Abstract:
The invention relates to an adjusting device for moveably mounting a furniture part onto a furniture body, comprising an adjusting arm lever. A first lever of the adjusting arm lever can be moved with respect to a second lever of the adjusting arm lever from a mounted position into an operating position. The first lever can be locked in the locked position with respect to the second lever by means of an automatic locking device.
Abstract:
An arm for connecting a mounting foot to a motor in a door closer system having two segments between which a junction is formed that allows the segments low-friction coaxially-restricted extension and retraction motions relative to each other. A motor shaft connection at the attachment end of the first arm segment transmits rotational force from a shaft of a door closer motor, and a mounting foot at the opposite end of the second arm segment communicates the rotational force from the first arm segment to the mounting foot.
Abstract:
A closet door support mechanism that provides rotation and translation of a door used to close the entry to a room such as a closet is disclosed. An example of the mechanism includes a first track that is generally straight and is connected to a first track retraction section by a curved section. The track sections are mounted a distance from the floor, and allow movement of a closet door through translation and rotation to close the entry of the closet.
Abstract:
A main support frame is formed from sections of a plastic extrusion and has opposite side portions with peripheral recesses receiving an inner sash unit and outer sash unit each having a frame formed from sections of a plastic extrusion and supporting an insulated glass window unit. Hinges support the dual sash units for pivotal movement between open and closed positions, and gear connected telescopic link members connect the main frame to the sash frames for simultaneous movement. A lock system includes a handle on the inner sash unit for moving straps with studs on the sash frames through a connector mechanism mounted on the main frame for simultaneously locking and releasing both sash units and for releasing only the inner sash unit. A screen and/or mini-blind may be supported between the sash units, and the window system with dual sash units may be constructed in various forms.
Abstract:
A door operating system or door opening and closing apparatus comprising at least one motive source, a linkage assembly and a door. Preferred door operating systems will include two linkage assemblies, two doors and two motive sources, one for each door. Each motive source is preferably attached to an interior facing surface of a frame of a structure and the door is pivotally attached to an exterior facing surface of the frame of a structure. Each linkage assembly operatively connects the respective motive source to the respective door. By having the motive source attached to the interior facing surface of the frame, doors of the operating system can preferably be opened the full width of the frame opening to maximize available vehicle clearance.
Abstract:
A device lor the transfer of a torque from an output shaft of a drive mounted on the body of a motor vehicle with a rotational axis of the output shaft and a hinge axis arranged flush with one another. The device includes a drive lever rotationaily connected to the output shaft of the drive, a connecting member on the drive lever extending from a connecting region of the drive lever. The connecting member includes a sliding block and an adapter part that is connected to a first half of a hinge and is provided with a journal. The journal rotates directly in, but independently of, the sliding block.
Abstract:
An actuating mechanism for moving a highly movable flap of a piece of furniture includes a main body intended for attachment to a furniture body. An actuating arm for moving the flap has one end mounted on a bearing axis of the main body and the other end mounted on a bearing axis of a fitting part intended for attachment to the flap. An additional control arm for moving the flap is also provided. During the movement of the control arm, the effective lever arm length of the control arm can be varied, and the effective lever arm length of the control arm is shortened when opening the actuating arm.
Abstract:
The lifting device comprises a biased slide shoe adapted to be slidable with respect to a member of an openable structure, a lifting arm having two ends, one end adapted to be pivotally connected with a member of the structure and the other end associated with said slide shoe, and a braking device comprising at least one brake shoe slidable on a respective brake face of said lifting device, said braking device modulating the force resulting from the bias on said biased slide shoe. An adjusting device is adapted to adjust said progressive modulation of said force resulting from the bias on said biased slide shoe, and comprises a manipulation member, which when manipulated by a user activates said adjusting device to adjust a brake force of said brake shoe exerted on said brake face in a given position of said brake shoe.
Abstract:
A vehicle sliding door mechanism is arranged to move a door from a door opening provided in a vehicle side body structure from a closed position to an open position. The sliding door mechanism comprises an upper slide rail and a lower slide rail fixed to the vehicle side body structure. An upper slider is associated with the upper rail and is movable along the upper rail, and a lower slider is associated with the lower rail and is movable along the lower rail. An upper link assembly operatively connected to the vehicle door and the upper slider, and a lower link assembly is operatively connected to the vehicle door and the lower slider. At least one link assembly of the upper link assembly and lower link assembly is configured to control a moment of force about a pivot axis while moving the vehicle door between the closed position and the open position. The moment of force is one of an opening moment and a closing moment and is dependent on a position of the vehicle door relative to the vehicle side body structure. The at least one link assembly is configured such that the moment of force is substantially zero between when the vehicle door moves between the closed position and the open position.
Abstract:
An actuating mechanism for moving a highly movable flap of a piece of furniture includes a main body intended for attachment to a furniture body. An actuating arm for moving the flap is mounted at one end on a bearing axis of the main body and at the other end on a bearing axis of a fitting part intended for attachment to the flap. An additional control arm for moving the flap is provided, wherein during the movement of the control arm the effective lever arm length of the control arm can be varied, and the effective lever arm length of the control arm is shortened when opening the actuating arm.