A kind of high-performance monument repairing material and preparation method thereof
A repair material and high-performance technology, applied in the field of high-performance monument repair materials and their preparation, can solve problems such as compatibility restricting the quality of repair projects, and achieve the effect of high strength, toughness and good compatibility
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Embodiment 1
[0031] 1. Weigh the glutinous rice and deionized water according to the concentration of the glutinous rice slurry to be prepared. Soak the glutinous rice in deionized water for 24 hours, then boil it in a pot for 2 hours. Use a food processor to make glutinous rice juice and supplement the preparation process. Evaporating water in.
[0032] 2. Weigh 287 parts of glutinous rice syrup with a mass concentration of 8%, 115 parts of lime, 344 parts of river sand, 243 parts of composite mineral admixture, CaSO 4 ·2H 2 11 parts of O, placed in a mortar mixer for forced mixing, to make a high-performance monument repair material.
[0033] The above-mentioned composite mineral admixture contains 94.2% by mass of slag powder and 5.8% of silica fume.
[0034] The superplasticizer is methacrylic acid as the main link EO or PO branched polycarboxylic acid.
[0035] The fineness of the composite mineral admixture is less than 80μm, and the fineness Particles <400nm account for 0-8%.
[0036] In the...
Embodiment 2
[0039] Weigh by weight 224 parts of glutinous rice syrup with a mass concentration of 8%, 124 parts of lime, 373 parts of fine aggregate, 268 parts of composite mineral admixture, CaSO 4 ·2H 2 O12 parts, placed in a mortar mixer for forced mixing, then made into a high-performance historic site repair material.
[0040] The above-mentioned composite mineral admixture contains 92.5% of slag powder, 6% of silica fume, and 1.5% of superplasticizer.
[0041] The superplasticizer is methacrylic acid as the main link EO or PO branched polycarboxylic acid.
[0042] The fineness of the composite mineral admixture is less than 80μm, and the fineness Particles <400nm account for 0-8%.
[0043] In the fine aggregate, particles of 1.0-5.0 mm, 0.5-1.0 mm and 0.08-0.5 mm each account for 1 / 3.
[0044] The flexural strength of the prepared repair material at 7d is 3.3MPa, the compressive strength is 19.3MPa, the flexural strength at 14d is 3.1MPa, the compressive strength is 19.3MPa, the flexural stre...
Embodiment 3
[0046] Weigh by weight 224 parts of glutinous rice paste with a mass concentration of 8%, 125 parts of lime, 374 parts of river sand, 266 parts of composite mineral admixture, CaSO 4 ·2H 2 O12 parts are placed in a mortar mixer for forced mixing to make a high-performance monument repair material.
[0047] The above-mentioned composite mineral admixture contains 93.6% by mass of slag powder, 6% of silica fume, and 0.4% of superplasticizer.
[0048] The superplasticizer is methacrylic acid as the main link EO or PO branched polycarboxylic acid.
[0049] The fineness of the composite mineral admixture is less than 80μm, and the fineness Particles <400nm account for 0-8%.
[0050] In the fine aggregate, particles of 1.0-5.0 mm, 0.5-1.0 mm and 0.08-0.5 mm each account for 1 / 3.
[0051] The flexural strength of the prepared repair material at 7d is 3.1MPa, the compressive strength is 19.3MPa, the flexural strength at 14d is 3.7MPa, the compressive strength is 22.8MPa, and the flexural streng...
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