Abstract:
Door stops are generally discussed herein for stopping door knobs or other door hardware from slamming against a wall with particular discussions on door stops having dampening means. Aspects of the door stop assemblies discussed herein include the use of a helical coil spring spacer for delimiting movement of a door and either a pliable insert or an outer sheath or both for dampening the spring when the same is impacted. A combination magnet and magnetically attractable plate or two magnets with opposite magnetic poles may be used to temporary secure a door in a fixed position.
Abstract:
A window lifter assembly is provided including a flexible pulling means for transmitting a driving force produced by a window lifter drive to a window pane to be adjusted, having a carrier, which is to be coupled to flexible pulling means and to which the window pane is to be fixed so that the window pane is connected to the flexible pulling means via the carrier. Additionally, the window lifter assembly includes guiding means being spaced from the carrier for guiding the window pane along an adjustment path defined by the guiding means. The window pane is moved together with the carrier in said adjustment path if a drive force is applied to the window pane without the carrier engaging in a guiding device that extends along the adjustment path in addition to the connection of the carrier to the flexible pulling means.
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:
A roller door system includes a roller assembly configured to mount directly to a panel and move along a complementary upper guide. In particular, the roller assembly can be coupled to a coupling member embedded in the panel. The roller assembly, when coupled with the panel, can provide a smooth gliding motion for the panel.
Abstract:
A door hinge comprises a first hinge element fastenable to a door frame and a second hinge element fastenable to a door leaf and includes first and second hinge blade. A first pivot axis is connected, when the door hinge is in a first operating condition, to first and second hinge elements such that the second hinge blade is pivotable relative to the first hinge element, in a first pivot direction, for unblocking a door aperture. The first pivot axis is decoupled from the first or the second hinge element when the door hinge is in a second operating condition. A second pivot axis is connected to the first and second hinge elements such that said first and second hinge elements are pivotable relative to one another, in a second pivot direction which is opposed to the first pivot direction, for unblocking the door aperture.
Abstract:
A roller door system includes one or more sets of rollers configured to mount to a panel frame member on an upper end of a panel, and move through a complementary upper guide. A lower side of the panel frame can also be guided through one or more bottom tracks. These components, when coupled with the resin panel, can provide the ability to provide a smooth gliding motion for the resin panel door. In addition, the frame in which the panel is mounted can be configured with one or more components to accommodate the unique expansion and contraction properties of resin materials, and thus allow a stable, long term mounting solution. The upper guide and the lower track can also be configured with one or more components or mechanisms for pitch adjustment, as well as to adjust for uneven or irregular mounting surfaces.
Abstract:
A swing gate operator for automatically and manually operating the gate opener for movably controlling the gate between an opened position and closed position, wherein the swing gate operator includes a gear motor being housed in a casing, a clutch device operatively coupling with an output end of the gear motor, and an operation arm having an outer sleeve outwardly extending from the casing. The operation arm includes at least one extendable shaft operatively coupling with the clutch device for slidably extending within the outer sleeve to operatively moving the gate between an opened position and a closed position.
Abstract:
A roller door system includes one or more sets of rollers configured to mount to a panel frame member on an upper end of a panel, and move through a complementary upper guide. A lower side of the panel frame can also be guided through one or more bottom tracks. These components, when coupled with the resin panel, can provide the ability to provide a smooth gliding motion for the resin panel door. In addition, the frame in which the panel is mounted can be configured with one or more components to accommodate the unique expansion and contraction properties of resin materials, and thus allow a stable, long term mounting solution. The upper guide and the lower track can also be configured with one or more components or mechanisms for pitch adjustment, as well as to adjust for uneven or irregular mounting surfaces.
Abstract:
A sliding panel structure. The sliding panel structure includes a frame having an upper support track and a lower guide rail. At least one sliding panel is connected between the upper support track and the lower guide rail. The sliding panel includes a sliding panel pivot axis and an extension for riding in the lower guide rail. The extension prevents undesired pivoting of the sliding panel about the sliding panel pivot axis. A mutual attraction device is connected between the sliding panel and the frame with a first mutual attraction part connected to the frame and the second mutual attraction part connected to the sliding panel. A fulcrum is utilized for tilting the sliding panel whenever the first mutual attraction part engages the second mutual attraction part. The tilting of the sliding panel causes the extension to disengage the lower guide rail which allows the sliding panel to pivot about the sliding panel pivot axis. In a preferred embodiment the sliding panel structure includes at least one stationary pivoting panel. In another preferred embodiment the sliding panel is a plurality of sliding panels. In another preferred embodiment the sliding panel is a sliding door. In another preferred embodiment the sliding panel is a sliding window. In another preferred embodiment the mutual attraction device is utilizes magnetic force so that a magnet connected to the sliding panel is attracted to a magnet connected to the frame.
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.