A low-shrinkage and high-bonding inorganic thermal insulation mortar
An inorganic thermal insulation mortar and high-bonding technology, which is applied in the field of building energy-saving thermal insulation materials, can solve the problems of large drying shrinkage and low bonding strength of inorganic thermal insulation mortar, and achieve the effects of environmental protection, low thermal conductivity, and improved activity
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Embodiment 1
[0041] Example 1: A low-shrinkage and high-bonding inorganic thermal insulation mortar, the weight percentage of each component is: 13.1% of dead-burned magnesium oxide, 8.9% of potassium dihydrogen phosphate, 27.0% of phosphorus slag, and 6.0% of fly ash %, vitrified microbeads 40.0%, borax 0.53%, barium hydroxide 0.47%, natron 3.0%, ethylene / vinyl acetate copolymer 0.59%, hydroxypropyl methyl cellulose ether 0.29 %, lignin fiber is 0.12%.
Embodiment 2
[0042] Example 2: A low-shrinkage and high-bonding inorganic thermal insulation mortar, the weight percentage of each component is: 15.0% of dead-burned magnesium oxide, 12.8% of potassium dihydrogen phosphate, 21.6% of phosphorus slag, and 6% of fly ash %, vitrified microbeads 40.0%, borax 0.75%, barium hydroxide 0.45%, natron 2.4%, ethylene / vinyl acetate copolymer 0.59%, hydroxypropyl methyl cellulose ether 0.29 %, lignin fiber is 0.12%.
Embodiment 3
[0043] Example 3: A low-shrinkage and high-bonding inorganic thermal insulation mortar, the weight percentage of each component is: 16.0% of dead-burned magnesium oxide, 18.2% of potassium dihydrogen phosphate, 16.2% of phosphorus slag, and 6.0% of fly ash %, vitrified microbeads 40.0%, borax 0.48%, barium hydroxide 0.32%, natron 1.8%, ethylene / vinyl acetate copolymer 0.59%, hydroxypropyl methyl cellulose ether 0.29% %, lignin fiber is 0.12%.
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