CN212984192U - Assembled steel construction light concrete building - Google Patents

Assembled steel construction light concrete building Download PDF

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Publication number
CN212984192U
CN212984192U CN202021526076.5U CN202021526076U CN212984192U CN 212984192 U CN212984192 U CN 212984192U CN 202021526076 U CN202021526076 U CN 202021526076U CN 212984192 U CN212984192 U CN 212984192U
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China
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shaped steel
prefabricated
steel
concrete building
wall body
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CN202021526076.5U
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Chinese (zh)
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张长彬
张少华
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Hebei Yinghao Lvjian Technology Co.,Ltd.
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Son Of Baoding City Light Steel Structure Installation Co ltd
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Abstract

The utility model discloses an assembly type steel structure light concrete building, which comprises a prefabricated wall body, prefabricated floor slabs, prefabricated roofs and connecting points, wherein the first T-shaped steel on the side surfaces of two adjacent prefabricated wall bodies is fixedly connected through the connecting points, and the bottom end of the prefabricated wall body is fixedly connected with a concrete base or a C-shaped steel framework of the prefabricated floor slab through U-shaped steel; the top end of the prefabricated wall body is fixedly connected with a roof bottom plate of a prefabricated roof or a C-shaped steel framework of a prefabricated floor slab through H-shaped steel. The utility model discloses assembled steel construction light-duty concrete building prefabrication rate is high, and on-the-spot assembly is fast, can effectively reduce the environment destruction that causes the job site, and thermal insulation performance is strong, and anti-seismic performance is good, more energy-concerving and environment-protective, suits to promote on a large scale.

Description

Assembled steel construction light concrete building
Technical Field
The utility model relates to an assembly type structure and passive form building field especially relate to a light-duty concrete building of assembled steel construction.
Background
With the development of science and technology and the progress of society, the concept of energy conservation and environmental protection is more and more deep. The house construction cycle of traditional brick and concrete structure is long, and the cost is high, and the job site is big to the environmental impact, more and more suffers people's abandonment. Passive houses meeting the concept of energy conservation and environmental protection are pursued by people, so how to develop an assembled steel structure light concrete building becomes a problem to be solved urgently by technical personnel in the field.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an assembled steel construction light-duty concrete building solves above-mentioned technical problem. The utility model adopts the following technical scheme:
the utility model relates to an assembled steel structure light concrete building, including prefabricated wall body, prefabricated floor, prefabricated roof and tie point, two adjacent first T shaped steel of prefabricated wall body side passes through tie point fixed connection, the bottom of prefabricated wall body is through U shaped steel and concrete base or the C shaped steel skeleton fixed connection of prefabricated floor; the top end of the prefabricated wall body is fixedly connected with a roof bottom plate of a prefabricated roof or a C-shaped steel framework of a prefabricated floor slab through H-shaped steel.
Furthermore, the prefabricated wall body comprises U-shaped steel, H-shaped steel, first T-shaped steel and filling core materials, the U-shaped steel is located at the bottom end of the prefabricated wall body, the number of the first T-shaped steel is two, the lower ends of the two first T-shaped steel are respectively fixed at two ends of the U-shaped steel, and the H-shaped steel is fixedly arranged between the top ends of the two first T-shaped steel; filling the filling core material into a frame formed by the U-shaped steel, the H-shaped steel and the two first T-shaped steels; a spot welding net is arranged in the filling core material; an inner wall decoration is arranged on one side of the filling core material positioned in the house; and a second filling material and an outer wall decoration are sequentially arranged on one side, located outside the house, of the filling core material from inside to outside.
Further, prefabricated roof includes roof bottom plate, C shaped steel A-frame, europe pine board, linoleum and tile, the roof bottom plate sets up the bottom on prefabricated roof, be provided with C shaped steel A-frame on the roof bottom plate, it has set gradually from falling down to go up on the C shaped steel A-frame Europe pine board, linoleum and tile.
Further, prefabricated floor includes floor bottom plate, C shaped steel skeleton, glass cotton and floor pressure plate, floor bottom plate sets up prefabricated floor's bottom, be provided with on the floor bottom plate C shaped steel skeleton, C shaped steel skeleton intussuseption is filled with two-layerly glass is cotton, C shaped steel skeleton's top is provided with the floor pressure plate.
Furthermore, the connecting point comprises second T-shaped steel and first filler, the second T-shaped steel is vertically placed, a wing plate or a web plate of the second T-shaped steel is fixedly connected with a web plate of the first T-shaped steel of one prefabricated wall body, and the web plate or the wing plate of the second T-shaped steel is fixedly connected with a web plate of the first T-shaped steel of the other prefabricated wall body; and a first filling material is arranged between the second T-shaped steel and the two adjacent prefabricated walls.
Further, be provided with the vertical strengthening rib of C shaped steel between U shaped steel and the H shaped steel, the vertical strengthening rib of C shaped steel with be provided with the horizontal strengthening rib of C shaped steel between the first T shaped steel, the vertical strengthening rib of C shaped steel with still be provided with the C shaped steel diagonal rib between the first T shaped steel.
Furthermore, cellucotton for forming a broken bridge is arranged between the C-shaped steel triangular support and the roof bottom plate.
Further, the filling core material uses lightweight concrete.
Furthermore, a prefabricated door and window is arranged on the prefabricated wall body.
Compared with the prior art, the utility model discloses a beneficial technological effect:
the assembly type steel structure light concrete building has the advantages that by using the prefabricated floor slab, the prefabricated roof, the prefabricated wall body and the connecting points, the prefabrication rate reaches more than ninety percent, the site construction time is greatly saved, the assembly efficiency is improved, the environmental influence on the construction site is reduced, the disassembly is convenient, the secondary utilization can be realized, and the use cost is reduced; the utility model discloses assembled steel construction light concrete building has promoted the holistic thermal insulation performance of building through adopting prefabricated roof and the prefabricated wall body that has the bridge cut-off structure greatly, and is more energy-concerving and environment-protective, accords with the requirement of passive form building. Generally speaking, the utility model discloses assembled steel construction light concrete building prefabrication rate is high, and on-the-spot assembly is fast, can effectively reduce the environmental destruction that causes the job site, and thermal insulation performance is strong, and anti-seismic performance is good, more energy-concerving and environment-protective, suits to promote on a large scale.
Drawings
The invention will be further explained with reference to the following description of the drawings:
FIG. 1 is a schematic view of the overall structure of the fabricated steel structure lightweight concrete building of the present invention;
FIG. 2 is a side view of a precast floor slab;
FIG. 3 is a front view of a precast floor slab;
FIG. 4 is a top view of a connection point;
fig. 5 is a schematic view of a prefabricated floor structure.
Description of reference numerals: 1. prefabricating a wall body; 101. u-shaped steel; 102. h-shaped steel; 103. a first T-section steel; 104. filling a core material; 105. welding a net; 106. decorating an inner wall; 107. a second filler; 108. decorating an outer wall; 109. c-shaped steel vertical reinforcing ribs; 110. c-shaped steel transverse reinforcing ribs; 111. c-shaped steel diagonal draw bars; 2. a connection point; 201. a second T-section steel; 202. a first filler; 3. prefabricating a floor slab; 301. a floor slab; 302. c-shaped steel frameworks; 303. glass wool; 304. a floor pressure plate; 4. prefabricating a roof; 401. a roof deck; 402. c-shaped steel triangular supports; 403. a plate of euryale pine; 404. a felt; 405. a tile; 406. and (4) cellucotton.
Detailed Description
As shown in fig. 1 to 5, the light concrete building with the assembly type steel structure comprises a prefabricated wall body 1, prefabricated floors 3, prefabricated roofs 4 and connecting points 2, wherein two adjacent first T-shaped steels 103 on the side surfaces of the prefabricated wall body 1 are fixedly connected through the connecting points 2, the bottom end of the prefabricated wall body 1 on the first layer is fixedly connected with a concrete base through U-shaped steels 101, the top end of the prefabricated wall body 1 on the first layer is fixedly connected with a C-shaped steel framework 302 of the prefabricated floors 3 through H-shaped steels, the bottom end of the prefabricated wall body 1 on the second layer is fixedly connected with the C-shaped steel framework 302 of the prefabricated floors 3 through the U-shaped steels 101, and the top end of the prefabricated wall body 1 on the second layer is fixedly connected with a roof bottom plate 401 of the prefabricated roofs 4 through the H-shaped steels.
And a prefabricated door and window is arranged on the prefabricated wall body 1.
As shown in fig. 2 and 3, the prefabricated wall 1 comprises U-shaped steel 101, H-shaped steel 102, two first T-shaped steel 103 and a filling core material 104, wherein the U-shaped steel 101 is located at the bottom end of the prefabricated wall 1, the lower ends of the two first T-shaped steel 103 are respectively fixed at two ends of the U-shaped steel 101, and the H-shaped steel 102 is fixedly arranged between the top ends of the two first T-shaped steel 103; the filling core material 104 is filled in a frame formed by the U-shaped steel 101, the H-shaped steel 102 and the two first T-shaped steels 103; a spot welding net 105 is arranged in the filling core material 104; an inner wall decoration 106 is arranged on one side, located inside the house, of the filling core material 104; the filling core material 104 is provided with a second filling material 107 and an outer wall decoration 108 in sequence from inside to outside on one side of the outside of the house.
Be provided with C shaped steel vertical strengthening rib 109 between U shaped steel 101 and the H shaped steel 102, C shaped steel vertical strengthening rib 109 with be provided with C shaped steel horizontal strengthening rib 110 between the first T shaped steel 103, C shaped steel vertical strengthening rib 109 with still be provided with C shaped steel diagonal reinforcement 111 between the first T shaped steel 103. The prefabricated wall body 1 can be effectively strengthened to bear wind load, and horizontal load and vertical load caused by earthquake.
As shown in fig. 1, the prefabricated roof 4 includes a roof bottom plate 401, a C-shaped steel triangular bracket 402, an orpine 403, a felt 404 and a tile 405, the roof bottom plate 401 is disposed at a bottom end of the prefabricated roof 4, the C-shaped steel triangular bracket 402 is disposed on the roof bottom plate 401, and the orpine 403, the felt 404 and the tile 405 are sequentially disposed on the C-shaped steel triangular bracket 402 from bottom to top.
And fiber cotton 406 for forming a broken bridge is arranged between the C-shaped steel triangular support 402 and the roof bottom plate 401.
As shown in fig. 5, the precast floor slab 3 includes a floor slab base plate 301, a C-shaped steel framework 302, glass wool 303 and a floor pressure plate 304, the floor slab base plate 301 is disposed at the bottom end of the precast floor slab 3, the C-shaped steel framework 302 is disposed on the floor slab base plate 301, two layers of the glass wool 303 are filled in the C-shaped steel framework 302, and the floor pressure plate 304 is disposed at the top end of the C-shaped steel framework 302.
As shown in fig. 4, the connection point 2 comprises a second T-shaped steel 201 and a first filler 202, the second T-shaped steel 201 is vertically placed, a web or a web of the second T-shaped steel 201 is fixedly connected with a web of the first T-shaped steel 103 of one prefabricated wall 1, and a web or a web of the second T-shaped steel 201 is fixedly connected with a web of the first T-shaped steel 103 of another prefabricated wall 1; first filling materials 202 are arranged between the second T-shaped steel 201 and two adjacent prefabricated walls 1.
Lightweight concrete is used for the filler core 104. The first filling material 3 and the second filling material 107 are heat insulating materials. The floor slab 301 is made of fireproof plates or OSB plates.
The utility model discloses assembled steel construction light-duty concrete building can set up the number of piles according to the demand. A fresh air system is arranged in the building house, and photovoltaic power generation is arranged outside the building house. And the window of the building house is made of LOW-E glass.
The above-mentioned embodiments are only intended to describe the preferred embodiments of the present invention, but not to limit the scope of the present invention, and those skilled in the art should also be able to make various modifications and improvements to the technical solution of the present invention without departing from the spirit of the present invention, and all such modifications and improvements are intended to fall within the scope of the present invention as defined in the appended claims.

Claims (9)

1. The utility model provides an assembled steel construction light-duty concrete building which characterized in that: the prefabricated wall comprises prefabricated walls (1), prefabricated floors (3), prefabricated roofs (4) and connecting points (2), wherein first T-shaped steels (103) on the side faces of two adjacent prefabricated walls (1) are fixedly connected through the connecting points (2), and the bottom ends of the prefabricated walls (1) are fixedly connected with a C-shaped steel framework (302) of a concrete base or the prefabricated floors (3) through U-shaped steels (101); the top end of the prefabricated wall body (1) is fixedly connected with a roof bottom plate (401) of a prefabricated roof (4) or a C-shaped steel framework (302) of a prefabricated floor slab (3) through H-shaped steel.
2. The fabricated steel structure light concrete building of claim 1, wherein: the prefabricated wall body (1) comprises U-shaped steel (101), H-shaped steel (102), first T-shaped steel (103) and filling core materials (104), the U-shaped steel (101) is located at the bottom end of the prefabricated wall body (1), the number of the first T-shaped steel (103) is two, the lower ends of the two first T-shaped steel (103) are respectively fixed at two ends of the U-shaped steel (101), and the H-shaped steel (102) is fixedly arranged between the top ends of the two first T-shaped steel (103); filling the filling core material (104) in a frame formed by the U-shaped steel (101), the H-shaped steel (102) and the two first T-shaped steels (103); a spot welding net (105) is arranged in the filling core material (104); an inner wall decoration (106) is arranged on one side, located inside the house, of the filling core material (104); and the filling core material (104) is sequentially provided with a second filling material (107) and an outer wall decoration (108) from inside to outside on one side of the outside of the house.
3. The fabricated steel structure light concrete building of claim 1, wherein: prefabricated roof (4) include roof bottom plate (401), C shaped steel triangular supports (402), europa board (403), linoleum (404) and tile (405), roof bottom plate (401) set up the bottom of prefabricated roof (4), be provided with C shaped steel triangular supports (402) on roof bottom plate (401), from falling down on C shaped steel triangular supports (402) and set gradually europa board (403), linoleum (404) and tile (405).
4. The fabricated steel structure light concrete building of claim 1, wherein: prefabricated floor (3) include floorslab bottom plate (301), C shaped steel skeleton (302), glass cotton (303) and floor pressure plate (304), floorslab bottom plate (301) set up the bottom of prefabricated floor (3), be provided with on floorslab bottom plate (301) C shaped steel skeleton (302), C shaped steel skeleton (302) intussuseption is filled with two-layerly glass cotton (303), the top of C shaped steel skeleton (302) is provided with floor pressure plate (304).
5. The fabricated steel structure light concrete building of claim 1, wherein: the connecting point (2) comprises second T-shaped steel (201) and first filling materials (202), the second T-shaped steel (201) is vertically placed, a wing plate or a web plate of the second T-shaped steel (201) is fixedly connected with a web plate of the first T-shaped steel (103) of one prefabricated wall body (1), and a web plate or a wing plate of the second T-shaped steel (201) is fixedly connected with a web plate of the first T-shaped steel (103) of the other prefabricated wall body (1); first filling materials (202) are arranged between the second T-shaped steel (201) and the two adjacent prefabricated walls (1).
6. The fabricated steel structure light concrete building of claim 2, wherein: be provided with C shaped steel vertical strengthening rib (109) between U shaped steel (101) and H shaped steel (102), C shaped steel vertical strengthening rib (109) with be provided with C shaped steel horizontal strengthening rib (110) between first T shaped steel (103), C shaped steel vertical strengthening rib (109) with still be provided with C shaped steel diagonal draw (111) between first T shaped steel (103).
7. The fabricated steel structure light concrete building of claim 3, wherein: and fiber cotton (406) for forming a broken bridge is arranged between the C-shaped steel triangular support (402) and the roof bottom plate (401).
8. The fabricated steel structure light concrete building of claim 2, wherein: the filling core material (104) uses lightweight concrete.
9. The fabricated steel structure light concrete building of claim 1, wherein: and a prefabricated door and window is arranged on the prefabricated wall body (1).
CN202021526076.5U 2020-07-29 2020-07-29 Assembled steel construction light concrete building Active CN212984192U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021526076.5U CN212984192U (en) 2020-07-29 2020-07-29 Assembled steel construction light concrete building

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021526076.5U CN212984192U (en) 2020-07-29 2020-07-29 Assembled steel construction light concrete building

Publications (1)

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CN212984192U true CN212984192U (en) 2021-04-16

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ID=75430270

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Application Number Title Priority Date Filing Date
CN202021526076.5U Active CN212984192U (en) 2020-07-29 2020-07-29 Assembled steel construction light concrete building

Country Status (1)

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CN (1) CN212984192U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115045390A (en) * 2022-05-11 2022-09-13 中国建筑技术集团有限公司 Construction method of fully-assembled light-steel light-concrete structural system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115045390A (en) * 2022-05-11 2022-09-13 中国建筑技术集团有限公司 Construction method of fully-assembled light-steel light-concrete structural system

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Effective date of registration: 20211012

Address after: 071000 No. 3167-58, Zhongyang village, Yangzhuang Township, Lianchi District, Baoding City, Hebei Province

Patentee after: Hebei Yinghao Lvjian Technology Co.,Ltd.

Address before: 071000 Zhongyang village, Yangzhuang Township, Lianchi District, Baoding City, Hebei Province

Patentee before: THE SON OF BAODING CITY LIGHT STEEL STRUCTURE INSTALLATION Co.,Ltd.