Abstract:
A sliding power lift and locking assembly for lifting and locking an object includes a motor, a first drive shaft, a first drive block assembly, a first drive housing, and a link arm. The first drive shaft has a body and a cylindrical axis and is rotationally driven by the motor. The first drive block assembly includes an aperture configured to engage the body of the first drive shaft, a latch dog with a first slot configured to engage a dog catch pin associated with the object, and a slider. A portion of the first drive housing and a portion of the first drive block assembly are provided in a track of the first drive housing, and the track of the first drive housing is configured such that the first drive block assembly is configured to move in a path relative to the first drive housing. The link arm includes a first end and second end. The first end of the link arm is configured to move with the slider of the first drive block assembly, and the second end of the link arm is configured to connect to the object.
Abstract:
A self-closing entry system includes an entrance, a base support member located at one side of the entrance, a bearing arrangement attached to the base support member, a gate surface member pivotably mounted to the base support member, a bumper assembly defined by at least one bumper frame member pivotably fastened to the gate surface member at a gate fulcrum, at least one bumper contact element fastened to the at least one bumper frame member, and wherein the at least one bumper contact element is capable of axial rotation about the at least one bumper frame member, a counter-balance assembly extending from the first bumper frame member to the second bumper frame member, and a means for latching the gate system, allowing the gate surface member to move in one direction upon activation of a latching control means.
Abstract:
A hold open rod is provided. The hold open rod includes an outer tube, a lock body connected to the outer tube, an inner tube, slidingly disposed within the outer tube and lock body, the inner tube having an outer surface, and a friction pad captured between the lock body and the outer surface of the inner tube. A method for damping movement of a telescoping rod is also provided. The method includes attaching the locking body to an outer tube, configuring the outer tube and the inner tube to move with respect to each other in a telescoping manner, fitting a damper between an outer diameter of an inner tube and a locking body, and fitting the damper to frictionally engage the outer diameter of the inner tube and the locking body.
Abstract:
In a sliding door with a door panel supported by a carriage disposed on a guide rail so as to foe movable between spaced door stops, the door stops include shock absorbers and the carriage has contact elements for contact with the shock absorbers. The shock absorbers further include return springs which are compressed by the engagement of the sliding door panel, the sliding door panel being lockable in its end positions by a locking arrangement for retaining it in an end position.
Abstract:
In accordance with exemplary embodiments, a magnetic decklid hold-open system is provided for a vehicle. The system comprises a decklid for a vehicle coupled to a body of the vehicle via a hinge strap. The hinge strap facilitates the decklid moving between a closed position and an open position, and a magnetic element coupled to the hinge strap magnetically retains the decklid in the open position.
Abstract:
A door is open and held by engaging a latch with a striker of a vehicle body. The door has a release actuator connected to the latch. The vehicle body includes a power drive and a control module. An operating unit instructs the control module to close the door. The control module instructs the release actuator to disengage the latch from the striker. After the control module instructs the power drive to start closing of the door, releasing of the release actuator is stopped by the control module at a door position determined by actual voltage of a power source.
Abstract:
A door stop for a sliding door includes rounded channel with a ball sliding into the rounded channel to hold a sliding door in place. The device of the present invention is smaller than conventional devices and, thus, minimize the hazard to horses getting lacerations from the larger sized conventional door holders. The device of the present invention is provided as a two-piece kit, the first piece fitting on the siding door and the second piece fitting on a wall, such that the first and second pieces fit together when the sliding door is closed, holding and/or stopping the door in place.
Abstract:
The invention relates to a piece of furniture with an actuating arrangement for a flap of the piece of furniture. An actuating arm arrangement includes a lever arrangement for moving the flap and a main spring that acts in the closing direction (SR) to hold the flap closed. The piece of furniture also has an ejecting device for ejecting the flap in the opening direction (OR) by overpressing the flap in the closing direction (SR). At least one support spring acts in the opening direction (OR) and is separate from the ejecting device, and supports the ejecting motion of the ejecting device. At least in an overpressed closed position (US), the spring forces (A, U) are together greater than the closing force (Z) which acts on the flap and which is provided by the main spring acting in the closing direction (SR).
Abstract:
A window lift arrangement with a lifter for a window pane, a door panel, positioning instruments for positioning the lifter relative to the door panel in an installation position for installation of the window pane, wherein the positioning instruments can assume a first and a second position, wherein the positioning instruments in the first position define the installation position and wherein the positioning instruments in the second position enable movement of the lifter for opening and closing the installed window pane.
Abstract:
A hinge including a first hinge member including a first magnetic element; and a second hinge member including a second magnetic element, wherein the first and second hinge members are hingedly mounted to each other. The first and second hinge members are substantially maintained in a retained position via magnetic force between the first and second magnetic elements.