Abstract:
The present invention relates to the field of sliding door systems. The invention relates to a wheel carriage (300) for a sliding door resting in sliding track (106), comprising wheel connection means (340) adapted to removably connect a wheel shaft (331) at two connection points (341) positioned on each side of a wheel (330). The invention also relates to a method for exchanging the wheels (330) of a wheel carriage (300), by lowering a door panel and replacing the wheels (330), while the wheel carriage (300) is resting in the sliding track (106).
Abstract:
A drive system for driving and for guiding a wall element, in particular for a room partitioning wall system, with a carriage unit, which is guided to be longitudinally movable in a guiding rail. The carriage unit has a roller carriage disposed within the guiding rail, and a drive unit disposed below the guiding rail. A guiding device is provided in the transition area between the roller carriage and the drive unit that cooperates with the guiding rail for guiding the carriage unit.
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 roller assembly for a sliding vehicle closure includes a bracket secured to an associated sliding vehicle closure and a ball-type roller secured to the bracket at a location spaced apart from the associated sliding vehicle closure. The ball-type roller is fixed in position relative to the associated sliding vehicle closure during opening and closing thereof.
Abstract:
A damper roller system is provided. The system includes an external rotating element connected to a bearing housing. The bearing housing is filled with a viscous fluid and includes at least one bearing element immersed in the viscous fluid. The bearing housing is connected to at least one sealing element sealing the viscous fluid inside the bearing housing. The bearing element is connected to a non-rotating shaft having opposite first and second ends. The shaft is held in place at the first end by the bearing element and is rigidly connectable at the second end to an object. The first end is nail-shaped and immersed in the viscous fluid. A rotation of the external rotating element drives a common rotation of the bearing housing and of the bearing element, and shears the viscous fluid, causing a damping motion proportional to a rotational speed of the external rotating element.
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 method of feeding an animal in a feeding box including in no particular order, at least the actions of: a) registering the presence of the animal in the feeding box, b) closing the feeding box and locking the feeding box in such a way that access to the feeding box is impeded for an animal outside the feeding box, c) supplying feed to the animal in the feeding box in a chosen eating period of time. For an animal that does not leave the feeding box after an initially chosen eating period of time has elapsed, the initially chosen eating period of time beginning immediately after the performance of step b), within a first waiting time span chosen contiguously to said period of time, in which the animal is given the possibility of leaving the feeding box, step c) is repeated at least once.
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 roller support assembly is used to support sliding doors, windows or the like. The assembly includes a housing member having spaced apart side walls and interconnecting transverse walls defining a roller receiving zone for receiving and operationally mounting a roller assembly. The roller assembly has a roller body with a rolling peripheral rim and a shaft whereby the roller body is rotatable relative to the shaft having short stub axle parts. The housing side walls including openings that are fully enclosed by the side walls into which the short stub axle parts fit. The housing side walls further include projecting elements extending inwardly from an inner surface of a housing side wall to cooperate with the corresponding roller body side wall surfaces to spay the housing side walls apart as the roller assembly is moved into the roller receiving zone to locate the stub axle parts in the openings.
Abstract:
An apparatus and method of directionally controlling a movable partition includes providing at least one roller assembly and a steering actuator, coupled therewith, to a portion of the partition. A controller may be used to control the steering actuator and thereby select, or change, the orientation of the roller assembly with respect to the partition. In one embodiment, one or more sensors may be used to determine the vertical orientation of the partition including whether the partition, or a section thereof, is substantially plumb. If the partition is substantially out of plumb, for example, if a lower edge of the partition is laterally displaced relative to an upper edge of the partition, the controller and steering actuator may cause the at least one roller assembly to direct the partition, or section thereof, in a particular direction until the partition, or section thereof, becomes substantially plumb.