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Prefabricated building system and assembly method thereof

A prefabricated and architectural technology, applied in construction, protected buildings/shelters, building components, etc., can solve the problems of difficult construction, low strength of joints, slow installation and construction speed, etc., to reduce construction waste and environment. The effect of pollution, high safety performance index and shortening construction period

Active Publication Date: 2018-11-27
GUANGXI XUTENG INDUSTRIAL GROUP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in the prefabricated buildings of the prior art, the prefabricated wall panels and the steel structure girders are connected by means of on-site pouring concrete or prefabricated bolted joints. Large quantity and long construction period, the quality of the completed building cannot be guaranteed, the strength of the joint is low, the assembly rate of the prefabricated building is low, the quality of the building and the anti-seismic safety performance are low; The screw holes connected with the bolts are set on the wall panels and main beams, which require high installation accuracy and increase the construction cost of the prefabricated building. Drilling holes, installing multiple bolts, etc., the installation and construction speed is slow
In addition, the connection method of reinforced columns and wall panels is rarely found in the current prefabricated buildings, and the connection method of reinforced columns and wall panels will also affect the seismic performance of prefabricated buildings

Method used

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  • Prefabricated building system and assembly method thereof
  • Prefabricated building system and assembly method thereof
  • Prefabricated building system and assembly method thereof

Examples

Experimental program
Comparison scheme
Effect test

no. 1 approach

[0056] See also Figure 1 to Figure 4 , the first embodiment of the present invention provides a prefabricated building system 100, including a prefabricated foundation 1, a structural support frame 3, a number of prefabricated floors 17 and a number of wall panels (not shown).

[0057] The prefabricated foundation 1 includes a base 6 and at least one structural column 7 disposed on the base 6 . In this embodiment, each base 6 is provided with a structural column 7 . The base 6 includes a first base layer 8, a second base layer 9 and a concrete column foundation 10, the second base layer 9 is connected to one side of the first base layer 8, and the concrete column base 10 is connected to the second base layer 9 facing away from The side of the first base layer 8 . In this embodiment, both the first base layer 8 and the second base layer 9 are made of concrete. The structural column 7 is connected to the side of the concrete column base 10 facing away from the first base lay...

Embodiment 1

[0094] 1. See Table 1 for raw material ratio; see Table 2 for stone tailings; see Table 3 for clay; see Table 4 for high-temperature flux; and see Table 4 for stabilizers: yttrium oxide and cerium oxide.

[0095] 2. Preparation:

[0096] The specific method of preparing the foamed lightweight wallboard from the above-mentioned proportioning raw materials includes the following steps:

[0097] S1. Ore washing: crush the stone tailings and pass through 1 mesh, then send the crushed stone tailings into the immersion pool. The high-pressure water pipe installed above the inner side of the feed port is sent into the stone tailings, and at the same time, the ammonium oxalate solution with a mass concentration of 1.5% is sprayed and wetted until the volume of the sprayed ammonium oxalate solution is 1.1 times the volume of the stone tailings After that, the spraying process can be stopped, soaked for 30 minutes, and the material is stirred every 5 minutes during the soaking period, ...

Embodiment 2

[0103] 1. See Table 1 for raw material ratio; see Table 2 for stone tailings; see Table 3 for clay; see Table 4 for high-temperature flux; and see Table 4 for stabilizers: yttrium oxide and cerium oxide.

[0104] 2. Preparation:

[0105]The specific method of preparing the foamed lightweight wallboard from the above-mentioned proportioning raw materials includes the following steps:

[0106] S1. Ore washing: crush the stone tailings and pass through 10 meshes, then send the crushed stone tailings into the immersion pool. The high-pressure water pipeline set above the inner side of the material port is sending the stone tailings into the stone tailings, and at the same time, the ammonium oxalate solution with a mass concentration of 5.5% is sprayed and wetted until the volume of the sprayed ammonium oxalate solution is 1.32 times the volume of the stone tailings After that, the spraying process can be stopped, soaked for 100 minutes, and the material is stirred every 5 minutes...

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Abstract

The invention provides a novel fabricated building system and further provides an assembly method of the novel fabricated building system. The novel fabricated building system comprises a prefabricated foundation, a structural supporting frame, at least one prefabricated floor and a plurality of wallboards. The structural supporting frame comprises prefabricated reinforcing columns and prefabricated beams, and the prefabricated reinforcing columns are connected with the prefabricated foundation. The prefabricated beams comprise main beams and inserting pieces, and the main beams are connectedwith the prefabricated reinforcing columns. The inserting pieces are connected with the main beams, the prefabricated floors and the main beams are connected through prefabricated connecting pieces and / or adhesives, and every two adjacent wallboards are mutually spliced or glued. The wallboards and the prefabricated reinforcing columns are connected through anchoring steel structures, inserting parts are arranged on the wallboards, and the inserting parts and the inserting pieces are connected in an inserted mode and fixed through adhesives. The wallboards are light wallboards based on graphene and nonmetal foaming and have the advantages of corrosion resistance, heat preservation, heat insulation, fire resistance, water resistance, impermeability, earthquake resistance, cracking resistance, low weight, high strength and the like. The assembled construction method adopted by the building system can shorten the construction period and is safe and efficient.

Description

【Technical field】 [0001] The invention relates to the technical field of buildings, in particular to a prefabricated building system and an assembling method thereof. 【Background technique】 [0002] Traditional buildings use cast-in-place concrete floor slabs, and traditional concrete aerated blocks, shale porous bricks, and red bricks for walls require sporadic wet construction, double-sided batch leveling, and waterproof, thermal insulation, etc. , the assembly rate is extremely low; block walls, external wall plastering or tiles are used to achieve the purpose of waterproof, heat preservation and cold protection, but the heat preservation effect is not ideal, sound insulation and heat insulation, fire resistance, high temperature resistance, waterproof and impermeability, corrosion resistance The aging effect is poor, and it does not have the advantages of light weight and high strength, thermal insulation and sound insulation, fire resistance and high temperature resista...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E04B2/00E04B1/38E04B1/58E04B1/61E04B1/24E02D27/00E04B1/90E04B1/94E04B1/98E04H9/02C04B33/132C04B33/04C04B33/13
CPCY02P40/60
Inventor 黄聿新
Owner GUANGXI XUTENG INDUSTRIAL GROUP CO LTD
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