Abstract:
A fenestration unit includes a frame corner key that includes a corner key fluid outlet and a cladding having an aperture for the corner key fluid outlet. The fenestration unit also includes a weep drainage system with a fluid path defined from the frame corner key, through the corner key fluid outlet, and through the aperture to drain from the fenestration unit.
Abstract:
A partition door including, a plurality of door slats, wherein each of the door slats are suspended from a track and extend vertically toward a floor. Each of the door slats are moveable in a generally horizontal direction. The partition door also includes a plurality of hinges, each hinge coupling adjacent door slats. The partition door further including a sound attenuating coating fixed to a first surface of at least one of the plurality of door slats.
Abstract:
A partition door including, a plurality of door slats, wherein each of the door slats are suspended from a track and extend vertically toward a floor. Each of the door slats are moveable in a generally horizontal direction. The partition door also includes a plurality of hinges, each hinge coupling adjacent door slats. The partition door further including a sound attenuating coating fixed to a first surface of at least one of the plurality of door slats.
Abstract:
A connecting means provides a connecting passage between a first compartment of a vehicle and a storage means located in a second compartment of the vehicle. The first and the second compartment are separated by a wall. A catering system for a vehicle includes the connecting means. A method provides a sealed connecting passage between a first compartment of a vehicle and a storage means located in second compartment of a vehicle. The connecting means includes a frame, a hatch arrangement for selectively closing and opening a frame aperture with a hatch cover and a bellows arrangement including a flexible bellows. The flexible bellows can be extended from the frame to a storage means located in the second compartment of the vehicle. A continuous passage defined by the flexible bellows and the frame provides a sealed connecting passage between the first compartment and the storage means.
Abstract:
Various apparatuses, methods and systems for directionally controlling a movable partition are provided. In one embodiment, an apparatus may include at least one roller assembly coupled to a portion of a movable partition. A roller element of the roller assembly may be configured to maintain contact with an adjacent surface (e.g., a floor) while the partition is displaced along a desired path even though the adjacent surface may exhibit unevenness, undulations or other substantially nonplanar surface features. In one embodiment, the apparatus may be configured to maintain a substantially constant force between the roller element and the adjacent surface. In another embodiment, the apparatus may be configured to maintain a force between the roller element and the adjacent surface substantially within a specified range. A steering actuator may also be used to select, or change, the orientation of the roller assembly with respect to the partition.
Abstract:
Movable partition systems include a movable partition coupled to and movable along a track. The movable partition may comprise at least two accordion folding sheets of panels, a motor carried by the movable partition, and at least one electronic component unit configured to control the motor. The electronic component unit may be carried by the movable partition and disposed between the sheets of folding panels. Methods of installing a movable partition system include coupling an electronic component box to a floating door jamb within a movable partition.
Abstract:
Embodiments of the present invention include movable partitions and devices, methods and systems that help to limit or prevent lateral displacement of movable partitions. In accordance with one embodiment of the present invention, a movable partition includes two structures, each structure having a first plurality of panels, and each panel being hingedly coupled to an adjacent panel. The two panels are each supported from an overhead track at laterally spaced locations. One or more lateral restraint devices are supported from the overhead track at a location between the two laterally spaced structures. The lateral restraint device may include a trolley disposed in a channel of the overhead track and an elongated member coupled with the trolley and extending away from the trolley to a location proximate a lower edge of the first structure and a lower edge of the second structure.
Abstract:
Movable partitions and systems are provided and may include accordion-style folding doors or partitions having sheets of folding panels. In one embodiment, the movable partition may include at least two hinge panels indirectly connecting adjacent folding panels. The hinge panels may have laterally space the adjacent folding panels from one another such that a compartment is formed upon retraction or folding of the sheets of folding panels. One or more control devices, such as an actuation device or a display panel, may be mounted on at least one of the hinge panels, or on the panel disposed between hinge panels such that, when the movable partition is in a retracted or folded state, the actuation devices are housed within the compartment.
Abstract:
In one embodiment, a closure assembly for a fire door, including a first lead post having a longitudinal cavity located therein, an opening extending through a wall of the first lead post into the longitudinal cavity and a locking member may be positioned within the longitudinal cavity that is configured to obstruct the opening into the longitudinal cavity upon reaching a predetermined temperature, is disclosed. In additional embodiments, fire doors including such closure assemblies and methods of locking fire doors are disclosed.
Abstract:
Movable partition systems include an elongated, fixed drive member extending along a track, a partition that is automatically and manually movable along the track, and a motor carried by the movable partition configured to drive a rotatable drive member that is engagable with the elongated, fixed drive member. The rotatable drive member may be engaged with, and disengaged from, the fixed drive member. Methods of moving a partition along a track include actuating a motor carried by a movable partition to drive rotation of a drive member while the drive member is engaged with an elongated, fixed drive member, and manually moving the partition along the track while the rotatable drive member is disengaged from the fixed drive member. Methods of installing a movable partition system include configuring a rotatable drive member to be capable of engagement with, and disengagement from, an elongated, fixed drive member.