Patent classifications
E05Y2600/622
Furniture drive for moving a movably mounted furniture part
A furniture drive for moving a movably mounted furniture part relative to a furniture body includes a drive unit to be mounted on or in the furniture body, and at least one movably mounted actuating part for moving the movable furniture part. A mounting stop that can be applied to the furniture body is provided on the drive unit.
Hinged assembly with fail-safe hinge pin
A pin assembly is provided with an axial centerline. This pin assembly includes an outer pin, an inner pin, a first collar and a second collar. The outer pin extends axially along the axial centerline between an outer pin first end and an outer pin second end. The inner pin extends axially along the axial centerline within a bore of the outer pin. The first collar circumscribes the outer pin. The first collar is connected to the outer pin and the inner pin at the outer pin first end. The second collar circumscribes the outer pin. The second collar is connected to the outer pin and the inner pin at the outer pin second end.
Cover Element For a Hinge and Corresponding Hinge
The invention relates to a cover element for a hinge, which comprises at least one hinge area to be clad, in which blind hole-like recesses are formed, wherein the cover element comprises a plane base body for the outer cladding of the hinge area. The invention further relates to a hinge, in particular for a door, comprising at least one hinge axis element, a first hinge part and a second hinge part, which are connected to one another in a hinge-like manner via the at least one hinge axis element and at least one cover element with a plane base body for the outer cladding of a respective hinge area, wherein blind hole-Like recesses are firmed in the hinge area of the respective hinge part to be clad.
HINGE ASSEMBLY FOR AN APPLIANCE DOOR
A hinge assembly includes a first hinge element having a hinge pin with upper and lower portions and an engagement portion outwardly extending from the hinge pin. The engagement portion of the first hinge element includes a lower surface having an upwardly angled portion and an abutment surface. A second hinge element includes a body portion surrounding a hollow interior portion and further includes a contoured upper rim having a downwardly angled portion and an abutment surface. The lower portion of the hinge pin of the first hinge element is slideably received in the hollow interior portion of the second hinge element. The first hinge element rotates between a first position, wherein the abutment surface of the first hinge element abuts the abutment surface of the second hinge element, and a second position, wherein the abutment surfaces of the first and second hinge elements are spaced-apart from one another.
Vehicle Door Opening and Closing Apparatus
A vehicle includes a body having a door frame defining a door aperture, a vehicle door, a rail mounted on the body, a roller unit mounted on the vehicle door and configured to move along the rail and allow the vehicle door to open and close in a sliding mode and a swing mode, a center rail extending from an edge of the door aperture, a center roller unit including rollers configured to be guided along the center rail, a roller bracket having the rollers mounted thereon, a roller-side hinge element connected to the roller bracket, and a door-side hinge element rotatably connected to the roller-side hinge element by a hinge pin, a door-side docking unit releasably connecting the door-side hinge element to the vehicle door, and a frame-side docking unit releasably connecting the roller-side hinge element to the door frame.
Vehicle Door Opening and Closing Apparatus
A vehicle includes a vehicle body having a door frame defining a door aperture, a vehicle door, a rail mounted on the vehicle body, a roller unit mounted on the vehicle door and configured to move along the rail and allow the vehicle door to open and close in a sliding mode and a swing mode, a center rail extending from an edge of the door aperture, and a center roller unit including rollers configured to be guided along the center rail, a roller bracket having the rollers mounted thereon, a roller-side hinge element connected to the roller bracket, and a door-side hinge element rotatably connected to the roller-side hinge element, wherein the roller-side hinge element and the door-side hinge element are releasably connected.
DOOR HINGE WITH INTEGRATED DOOR CHECK
A vehicle door hinge with integrated door check. The vehicle door hinge includes a vehicle body bracket securable to a vehicle body, a vehicle door bracket securable to a vehicle door, a hinge pin providing a rotational connection between the vehicle body bracket and the vehicle door bracket, a door check plate having a bearing engagement surface, and a resiliently compressible bias positioned to axially bias the bearing engagement surface against bearings of the hinge pin.
HINGED ASSEMBLY WITH FAIL-SAFE HINGE PIN
A pin assembly is provided with an axial centerline. This pin assembly includes an outer pin, an inner pin, a first collar and a second collar. The outer pin extends axially along the axial centerline between an outer pin first end and an outer pin second end. The inner pin extends axially along the axial centerline within a bore of the outer pin. The first collar circumscribes the outer pin. The first collar is connected to the outer pin and the inner pin at the outer pin first end. The second collar circumscribes the outer pin. The second collar is connected to the outer pin and the inner pin at the outer pin second end.
GATE ACTUATOR ASSEMBLY WITH ALIGNMENT ADJUSTMENT MECHANISM
The present technology generally provides swing gate actuator assemblies. In particular, some embodiments of the present technology provide a fastener configured to secure an arm of the actuator assembly to a swing gate panel. The fastener can be configured to permit a longitudinal axis of the arm to pivot about a pivot portion on the fastener, thereby reducing the likelihood of gate malfunction in response to a misalignment event.
Symmetrical and Reversible-Clutch Mortise Lock
The present invention relates to a symmetrical and reversible-clutch mortise lock comprising a central follower, a pair of symmetrical lateral followers, each one located on one side of the central follower to be activated by square bars of handles, a spacer which makes the movement of the two lateral followers independent and a motor, which connects to an actuation lever and which is activated when an access code is validated. The lock further comprises a clutch housed and guided in an accumulator arm able to move linearly to be housed in both lateral followers such that the corresponding lateral follower, when activated by the motion of the door handle, pushes the clutch until it makes contact with the central follower and activates the latch of the lock.