A concrete anti-medium erosion admixture based on in-situ reaction encapsulation technology and its preparation method

An in-situ reaction and concrete technology, applied in the field of building materials, can solve the problems of reduced diffusion coefficient, unfavorable automatic release of highly active substances, and questionable effect, and achieve low dosage, long-term chloride ion diffusion coefficient reduction, and chloride ion diffusion. The effect of coefficient reduction

Active Publication Date: 2021-11-19
JIANGSU SOBUTE NEW MATERIALS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0010] Nevertheless, the substantive content of the above-mentioned patent application has the following problems: (1) The purpose of using encapsulated highly reactive substances is to realize the self-healing effect on concrete cracks in the later stage, and the goal is not to significantly reduce the long-term chloride ion diffusion coefficient of concrete ; (2) Organic materials are mainly used as packaging materials, and the high-active substances are physically coated, which is not conducive to the automatic release of high-active substances, and it is necessary to use external force to destroy the packaging materials to produce effects
To sum up, the above-mentioned documents all report the encapsulation materials, preparation methods and application technologies for highly reactive substances in concrete, but the above-mentioned patent applications focus on the self-healing function of concrete, and do not include the long-term chloride ion diffusion coefficient of concrete Therefore, the effect of the above-mentioned technology on inhibiting the chloride ion diffusion coefficient of concrete under long-term service conditions remains to be discussed.

Method used

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  • A concrete anti-medium erosion admixture based on in-situ reaction encapsulation technology and its preparation method
  • A concrete anti-medium erosion admixture based on in-situ reaction encapsulation technology and its preparation method
  • A concrete anti-medium erosion admixture based on in-situ reaction encapsulation technology and its preparation method

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Embodiment 1

[0035] A kind of concrete anti-medium erosion admixture based on in-situ reaction encapsulation technology, it comprises the following steps:

[0036] The admixture is composed of encapsulation components, active components, dispersion components, water

[0037]

[0038] Packaging components: Nanjing Chemical Reagent Co., Ltd., magnesium chloride (chemically pure), aluminum chloride (chemically pure), sodium carbonate (chemically pure), sodium hydroxide (chemically pure); Shanghai Aladdin Biochemical Technology Co., Ltd., ten Hexaalkyltrimethylammonium bromide (chemically pure).

[0039] Active ingredient: Shanghai Aladdin Biochemical Technology Co., Ltd., silica sol (average particle size 5nm, 30% concentration).

[0040] Dispersion component: Jiangsu Subote New Material Co., Ltd., PCE-801 (20% concentration).

[0041] Water: deionized water

[0042] Preparation method: (1) Add magnesium chloride and aluminum chloride to a certain amount of water to prepare Mg 2+ The c...

Embodiment 2

[0049] A kind of concrete anti-medium erosion admixture based on in-situ reaction encapsulation technology, it comprises the following steps:

[0050] The admixture is composed of encapsulation components, active components, dispersion components, water

[0051]

[0052] Packaging components: Nanjing Chemical Reagent Co., Ltd., magnesium nitrate (chemically pure), aluminum nitrate (chemically pure), potassium carbonate (chemically pure), potassium hydroxide (chemically pure); Shanghai Aladdin Biochemical Technology Co., Ltd., A Amide (chemically pure).

[0053] Active ingredient: Nanjing Wanqing Huabo Instrument Co., Ltd., silica sol (average particle size 3nm, 20% concentration).

[0054] Dispersion component: Jiangsu Subote New Material Co., Ltd., PCE-403 (20% concentration).

[0055] Water: deionized water

[0056] Preparation method: (1) Add magnesium nitrate and aluminum nitrate to a certain amount of water to prepare Mg 2+ The concentration is 1.5mol / l, Al 3+ A m...

Embodiment 3

[0062] A kind of concrete anti-medium erosion admixture based on in-situ reaction encapsulation technology, it comprises the following steps:

[0063] The admixture is composed of encapsulation components, active components, dispersion components, water

[0064]

[0065] Packaging components: Nanjing Chemical Reagent Co., Ltd., magnesium sulfate (chemically pure), aluminum sulfate (chemically pure), sodium carbonate (chemically pure), ammonia (chemically pure); Shanghai Aladdin Biochemical Technology Co., Ltd., N-form Dimethylformamide (chemically pure), dimethylformamide (chemically pure).

[0066] Active ingredient: Nanjing Wanqing Huabo Instrument Co., Ltd., silica sol (average particle size 5nm, 35% concentration).

[0067] Dispersion component: Jiangsu Subote New Material Co., Ltd., PCE-650 (20% concentration).

[0068] Water: deionized water

[0069] Preparation method: (1) Add magnesium sulfate and aluminum sulfate to a certain amount of water to prepare Mg 2+ Th...

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Abstract

The invention discloses a concrete anti-medium erosion admixture based on in-situ reaction encapsulation technology and a preparation method. The core component of the concrete anti-medium erosion admixture based on in-situ reaction encapsulation technology is an encapsulated active component, and the encapsulation is to absorb and encapsulate the active component in the interlayer structure by the encapsulation component, The ratio between the encapsulating component and the active component is 0.5-8. The present invention encapsulates the inorganic nano-silica particles with high hydration reaction activity based on the coating technology, and then encapsulates the dissociation, release, and reaction of the inorganic nano-silica particles in the concrete hydration microenvironment in the later stage, and passes through the service process of the concrete The optimization of the microstructure realizes the obvious reduction of the long-term chloride ion diffusion coefficient of concrete, and provides a concrete anti-medium erosion admixture and preparation method based on in-situ reaction packaging technology for the improvement of concrete durability.

Description

technical field [0001] The invention belongs to the technical field of building materials, and in particular relates to a concrete anti-medium erosion admixture based on in-situ reaction encapsulation technology and a preparation method thereof. Background technique [0002] Concrete is an important building material for infrastructure construction and is widely used in the main structural parts of construction projects. In recent years, with the promotion and implementation of major national strategies, the service environment, construction conditions and design life of my country's infrastructure have shown new characteristics. Traditional concrete has been difficult to adapt to the new changes in the design, construction and service performance of building structures. It is imperative to research new technologies to ensure and improve the durability of concrete in harsh environments. [0003] The main factors affecting the durability of concrete can be attributed to the ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B24/24C04B22/06C04B14/36C04B103/61
CPCC04B14/36C04B40/0039C04B2103/61C04B22/06C04B24/24C04B24/005C04B24/124
Inventor 穆松刘加平洪锦祥石亮蔡景顺周莹秦晓川周霄骋刘凯吴贞杰
Owner JIANGSU SOBUTE NEW MATERIALS
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