Patent classifications
E06B2003/7094
Hollow core door with perimeter air flow
Hollow core door apparatus for preventing the build up of pressure in a room having a register through which air flows into the room and the door includes an inside door skin and an outside door skin, and the door skins includes openings through which air flows and a center panel between the skins and spaced part from the skins. The center panel has an outer perimeter greater than the inner perimeter of the openings. The center panel is spaced apart from the skins, and also from the adjacent stiles and rails. A chamber is formed about the panel and between the adjacent stiles and rails and the openings in the skins. Air flow from the room is through the opening in the inside skin into the chamber, around the outer periphery of the panel, and outwardly through the opening in the outside skin in a non-linear manner.
Hollow core door with internal air flow and sliding panel
Hollow core door apparatus for preventing the build up of pressure in a room having a register through which air flows into the room and the door includes an inside door skin and an outer door skin, and the door skins includes openings through which air flows and panels disposed in the openings to define the amount of air flowing through the openings in the skins. The door also includes at least a single fixed panel and a movable panel, both of which panels include openings through which air flows when the openings in the panels are aligned and which air flow is restricted when the openings are misaligned. The inside and outside panels have peripheral openings defined between the openings in the skins and the panels disposed in the openings and which peripheral openings define areas at least as great as the area of the openings in the fixed and movable panels, and the openings in the fixed and movable panels are offset from the peripheral openings to provide for a non-linear flow of air through the door to prevent the build up of pressure in the room and to restrict the non-linear air flow through the door when the openings in the fixed and movable panels are misaligned. An embodiment combining a noxious gas absorbent material with the pressure build up prevention capability is also illustrated.
Energy recovery ventilator door
An energy recovery ventilator door assembly includes an exterior door for a structure, the door including an inside fan and an outside fan for providing flows of air to a manifold. The manifold includes an inside manifold conduit for receiving stale inside air and an outside manifold conduit for receiving fresh outside air. A heat sink between the two conduits recovers heat energy from the warmer flow of air flowing in the conduits and transmits the recovered heat energy to the cooler of the flows of air in the conduits. A crossover element routs the inside conduit from the inside of the door to the outside of the door, and routs the outside conduit of the door to the inside of the door. Thus the air in the inside manifold conduit is vented to the outside of the structure through the door and the air in the outside manifold conduit is vented to the inside of the structure through the door.
QUICK RELEASE DOOR ROLLER ASSEMBLY
An improved vertical lift door roller assembly has a wheel pivotally mounted to a shaft. The shaft is placed within a spring loaded locking cylinder. The locking cylinder is movable between a first position where it restricts pivoting of the wheel and a second position where the wheel is able to pivot. When the door roller assembly is used on a vertical lift door, the wheel can be pivoted to decouple the roller from a vertical lift door J channel wheel track.
QUICK RELEASE DOOR ROLLER ASSEMBLY
An improved vertical lift door roller assembly has a wheel pivotally mounted to a shaft. The shaft is placed within a spring loaded locking cylinder. The locking cylinder is movable between a first position where it restricts pivoting of the wheel and a second position where the wheel is able to pivot. The door roller assembly is mountable to a support a vertical lift door, such as a bracket or a hinge. The roller wheel can be pivoted to decouple the roller from a vertical lift door wheel track and to reseat the wheel in the track.
Quick release door roller assembly
An improved vertical lift door roller assembly has a wheel pivotally mounted to a shaft. The shaft is placed within a spring loaded locking cylinder. The locking cylinder is movable between a first position where it restricts pivoting of the wheel and a second position where the wheel is able to pivot. When the door roller assembly is used on a vertical lift door, the wheel can be pivoted to decouple the roller from a vertical lift door J channel wheel track.
MODULAR STRUCTURE AND METHOD OF ASSEMBLY
Disclosed is a system and method of constructing modular homes, which are assembled from a numbered of prefabricated components and delivered as finished goods using standard containers. The modular design further provides for a self-sufficient structure where the three main engineering systems, namely, plumbing, electrical and HVAC, are completely integrated allowing the structure to maximize energy usage efficiencies. Emphasis is placed on using only environmentally friendly materials and on recycle or multi-purposing components into energy or resource gathering and production. Another emphasis is placed on speed of assembly using standardized structures that streamline on the job assembly processes.
IN-BUILDING ACCESS PATH INSTALLATION TYPE SMOKE CONTROL SYSTEM
The present invention relates to an in-building access path installation type smoke control system. An in-building access path installation type smoke control system is openably and closably installed in an in-building access path and includes a door casing having an intake port and a discharge port, a door nozzle installed in the door casing and configured to spray water supplied from the outside, and a main door body including a negative pressure inducer configured to allow water sprayed from the door nozzle to pass therethrough, generate negative pressure on the basis of the Venturi effect while the water passes therethrough, suck gas at the periphery of the door casing through the intake port, mix the sucked gas with water, and move the gas mixed with the water downward toward the discharge port.
Hollow core door for peventing pressure build uphaving a divided non-linear air flowthrough the door
A hollow core door for a room, the door includes a stile and rail frame, an inside skin having a plurality of holes extending therethrough, an outside skin having a plurality of holes extending therethrough, both skins secured to the frame. The door includes a-panel disposed between the inside and outside skins, the panel having a surface area greater than an area of the pluralities of holes, and having openings disposed laterally of the pluralities of holes. The panel includes a slider panel having a plurality of slider panel openings, the slider panel slidable to alternately allow or block a flow of air. The pluralities of holes are located whereby air flows inwardly through the plurality of holes in the inside skin, divides, flows about the panel and through its openings, and outwardly through the plurality of holes in the outside skin in a non-linear manner.
Sustainable net zero modular building and assembly method
Disclosed is a system and method of constructing modular homes, which are assembled from a numbered of prefabricated components and delivered as finished goods using standard containers. The modular design further provides for a self-sufficient structure where the three main engineering systems, namely, plumbing, electrical and HVAC, are completely integrated allowing the structure to maximize energy usage efficiencies. Emphasis is placed on using only environmentally friendly materials and on recycle or multi-purposing components into energy or resource gathering and production. Another emphasis is placed on speed of assembly using standardized structures that streamline on the job assembly processes.