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Fire-proof insulating brick and wall body adopting same

A technology of fireproof and thermal insulation, thermal insulation bricks, applied in the field of building walls, can solve the problems that people are not easy to evacuate, the effect of cross-rib thermal bridge is large, and the energy-saving efficiency of buildings is affected. Building safety and other problems

Active Publication Date: 2015-09-23
史世英
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Although the single-material wall has a simple structure and is convenient for construction, the thermal insulation performance of the wall itself is far from that of high-efficiency thermal insulation materials.
[0005] Although the internal insulation wall has good thermal insulation performance, its insulation material is pasted on the inside of the load-bearing wall, making it difficult to hang objects on the wall with internal insulation, and even install curtain boxes and radiators.
[0006] There is no effective protection on the outside of the thermal insulation material of the external thermal insulation wall, and the overall durability of the wall is poor; at the same time, due to the complex construction process and relatively many manual control processes during the construction process, the construction quality is low and the construction speed is slow, which affects the energy-saving efficiency of the building and building safety
[0007] The outer leaf wall of the sandwich composite wall needs to be supported layer by layer, the support is easy to corrode, the overall durability of the wall is poor, and the construction process is complicated during the construction process
Existing self-insulating walls include composite self-insulating bricks with EPS insulation sheets inserted in the brick holes patented by the applicant. Due to the short dislocation distance between the brick holes and insulation sheets, the effect of transverse rib thermal bridges is relatively large, and high efficiency cannot be achieved. Energy saving, such as 75% energy-saving building to the thermal construction index of the wall, and when the wall is exposed to wind and rain, the rainwater will often seep from the horizontal joints into the brick holes and cause mildew
[0008] The applicant further found that in the existing high-rise buildings, when a fire occurs, people are not easy to evacuate. If they hide indoors, they cannot avoid disasters in the rooms surrounded by walls. The existing high-rise buildings have great disaster avoidance. question

Method used

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  • Fire-proof insulating brick and wall body adopting same
  • Fire-proof insulating brick and wall body adopting same
  • Fire-proof insulating brick and wall body adopting same

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034] The fireproof insulation brick of the present embodiment, as figure 1 , figure 2 with image 3 As shown, it includes a front body portion 1 , a middle body portion 2 and a rear body portion 3 which are stacked in sequence. The front panel body 1 and the rear panel body 3 are arranged oppositely, and the front panel body 1 and the rear panel body 3 clamp half of the middle panel body 2 and form a groove 4 for engaging adjacent fireproof insulation bricks , the other half of the middle body 2 protrudes from the front body 1 and the rear body 3 and forms a tenon 5 for snapping into the groove of the adjacent fireproof insulation brick.

[0035] Each sheet body is equal in length and is all shaped on the cavity 6 that runs through the upper and lower sides of its sheet body. Extending to the right end (rightmost end) of the sheet body, each cavity 6 holds a heat insulating sheet 7 of equal length.

[0036] The upper end of the thermal insulation sheet 7 in this embodim...

Embodiment 2

[0041] This embodiment is to provide a wall, which uses the fireproof and thermal insulation bricks of the above embodiments, such as Figure 4As shown, it includes fireproof insulation bricks 9 stacked in layers. The fireproof insulation bricks 9 are placed horizontally. A thermal insulation sheet 7 is clamped in the cavity 6 in the sheet body part 1 .

[0042] The outer side of the front body part 1 of this embodiment is provided with an additional air channel layer.

[0043] In this embodiment, between two adjacent fireproof insulation bricks 9, a cement-based cement material with a thickness of 1-5mm is coated.

Embodiment 3

[0045] A body of wall of this embodiment is basically the same as that of Embodiment 2, and the changes different from Embodiment 2 are, as Figure 5 Shown: the cavity 6 in the front piece body 1 of the outermost layer of the fireproof insulation brick 9 maintains the original cavity, and the cavity 6 can be communicated with the upper, lower or left and right grooves arranged on the wall to form if necessary The air channel that dissipates heat outward, that is, when the wall is heated by fire, it dissipates heat due to the flow of heated air. In this way, when a fire breaks out, the temperature in the room after 3.5 hours is still lower than 40° C., and it is possible to safely hide in the room when a fire breaks out, which solves the problem of disaster avoidance in high-rise buildings.

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Abstract

The invention relates to a fire-proof insulating brick and a wall body adopting the same, and belongs to the technical field of walls of buildings. The fire-proof insulating brick comprises a front sheet body, a middle sheet body and a rear sheet body which are arranged in an overlapped manner, wherein the front sheet body and the rear sheet body are arranged oppositely; a half of the middle sheet body is clamped between the front sheet body and the rear sheet body, so as to define a groove used for clamping of an adjacent fire-proof insulating brick; the other half of the middle sheet body protrudes out of the front sheet body and the rear sheet body, so as to form a tenon to be clamped into another adjacent fire-proof insulating brick; each sheet body comprises a cavity penetrating the upper and lower surfaces of the sheet body; each cavity extends from the left end of the corresponding sheet body to the right end of the sheet body in the length direction of the sheet body; an insulating piece is clamped in each cavity. The fire-proof insulating brick has the effects that a building can be built with less energy resources, rain leakage through horizontal seams can be avoided, and fire can be blocked effectively when a fire occurs.

Description

technical field [0001] The invention relates to a brick and a wall using the brick, belonging to the technical field of building walls. Background technique [0002] The energy consumption of buildings in foreign developed countries accounts for 30% to 40% of the total energy consumption of the society, and the energy consumption per unit area of ​​buildings in my country is still 3 to 5 times that of developed countries with similar climates. Building energy conservation is the most potential and most direct and effective way among various ways of energy conservation. Among the building energy consumption, the energy consumption caused by the external wall accounts for about 60% of the total building energy consumption, so wall insulation is the key to realize building energy saving. [0003] Existing thermal insulation walls include the following types: single material walls, internal thermal insulation composite walls, external thermal insulation walls, sandwich composit...

Claims

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Application Information

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IPC IPC(8): E04C1/40E04B1/94E04B1/78E04B2/18
Inventor 史世英
Owner 史世英