparatus which is guided moveably with respect to a base and is loaded by a force accumulator, having a dampening apparatus and a pulling-in apparatus, wherein the drive apparatus has a pushing-out element for moving the furniture part from a closed end position into an open position and a locking element which is guided by a preferably heart-shaped guide track which is formed on the base, and wherein the damping apparatus, the force accumulator which loads the drive apparatus and the pulling-in apparatus are connected in series.
Abstract:
In a damping mechanism for a pivot door arranged in a door frame, comprising a door fixture arranged in or on the door panel, a frame fixture arranged in or on the door frame, a damper arrangement arranged in the door fixture or the frame fixture and a damper arrangement counter part mounted in the frame fixture or in the door fixture, a damper arrangement with a brake catcher provided with a damper member includes a spring element which pulls the brake catcher into the fixture and the damper arrangement counter part includes at least one trigger element which is abutted by the brake catcher during closing of the door, so that the damper arrangement begins to dampen the pivot movement of the door as soon as a fixture part of the door comes into contact with a fixture part of the door frame.
Abstract:
A clutch mechanism of the present power device comprises a fixed gear member, a moving gear member engaged with the fixed gear member when moving to a clutch connecting position, an armature for moving the moving gear member to the clutch connecting position when rotated relatively to the moving gear member, an electromagnetic coil unit for applying a brake resistance to the armature, and a clutch holding surface for abutting against the moving gear member when the electromagnetic coil unit is turned off in the clutch connecting state and for holding the moving gear member at a brake-clutch connecting position. The abutment of the moving gear member against the clutch holding surface is released by rotating the moving gear member relatively to the armature in a state in which the electromagnetic coil unit is operated.
Abstract:
A kit (1) for assembling a variety of different door configurations adapted to be installed within a predetermined range of dimensions, onto a specific door opening (7) defined within a fixed structure (9) and contained within said predetermined range of dimensions. The kit (1) includes first components (11) for assembling a specific door leaf (13) shaped and sized for substantially covering the specific door opening (7). The kit (1) also includes second components (15) for mounting onto the fixed structure (9) of the specific door opening (7), the second components (15) including components (15) for assembling a track system (17) along which the specific door leaf (13) is configured to travel. The kit (1) also includes third components (19) for assembling a counterbalancing system (21) operatively connectable between the specific door leaf (13) and the fixed structure (9) for counterbalancing the specific door leaf (13) with respect to said fixed structure (9). The components (11,15,19) of the kit (1) are configured to be selectively adjustable along given increments for assembling a specific door assembly (23) representative of dimensions (25,27) of the specific door opening (7), and the components (11,15,19) of the kit (1) are further configured to be provided with adjustment means (29), and corresponding marking systems (31) representative of given increments, for selectively adjusting parameters of the components (11,15,19) of the kit (1) in response to the specific door leaf (13) being used for assembling the specific door assembly (23).