Abstract:
A hinged system includes a preassembled hinge module for pivotally coupling a first component to a second component. The preassembled hinge module includes a shaft, a torque element frictionally engaging the shaft, and a housing. The housing includes a cover, a side wall, and a rear wall that define an interior space enclosed within the housing. The interior space receives the torque element inside the housing. The cover defines a first aperture, and the rear wall defines a second aperture, the first aperture and the second aperture aligned with a pivot axis of the shaft. The shaft extends through at least the first aperture, the interior space, and the second aperture. The shaft is separate from, and configured to be mounted to, the first component. The housing is separate from, and configured to be mounted to, the second component.
Abstract:
A control unit for establishing a functional connection between two gearing components comprises at least one control element, which can be moved in order to switch the control unit between different switching states, wherein the at least one control element is configured to provide a retaining force between the gearing components in a first switching state, and to allow movement of the gearing components in relation to one another in a second switching state. An actuator is used to move the at least one control element. A control mechanism controls the actuator. It is provided thereby that the control mechanism is configured to activate the actuator to switch the control unit from the first switching state to the second switching state, in order to move the at least one control element to reduce the retaining force (FH) based on a predetermined delay function (VF).
Abstract:
A refrigerator may include a partition wall that isolate a first storage compartment from a second storage compartment. A third storage compartment is provided in the partition wall to be recessed downwards from an upper surface of the partition wall. An opening is formed on the upper surface to allow storage objects to be placed into the storage space. A door covers the opening of the third storage compartment and is configured to be moved in a direction parallel to the upper surface of the partition wall to selectively open or close the opening. An elastic-force assembly may apply a restoring force to the door when the door is moved to open the third storage compartment. A slide assembly that guides movement of the door may include a speed dampener that reduces a speed of the door when the door is moved to close the third storage compartment.
Abstract:
A casement window operator includes a linear input mechanism configured to be mounted to a stationary frame of a casement window, a linear to rotary motion converter operably coupled to an output of the linear input mechanism, a gear reducer operably coupled to an output of the rotary motion converter, and a sash arm operably coupled to an output of the gear reducer to rotate in conjunction with the output of the gear reducer. The sash arm is configured to extend from the stationary frame of the casement window to a rotatable window sash of the casement window.
Abstract:
In at least some implementations, a cable control system includes a spool on which a portion of a cable may be taken up and released, an input shaft coupled to the spool, and a motor coupled to the input shaft to drive the input shaft and spool in a first direction to take up cable on the spool and in a second direction to release cable from the spool. The control system also has two clutches that allow rotation of the spool without corresponding rotation of the motor. Each clutch may have a first member coupled to the input shaft and a second member coupled to the spool and relative rotation between the first and second members of the clutch allows rotation of the spool relative to the motor or input shaft.
Abstract:
A variable rate friction damper has variable torque dampening resistance without the use of oil. The variable rate friction damper uses interference friction to generate variable torque dampening resistance depending on the rotational position of the damper.
Abstract:
A hinge assembly for a storage compartment includes a first component and a second component coupled to the first component. The second component is movable between a first position and a second position relative to the first component. A damper device includes a housing assembly supported by the first component and a finger attached to the second component such that the finger is movable with the second component between the first and second positions. The finger and the housing assembly are spaced from each other when the second component is in the first position, and the finger slidingly engages the housing assembly as the second component moves to the second position such that frictional engagement between the finger and the housing assembly dampens movement of the second component relative to the first component.
Abstract:
A hinge on a cover for a container, has a pivot axis and includes at least one first member fixed against rotation and at least one second member rotatable about the axis, which first and second members are arranged coaxially along the axis. A third member is arranged coaxial with the first and second members. A damper element is provided between the first and the third members in order to dampen the relative rate of rotation between the members. A first spring is arranged between the second and the third tubular members, which first spring is connected to the respective second and third members so that relative rotation between the tubular members is permitted in a first direction, when the cover is pivoted towards a first position, and prevented in a second direction, when the cover is pivoted towards a second position. A container provided with such a hinge is described.
Abstract:
An item of furniture includes a furniture body, a furniture part which is displaceably received in or on the furniture body, and an ejection device having at least one ejection element for displacing the movable furniture part from a closed position into a first open position. At least one lockable drive device is provided for driving the at least one ejection element. A means is provided for displacing the at least one ejection element beyond the first open position.
Abstract:
A locking device for locking a displaceable motor vehicle part which is lockable by the means of the locking device within a displacement range in a respective rest position reached by displacement is provided. The locking device comprising a braking device with at least two braking elements which interacts in a braking manner in a respective rest position of the motor vehicle part in order to lock the motor vehicle part. An actuator is assigned to the locking device, which is optionally combinable with the braking device and with which a displacement movement of the motor vehicle part is brakable for locking the motor vehicle part. The actuator is operatively connected independently on the braking device with a component which can be moved by displacement of a motor vehicle part so that a displacement movement of the displaceable motor vehicle part is brakable by the action of an actuator on the component.