Waterproof protection construction method

A construction method and technology of waterproof materials, applied in the field of waterproof engineering, can solve the problems of easy aging, poor puncture resistance and aging resistance, short life, etc., and achieve the effect of avoiding leakage and improving use efficiency

Inactive Publication Date: 2020-12-04
朋盼(上海)材料科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Such products have strict requirements on operation technology, poor puncture resistance and aging resistance, easy aging, and short service life

Method used

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  • Waterproof protection construction method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0038] 1. Weigh each raw material component according to parts by weight:

[0039] Nano-calcium silicate dispersion (10% solid content): 10 parts;

[0040] Sodium silicate solution (30% solid content): 10 parts;

[0041] Silica sol (30% solid content): 5 parts;

[0042] Sodium hydroxide: 3 parts;

[0043] Water: 72 parts;

[0044] Penetrant JFC: 0.1 parts.

[0045] During preparation, first mix sodium silicate with water to obtain a mixed solution; then dissolve sodium hydroxide in the mixed solution to obtain a secondary mixed solution; add weighed silica sol, nano-silicon Calcium acid dispersion and wetting and penetrating agent JFC are mixed to obtain a waterproof material.

[0046] 2. During waterproof construction, spray a sufficient amount of water on the surface of the cement substrate to make it wet. After the surface of the cement substrate has no clear water, spray the first waterproof material evenly; 4 hours after the first waterproof material is sprayed Afte...

Embodiment 2

[0049] 1. Weigh each raw material component according to parts by weight:

[0050] Nano-calcium silicate dispersion (15% solid content): 15 parts;

[0051] Sodium silicate solution (30% solid content): 20 parts;

[0052] Silica sol (30% solid content): 7 parts;

[0053] Sodium hydroxide: 4 parts;

[0054] Water: 54 parts;

[0055] Penetrant JFC: 0.2 parts.

[0056]During preparation, first mix sodium silicate with water to obtain a mixed solution; then dissolve sodium hydroxide in the mixed solution to obtain a secondary mixed solution; add weighed silica sol, nano-silicon Calcium acid dispersion and wetting and penetrating agent JFC are mixed to obtain a waterproof material.

[0057] 2. During waterproof construction, spray a sufficient amount of water on the surface of the cement substrate to make it wet. After the surface of the cement substrate has no clear water, spray the first waterproof material evenly; 4 hours after the first waterproof material is sprayed After...

Embodiment 3

[0059] 1. Weigh each raw material component according to parts by weight:

[0060] Nanometer calcium silicate dispersion (solid content 20%): 15 parts;

[0061] Sodium silicate solution (30% solid content): 30 parts;

[0062] Silica sol (30% solid content): 5 parts;

[0063] Sodium hydroxide: 3 parts;

[0064] Water: 47 parts;

[0065] Penetrant JFC: 0.3 parts.

[0066] During preparation, first mix sodium silicate with water to obtain a mixed solution; then dissolve sodium hydroxide in the mixed solution to obtain a secondary mixed solution; add weighed silica sol, nano-silicon Calcium acid dispersion and wetting and penetrating agent JFC are mixed to obtain a waterproof material.

[0067] 2. During waterproof construction, spray a sufficient amount of water on the surface of the cement substrate to make it wet. After the surface of the cement substrate has no clear water, spray the first waterproof material evenly; 4 hours after the first waterproof material is sprayed ...

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Abstract

The invention discloses a waterproof protection construction method which comprises the following steps: spraying enough water on the surface of a cement base material to wet the cement base material,and uniformly spraying a waterproof material for the first time after the surface of the cement base material has no open water; after the waterproof material is sprayed for 3-5 hours for the first time, spraying water mist for maintenance, and spraying water mist for maintenance again after 4-6 hours; spraying water mist on the surface of the cement base material constructed in the previous dayfor maintenance on the second day, and spraying a waterproof material for the second time after 2-4 hours and no open water exists on the surface of the cement base material; after the waterproof material is sprayed for the second time, conducting water mist spraying maintenance after 4-6 hours, conducting water mist spraying maintenance for the second time after 4-6 hours, and completing the construction process. The waterproof material contains nano calcium silicate. A new concrete waterproof mode is provided, the construction process is easy to operate, and the waterproof and anti-seepage state is rapidly achieved after construction.

Description

technical field [0001] The present application relates to the technical field of waterproof engineering, in particular to a construction method for waterproof protection. Background technique [0002] Carbonation is a form of concrete failure, also known as concrete neutralization. Concrete carbonation reduces the alkalinity of concrete and increases the number of hydrogen ions in the concrete pore solution, thus weakening the protective effect of concrete on steel bars. When the carbonation exceeds the protective layer of concrete, in the presence of water and air, the concrete will lose its protective effect on the steel bars, which will cause a series of problems such as steel bar corrosion, shrinkage cracking, and even the disintegration of the gel structure. The methods currently on the market to prevent concrete carbonation: [0003] 1. Improve the impermeability of concrete. Carbonation of concrete is directly related to its impermeability. Generally speaking, the...

Claims

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Application Information

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IPC IPC(8): C04B41/68C04B28/26C04B111/27
CPCC04B28/26C04B41/5072C04B41/68C04B2111/00008C04B2111/00146C04B2111/27C04B41/5024C04B41/5035C04B41/4896C04B41/4543C04B14/043C04B12/04C04B22/062C04B22/002C04B24/32
Inventor 闻琦闻燕柳彦飞徐建越耿泽宇
Owner 朋盼(上海)材料科技有限公司
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