A Polycrystalline Inorganic Light Aggregate Thermal Insulation Mortar
A technology of inorganic light aggregate and thermal insulation mortar, which is applied in the field of building materials, can solve problems such as being wet by rain and snow or in a humid air environment, interface layer hollowing, falling off, etc., to improve penetration, insufficient grip, Improve the compressive strength and enhance the effect of later strength
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Embodiment 1
[0014] A polycrystalline inorganic light-weight aggregate thermal insulation mortar, the composition and mass parts proportion are as follows: 35 parts of cement, 1.5 parts of redispersible latex powder, 0.4 part of hydroxypropyl methylcellulose ether, 0.1 part of air-entraining agent, organic silicon 0.2 parts of water-repellent agent, 40 parts of closed-cell perlite or vitrified microspheres, 5 parts of slag powder, 3 parts of heavy calcium, 4 parts of fly ash, 0.5 parts of wood fiber, and 0.4 part of polypropylene fiber.
Embodiment 2
[0016] A polycrystalline inorganic light aggregate thermal insulation mortar, the composition and mass parts proportion are as follows: 45 parts of cement, 2 parts of redispersible latex powder, 0.6 part of hydroxypropyl methylcellulose ether, 0.3 part of air-entraining agent, organic silicon 0.4 parts of water-repellent agent, 50 parts of closed-cell perlite or vitrified microspheres, 10 parts of slag powder, 5 parts of heavy calcium, 6 parts of fly ash, 1 part of wood fiber, and 0.8 part of polypropylene fiber.
Embodiment 3
[0018] A polycrystalline inorganic lightweight aggregate thermal insulation mortar, the composition and the proportion of parts by mass are as follows: 40 parts of cement, 1.8 parts of redispersible latex powder, 0.5 parts of hydroxypropyl methylcellulose ether, 0.2 parts of air-entraining agent, organic silicon 0.3 parts of water-repellent agent, 45 parts of closed-cell perlite or vitrified microspheres, 7 parts of slag powder, 4 parts of heavy calcium, 5 parts of fly ash, 0.8 parts of wood fiber, and 0.6 part of polypropylene fiber.
[0019] Based on the above-mentioned embodiments, the technical index comparison between the present invention and the thermal insulation mortar of the prior art is as follows:
[0020] 1. Comparison of technical indicators in different time periods without adding polypropylene fiber, wood fiber, and hydroxypropyl methylcellulose ether
[0021]
[0022] Comparison of technical indicators of adding polypropylene fiber, wood fiber and hydroxypr...
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