一种节能钢构的基础模块
By combining the main frame and intelligent control system, the problems of low installation efficiency, weak heat insulation and moisture resistance, and complicated wall panel installation of energy-saving steel base plate structures have been solved, achieving efficient installation, effective heat insulation and simplified wall panel installation, thus improving the quality of the living environment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN FENGRUI STEEL STRUCTURE ENG CO LTD
- Filing Date
- 2025-07-22
- Publication Date
- 2026-07-17
AI Technical Summary
The existing energy-saving steel structure requires a leveled site before installation, resulting in low installation efficiency, weak heat insulation and moisture resistance, and complicated and difficult wall panel installation steps.
It adopts a combined design of main frame, fixing part, air circulation part, temperature auxiliary circulation part, heating part and control part, including heat insulation board, steel frame, heat insulation block, fireproof board, air circulation system, temperature regulation system and control system. It achieves rapid installation, effective heat insulation, moisture protection and simplified wall panel installation through ground nail fixing and intelligent control.
It significantly improves installation efficiency, enhances heat insulation and moisture resistance, improves the comfort of the living environment, and simplifies the wall panel installation process.
Smart Images

Figure CN224514542U_ABST
Abstract
Claims
1. An energy efficient steel framed base module characterized by: It includes a main frame, a fixing part, an air circulation part, a temperature auxiliary circulation part, a heating part, and a control part; the main frame includes a heat insulation board (102), a steel frame (101), a heat insulation block (103), and a fireproof board (104); the fixing part includes a positioning tube (201), a positioning nut, a fixing box structure (203), a fixing screw (202), and a ground nail; the air circulation part includes a sealing mechanism, an adjusting mechanism, a switching mechanism, and a drying mechanism; the sealing mechanism includes a push rod motor (301) and a partition plate (302); the adjusting mechanism includes an electric telescopic rod (303), a telescopic tube (304), and a silicone sealing strip; the silicone sealing strip is respectively set at the upper and lower ends of the circular tube; the electric telescopic rod... (303) is set on the outer wall of the circular tube; one end of the telescopic tube (304) is slidably connected to the inside of the circular tube; the telescopic tube (304) and the movable end of the electric telescopic rod (303) are connected by a connecting block; a vent box (305) is set at the lower end of the telescopic tube (304); the vent box (305) includes a cylindrical container, and a vent hole is set on its side plate; the temperature auxiliary circulation part includes a collector (401), a circulation pump and a radiator (402); the heating part includes an electric telescopic rod (501), a movable cover plate (502), an electric heating wire (503), aluminum foil and a heat insulation box (504).
2. The energy efficient steel based module as claimed in claim 1, wherein: The switching mechanism includes a push rod motor 2 (306), a partition plate 2, an exhaust fan (307), and an intake fan (308); the push rod motor 2 (306) and the slide rod 1 are disposed on the bottom surface of the fireproof plate (104); the partition plate 2 is slidably connected to the slide rod 1 and connected to the movable end of the push rod motor 2 (306); the exhaust fan (307) and the intake fan (308) are disposed on the partition plate 2.
3. The energy efficient steel based module as claimed in claim 1, wherein: The drying mechanism includes a drying box (309) and a suction cup; the drying box (309) is adapted to a circular groove; the drying box (309) includes a cylindrical container three and a cover plate two; a vent hole two is provided on the bottom plate of the cylindrical container three; a vent hole three is provided on the cover plate two; the suction cup is provided on the bottom surface of the drying box (309).
4. The energy efficient steel based module as claimed in claim 1, wherein: A push rod motor (301) is mounted on a heat insulation plate (102); a partition plate (302) is slidably connected to the heat insulation plate (102) and connected to the movable end of the push rod motor (301); a circular through hole four and a heat insulation pad are provided on the partition plate (302); a breathable mesh is provided on the circular through hole four.
5. The energy efficient steel based module as claimed in claim 1, wherein: The steel frame (101) includes a cuboid frame and supporting short columns; the supporting short columns are set inside the cuboid frame; the heat insulation board (102) is set on the steel frame (101) to form a rectangular container; the bottom plate of the heat insulation board (102) is provided with a circular through hole one, a circular groove, a circular through hole two, and a square groove; the circular through hole two is located at the bottom of the circular groove; the side plate of the heat insulation board (102) is provided with a circular installation through hole; the heat insulation block (103) is inserted into the steel frame (101); the fireproof board (104) is set on the steel frame (101); the fireproof board (104) is provided with an installation guide groove, a circular storage through hole, a circular through hole three, a rectangular through hole one, and a rectangular through hole two; the circular through pipe is set inside the steel frame (101) through an "L"-shaped mounting bracket and is located between the circular through hole two and the circular through hole three; the circular through pipe is provided with a strip through hole one.
6. The foundation module of an energy-saving steel structure according to claim 1, characterized in that: The positioning tube (201) is set on the steel frame (101), and its lower end is located below the circular through hole; the positioning tube (201) is provided with a mounting screw hole; the positioning nut is set on the steel frame (101) and located on one side of the circular mounting through hole; the fixing screw (202) is threadedly connected to the positioning nut; the ground nail is connected to the fixing screw (202) by a traction rope; the fixing box structure (203) is inserted into the circular storage through hole.
7. The energy efficient steel based module as claimed in claim 1, wherein: The collector (401) is mounted on the bottom surface of the heat insulation plate (102) via a square mounting frame; the radiator (402) is mounted in a square groove; a perforated protective plate is mounted on the radiator (402); four vent holes are provided on the perforated protective plate; the collector (401) and the radiator (402) are connected by a circulating pump.
8. The energy efficient steel based module as claimed in claim 1, wherein: The electric telescopic rod 2 (501) and the heat insulation box (504) are installed inside the steel frame (101); the electric telescopic rod 2 (501) is equipped with a roller on its movable end; one end of the movable cover plate (502) is pinned to the rectangular through hole 1; the bottom surface of the movable cover plate (502) is equipped with a heat insulation frame, a limiting slide rail 1, and aluminum foil; the roller is slidably connected to the limiting slide rail; the heating wire (503) is installed inside the heat insulation box (504).
9. The energy efficient steel based module as claimed in claim 1, wherein: The energy component includes a storage battery and a wind turbine (601); the wind turbine (601) is slidably connected to a limiting slide rod via a limiting slider; a locking bolt is provided on the limiting slider; the limiting slide rod is provided on the side plate of the heat insulation plate (102); the storage battery is located inside the steel frame (101).
10. The energy efficient steel based module as claimed in claim 6, wherein: The fixed box structure (203) includes a cylindrical container, an annular limiting edge, and a movable cover; the annular limiting edge is disposed on the side plate of the cylindrical container; the movable cover is pin-connected to the cylindrical container.