Patent classifications
E04F15/024
Method and system for automatically levelling dropped ceilings, floating floors, pipes or cable trays
A method for levelling an anchoring system for a dropped ceiling, a floating floor, a pipe or a cable tray, having at least one support bracket for the pipe or a section bar of a support frame of a dropped ceiling, a floating floor or a cable tray, and an adjustment screw to adjust the distance of the section bar from a reference surface, wherein a laser receiver is placed in contact with the section bar or the support bracket, has an optical window to receive a laser beam emitted by a laser level, assumes two height states indicating the receiving position of the laser beam relative to a reference position, and transmits, in a wireless manner, two control signals corresponding to the two height states, and wherein an electric screwdriver receives, in a wireless manner, the control signals and switches the rotation of the adjustment screw between one direction and the opposite direction based on the control signal received.
FLOORING PANEL, SYSTEM AND METHOD FOR CONSTRUCTING A FIRE-RATED SUSPENDED FLOOR
A fire-rated flooring panel for use in forming a suspended floor, comprising: a bottom metal sheet layer; an upper re-enforced concrete layer overlaying the bottom layer; and a structural steel frame enclosing circumferential walls of the upper and lower layers.
POWER CABLE EMBEDDED FLOOR PANEL
A floor system in a server room includes a main panel and a sub-panel. The main panel includes main panel inlaid cables and main panel connectors where the main panel inlaid cables connect a first set of the main panel connectors to a second set of the main panel connectors. The sub-panel includes sub-panel inlaid cables and sub-panel connectors where the sub-panel inlaid cables connect the sub-panel connectors to one another. The floor system provides an operating floor via the main panel and the sub-panel where the operating floor is raised relative to a sub-floor and the main panel is a removable floor panel to access a space between the operating floor and the sub-floor. The main panel inlaid cables and the sub-panel inlaid cables establish a current pathway from a power source.
Pedestal Mounted Paver Heating System
Some deck or patio areas constructed of pavers mounted on adjustable pedestal supports must remain snow and ice free on their top surfaces. The pedestal-mounted paver heating system is designed to allow easy installation of electric heating cable that is positioned against the bottom surface of pavers so that heat generated by the cable is efficiently transferred up into the pavers to raise their temperature enough to prevent the accumulation of snow and ice on their top surfaces.
Support for raised floors
A support for raised floors includes a base and a head coupled to the base, the head having a support body and a tilting element laid on the support body, the tilting element having a plate-shaped portion with an upper surface that is partially flat for supporting a building elements, protrusions emerging from a circular crown of the lower surface of the plate-shaped portion to create a profile shaped as a spherical cap ring, the outer edge of the circular crown being near the outer perimeter of the plate-shaped portion, the support body having an upper surface defining a cavity that is counter-shaped to the spherical cap ring at the protrusions emerging from the tilting element.
REINFORCED PEDESTAL AND RETICULAR STRUCTURE THAT SUPPORTS SUPERPOSED SURFACES AND CONSTRUCTION METHOD THEREOF
Reinforced pedestal (A) to support raised surfaces or overlying on fixed surfaces, comprising: an internal part (1), made up of a truncated conical tubular body (2); and at its wide end a base (7) is provided; and a reinforced external tubular part (9) that houses the internal part (1), made up of a truncated conical tubular body (10), in whose center it has a longitudinally truncated conical gap to house the truncated conical body (2) of the internal part (1).
Grid structure to support overlapping surfaces, comprising: at least two reinforced pedestals (A) placed apart and parallel to each other, at a sufficient distance to support an overlapping surface; and at least two guide crossheads (13) useful for guiding the placement of the pieces (14) that are going to shape to the overlying surface.
Method for building the grid structure, comprising: at least, two modules (B) and/or (C) that form the reinforced pedestals (A); assembling the pieces (1 and 9) of a module with the pieces (1 and 9) of other modules; and to include at least two guide crossheads (13) useful in placing the pieces (14) that are going to conform to the overlying surface on a fixed surface.
Tactile sound flooring system
Presented herein, is a modular tactile flooring system. The tactile flooring system is made from individual modules that each support a tactile transducer. The individual modules may be assembled to form a tactile dance floor. More specifically, the modules may interlock to form a single dance floor surface. Further, the modules may be individually leveled to provide a level surface even when an underlying support surface is uneven. that facilitates assembly of a tactile sound floor and readily permits the tactile sound floor to be assembled in a desired location.
RAISED FLOOR SYSTEM FOR SUSPENSION TYPE PIPELINES
A raised floor system for suspension type pipelines mainly comprises girders and floor units laid between foot stands after the foot stands are erected at intervals on the floor, such that floor units are separated from the floor by a distance to form a large-area raised floor, wherein a top portion of each foot stand for the floor units to be placed thereon is combined with a cover, of four sides of the cover each is vertically provided with a folded plate, a hole is formed on the folded plate, two ends of a suspension device are capable of being respectively hooked on the holes of the folded plates of two of the spaced foot stands, so that the suspension device is placed under the floor units for pipelines to be placed thereon or fixed thereto.
Method for operating a track guidance system and raised floor element configured for this purpose
A method for operating a track guidance system including at least one raised floor element includes planning at least one movement of at least one object on the at least one floor element, transmitting at least one control signal for carrying out the planned at least one movement to the object with the aid of an activatable marking on the at least one floor element, and carrying out the planned at least one movement of the at least one object with the aid of an activatable marking on the at least one floor element based upon the at least one control signal.
Floor grommet
Disclosed are embodiments of a round floor grommet and a rectangular floor grommet. These floor grommets can be constructed in any desired shape other than round or rectangular. Frame portions that hold foam pieces are joined together to form a primary slit in the floor grommet. Cross slits can also be formed in the foam material. The foam is a semi-closed cell foam that is constructed from PVC and nitrile butadiene rubber which has superior sealing effects since the foam can conform around objects passing through the slits in the floor grommet and seal any flow of air through the slits.