Thermal-insulation mortar
A technology of thermal insulation mortar and thermal insulation aggregate, applied in the fields of vitrified microbead thermal insulation mortar and thermal insulation mortar, can solve the problems of limited bonding ability of substrates, uneven performance, slow coagulation and hardening, etc., and achieve good thermal insulation properties. , strong adhesion, excellent crack resistance
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Embodiment 1
[0013] A thermal insulation mortar prepared according to a conventional thermal insulation mortar preparation method, comprising the following components in parts by weight: 40 parts of Portland cement, 30 parts of vitrified microbeads, 15 parts of carbon aerogel, 4 parts of light-burned magnesia, silicon 1 part of algae earth, 1 part of polypropylene fiber, 1 part of acrylic elastic emulsion, 1 part of polypropylene alcohol, 1 part of cellulose ether, and 1 part of hydroxyethyl cellulose ether.
Embodiment 2
[0015] A thermal insulation mortar prepared according to a conventional thermal insulation mortar preparation method, comprising the following components in parts by weight: 30 parts of Portland cement, 20 parts of vitrified microbeads, 10 parts of carbon aerogel, 7 parts of light-burned magnesia, silicon 3 parts of algae earth, 2 parts of polypropylene fiber, 2 parts of acrylic elastic emulsion, 2 parts of polypropylene alcohol, 2 parts of cellulose ether, and 2 parts of hydroxyethyl cellulose ether.
Embodiment 3
[0017] A thermal insulation mortar prepared according to a conventional thermal insulation mortar preparation method, comprising the following components in parts by weight: 33 parts of Portland cement, 23 parts of vitrified microbeads, 12 parts of carbon aerogel, 5 parts of light-burned magnesia, silicon 2 parts of algae earth, 1 part of polypropylene fiber, 1 part of acrylic elastic emulsion, 1 part of polypropylene alcohol, 1 part of cellulose ether, and 1 part of hydroxyethyl cellulose ether.
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