Energy Saving House
Abstract
An energy-saving house, has a main frame, an enclosed wall, a floor cover plate, a top cover plate, a separation wall, a bathroom, and stairs. The enclosed wall is assembled from multiple integral composite prefabricated external wallboards and fixed on the main frame via an energy-dissipating connector. The bathroom and the stair are integrally prefabricated and directly installed. The energy-saving house features low power consumption, high construction efficiency, short construction time, low noise, low dust, light weight, good anti-seismic performance, and small thermal conductivity and is applicable to multi-floor houses and high rise buildings.
Claims
exact text as granted — not AI-modified1 . An energy-saving house, comprising
a main frame; an enclosed wall; a floor cover plate; a top cover plate; a separation wall; a bathroom; and a stair;
wherein
said enclosed wall is assembled by multiple integral composite prefabricated external wallboards and fixed on said main frame via a seismic and energy-dissipation connector; and
said bathroom and said stair are integrally prefabricated and directly installed.
2 . The energy-saving house of claim 1 , wherein said floor cover plate and said top cover plate are light-weight laminated slabs.
3 . The energy-saving house of claim 2 , wherein
said light-weight laminated slab uses a hollow stripe board made of prefabricated and reinforced light aggregate concrete as a substrate; a reinforced skeleton tablet is disposed between said substrates; a reinforced net is disposed on an upper surface of said substrate; and high-strength and waterproof fine stone concrete is disposed between said substrates and on the upper surface of said substrate and operates to cover said reinforced skeleton tablet and said reinforced net.
4 . The energy-saving house of claim 1 , wherein said floor cover plate and said top cover plate are directly fixed on said main frame.
5 . The energy-saving house of claim 1 , wherein said frame is a steel frame formed by steel columns and steel beams connected to each other.
6 . The energy-saving house of claim 1 , wherein said frame is a steel frame.
7 . The energy-saving house of claim 1 , wherein a wallboard mount is pre-buried in said integral composite prefabricated external wallboard.
8 . The energy-saving house of claim 7 , wherein said wallboard mount cooperates with said seismic and energy-dissipation connector whereby fixing said integral composite prefabricated external wallboard on said main frame.
9 . The energy-saving house of claim 7 , wherein
said seismic and energy-dissipation connector comprises a bolt; said wallboard mount comprises a bolt sleeve disposed in said integral composite prefabricated external wallboard; and said bolt passes through a screw hole on said main frame and is connected to said bolt sleeve whereby fixing said integral composite prefabricated external wallboard on said main frame.
10 . The energy-saving house of claim 9 , wherein a damping pad is disposed at a connection of said bolt and between said integral composite prefabricated external wallboard and said main frame.
11 . The energy-saving house of claim 1 , wherein integral composite prefabricated external wallboards on the same storey are planarly connected.
12 . The energy-saving house of claim 1 , wherein integral composite prefabricated external wallboards on different stories are clutch connected, and the connection is caulk sealed.
13 . The energy-saving house of claim 1 , wherein
a supporting plate is disposed on said main frame and operates to support said integral composite prefabricated external wallboard; multiple positioning pins are vertically disposed on said supporting plate; and multiple positioning holes are disposed on a top surface and a bottom surface of said integral composite prefabricated external wallboard and correspond to said positioning pins.
14 . The energy-saving house of claim 1 , wherein
said integral composite prefabricated external wallboard comprises a structure layer, at least one light-weight filling block disposed on an inner side of said structure layer, and a heat insulation layer; said heat insulation layer is attached to an outer side of said light-weight filling block; said structure layer is disposed on a lateral outside of said integral composite prefabricated external wallboard; and said structure layer fills a gap between said heat insulation layer and said light-weight filling block and attaches said heat insulation layer to said light-weight filling block whereby forming said integral composite prefabricated external wallboard.
15 . The energy-saving house of claim 1 , wherein
said bathroom comprises sanitary wares and accessories; and said bathroom is integrally or separately prefabricated from polyester composites.
16 . A method for producing an energy-saving house, comprising
performing foundation construction of the energy-saving house; installing a main frame; disposing an integral composite prefabricated external wallboard on said main frame; installing multiple floor cover plates and top cover plates on different stories; installing a pipeline system, a prefabricated bathroom, a stair and an enclosed wall; and installing a facing of an inner wall and other accessories.Join the waitlist — get patent alerts
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