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Reinforcing agent for bonding bricks

A bonding enhancer and enhancer technology, applied in the field of construction mortar materials, can solve the problems of short service life of adhesives, poor aging resistance, waste of manpower and material resources, etc., achieve good brushing performance, and reduce large-area hollowing Or fall, guarantee the effect of construction time

Active Publication Date: 2015-04-01
上海曹杨建筑粘合剂厂
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Cement-based dry powder vitrified tile adhesives are mainly composed of cement, sand and additives. The adhesive after adding water is too thick to penetrate into the interior of dense vitrified tiles to form a bite force, and can only form a sticky surface on the surface. Once affected by the environment, temperature difference, base layer deformation and other factors, it is easy to cause the breakage of molecular bonds, so that the vitrified bricks will fall and hollow out, causing certain safety hazards, and at the same time increasing the repair rate in the later period, wasting a lot of manpower and physical resources
However, polymer epoxy adhesives have short service life, poor aging resistance, and are not environmentally friendly products, so they are not suitable for indoor environments.

Method used

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  • Reinforcing agent for bonding bricks

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0031] Preparation of powder components, taking the preparation of 1000kg powder components as an example:

[0032] Mix 350kg of 42.5 ordinary Portland cement, 615kg of 30-60 mesh quartz sand, 30kg of redispersible latex powder VAE type and 5kg of hydroxypropyl methyl cellulose ether with a viscosity of 40000 / mPa·s and stir evenly.

[0033] Preparation of liquid components, taking the preparation of 500kg liquid components as an example:

[0034] Pour 200kg of acrylic emulsion into the container, then add 300kg of water and stir evenly.

[0035] The liquid component and the powder component are prepared according to the ratio of liquid: powder of 1:2, and stirred evenly to obtain the brick adhesion enhancer.

Embodiment 2

[0037] Preparation of powder components, taking the preparation of 100kg powder components as an example:

[0038] Mix 35 kg of 42.5 ordinary Portland cement, 62.5 kg of 30-60 mesh quartz sand, 2 kg of redispersible latex powder VAE, and 0.5 kg of hydroxypropyl methylcellulose ether and mix them evenly.

[0039] Preparation of liquid components, taking the preparation of 50kg liquid components as an example:

[0040] Add 25 kg of acrylic emulsion to 25 kg of water and stir evenly.

[0041] The liquid component and the powder component are prepared according to the ratio of liquid: powder of 1:2, and stirred evenly to obtain the brick adhesion enhancer.

Embodiment 3

[0043] Preparation of powder components, taking the preparation of 500kg powder components as an example:

[0044] Mix 175 kg of 42.5 ordinary Portland cement, 318.5 kg of 30-60 mesh quartz sand, 5 kg of redispersible latex powder VAE, and 1.5 kg of hydroxypropyl methyl cellulose ether and mix well.

[0045] Preparation of liquid components, taking the preparation of 250kg liquid components as an example:

[0046] Add 150 kg of acrylic emulsion to 100 kg of water and stir evenly.

[0047] The liquid component and the powder component are prepared according to the ratio of liquid: powder of 1:2, and stirred evenly to obtain the brick adhesion enhancer.

[0048] The present invention prepared in the above examples is brushed on the back of the same vitrified brick, and after drying, it is pasted on the base concrete slab with a cement-based adhesive, and its tensile bond strength is tested after 7 days of maintenance in a standard laboratory. size and damage (Table 1).

[004...

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PUM

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Abstract

The invention discloses a reinforcing agent for bonding bricks. The reinforcing agent is prepared from a powder component and a liquid component, which are mixed evenly at the ratio of 2 to 1 in use, wherein the powder component is prepared from the following raw materials: 30%-45% of 42.5 ordinary portland cement, 51.5%-68.8% of 30-60mesh quartz sand, 1%-3% of redispersible powder VAE, and 0.2%-0.5% of hydroxypropyl methyl cellulose ether with the viscosity being 40000 / mPa.s; and the liquid component is prepared from the following raw materials: 40%-60% of acrylic emulsion and 40%-60% of water. The reinforcing agent is coated on the back surface of each brick, and then is dried, and the bricks are pasted by adopting a cement-based adhesive. According to the reinforcing agent disclosed by the invention, the tensile adhesive strength between the adhesive and the bricks is improved; the situations of hollowing and dropping of the bricks after being pasted are reduced; and the bricks are relatively firm and safe to paste.

Description

technical field [0001] The invention belongs to construction mortar materials, and is a two-component adhesive mortar modified by polymer emulsion, that is, a brick adhesion enhancer. Background technique [0002] With the variety of indoor decorative bricks becoming more and more diverse, various types of vitrified bricks, artificial marble, and homogeneous bricks have been used as important decorative materials on indoor floors and walls. Extremely low water absorption, fairly dense material and smooth surface bring great difficulty to the subsequent bonding materials. [0003] At present, most of the vitrified tile paste materials used in the market are generally cement-based dry powder type vitrified tile adhesives or polymer epoxy glue adhesives. Cement-based dry powder vitrified tile adhesives are mainly composed of cement, sand and additives. The adhesive after adding water is too thick to penetrate into the interior of dense vitrified tiles to form a bite force, and...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B28/04
Inventor 蒋丽莉任飞
Owner 上海曹杨建筑粘合剂厂
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