Abstract:
The present disclosure provides a lid lock for a refueling or charging port having: a lifting shaft; a worm wheel; and a worm shaft. The worm wheel and the worm shaft are configured such that the worm shaft rotates in a first direction to drive the worm wheel to rotate, thereby driving the lifting shaft to perform a descending movement in an axial direction of the lifting shaft and then perform a rotational movement to expose a refueling or charging port for supplying fuel or electricity. In some examples, the worm shaft rotates in a second direction to drive the worm wheel to rotate, thereby driving the lifting shaft to perform a rotational movement and then perform an ascending movement in the axial direction of the lifting shaft to close the refueling or charging port. The present disclosure provides an internally retractable lid lock for a refueling or charging port. An internal space between an outer sheet metal of a vehicle and a refueling and charging port is fully utilized, so that a lid can be opened in the internal space, which not only is not limited by an external environment, but also reduces the possibility of damaging parts.
Abstract:
A drive system for a vehicle closure includes a drive unit having a first coupler supported for rotation about a first longitudinal axis. The first coupler defines a receptacle. A second coupler has a first side and a second side configured to engage with a hinge component of a vehicle. A driveshaft extends between the first and second couplers at an angled orientation relative to the first and second axes. The driveshaft has a first end connected to the first coupler and a second end connected to the first side of the second coupler.
Abstract:
The invention relates to a device (1) for detecting the position of an automated door, and a method of installation thereof, wherein the device comprises a connector (4, 20) adapted to couple the device to a door drive shaft (28, 32) moving an automated door such as a sectional overhead door, an encoder means (5) coupled to the connector (4, 20) and generating a position signal based on the movement of the door drive shaft (28, 32), which position signal is indicative of the door position, communication means connected to the encoder means (5) for transferring the position signal to a controlling device (34), and mounting means (2, 3) for mounting the device.
Abstract:
A novel method for preventing material contained inside a collection bin from being blown out of the collection bin is provided. The collection bin includes an automated cover system. The automated cover system comprises an actuator system that is actuated in response to movement of a specific item, such as the fork assembly and/or the collection bin. Upon actuation, the actuator system of the automated cover system automatically moves a cover.
Abstract:
A motor vehicle window lifter is provided with a twistable or bendable guide rail on which a driver to be coupled with a window pane is shiftably mounted and which includes fastening points which are connectable with fastening receptacles of a carrier element. Between the fastening receptacles of the carrier element at least one supporting point is provided. When bracing the fastening points of the guide rail with the fastening receptacles of the carrier element, the guide rail supports on the supporting point and twisting of the initially straight guide rail with a specified degree of twisting and/or bending of the guide rail with a specified bending radius is effected.
Abstract:
In a guide pulley support structure of a window regulator in which a guide pulley is supported by a holed shaft member and a guide pulley supporting member, a guide pulley support structure is obtained which makes it possible to firmly couple together the guide pulley supporting member and the holed shaft member. A groove is formed on an end surface of the holed shaft member, wherein the holed shaft member and the guide pulley supporting member are coupled together by inserting a connecting edge, which is formed by plastically deforming an inner peripheral edge of a hole formed in the guide pulley supporting member, into the groove.
Abstract:
A height adjustment device for a transit shaft and arm assembly that enables height adjustments without significant disassembly of a transit door. An additional advantage is that the device does not require the use of shims, spacers or adjustment rings to adjust the height of the shaft and arm assemblies. Rotation of a nut threaded on the shaft allows for the adjustment of how much of the shaft hangs below a support member and a bearing. A surface of the nut bears on the bearing and the attached shaft and arm assembly hangs from the bearing and the support member the bearing is attached to. This arrangement allows the arm assembly to pivot along the longitudinal axis of the shaft. This arrangement also allows the height of the shaft and arm assembly to change with changes in position of the nut by threading the nut along the shaft.
Abstract:
Synchronization apparatus (6) having at least two actuating apparatuses (100, 200) for moving a movable furniture part (3) and having a synchronization rod (5) for synchronizing the movement of the at least two actuating apparatuses (100, 200), wherein a first end region of the synchronization rod (5) can be connected to a first rotary part (102) of the first actuating apparatus (100), and a second end region of the synchronization rod (5) can be connected to a second rotary part (202) of the second actuating apparatus (200), characterized in that at least one rotary part (202) of the actuating apparatuses (100, 200) has a sprung contact-pressure part (207) which bears against the end face of the synchronization rod (5).
Abstract:
A mechanism for installing a door or other similar closure device with rotary and translational motion, of the type comprising the following elements to be associated with a leaf first pivoting means, which form a first vertical axis (11) for the pivoting of the leaf (12), in a central region thereof, to means for translational motion arranged so as to slide in a corresponding guide (13) associated with the upper stringer (14) of the frame (15) of the door; second pivoting means, whose axis is parallel with respect to the axis of the first pivoting means, for the articulation of two arms (16, 17), a first upper arm (16) and a second lower arm (17), which are both pivoted by means of a first end (21, 22) thereof to the frame (15) of the door or window proximate to a jamb (18) so as to form a second rotation axis (20), third pivoting means, which are formed by the second ends (23, 24) of the arms (16, 17), which are hinged to the leaf (12) so as to form a third rotation axis (26) that passes through the leaf (12) parallel to the first and second axes and in an intermediate position between the two first and second axes when the leaf is in the closed configuration. The second pivoting means comprise a pivot (27) arranged in a compartment (28) formed within the jamb (18), the pivot (27) joining the first ends (21, 22) of the arms (16, 17) and thus causing their joint rotation.The mechanism according to the invention facilitates and improves the installation of doors with rotary and translational motion.
Abstract:
A retrofit conversion kit for facilitating the conversion of a door operating apparatus conventionally mounted above the door, to a position mounted and anchored underground for operating a swinging door therefrom. The conversion to an anchored underground position is facilitated by incorporating positional adjustment mechanisms covering any or all possible adjustment dimensions.