Method for toughening gypsum by means of nickel slag and product prepared through method
A nickel slag and toughening technology, applied in the field of materials, can solve the problems of complex preparation process and high energy consumption, achieve high toughness, save resources, and be conducive to sustainable development
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Embodiment 1
[0022] Mix 238g of nickel slag, 152g of desulfurized gypsum, 570.6g of sugar filter mud and 39.4g of bauxite, put them in a planetary mill, grind for 20min, and the specific surface area is 300m 2 / kg, add 400g water and 0.02% polycarboxylate, take out and pour the mixture into the mould, demoulding after molding, to obtain a block sample;
[0023] Put the above sample in a standard curing box (temperature 20°C, relative humidity 95%) for 3 days, then move it to a digital display constant temperature stirring cycle curing box that has been heated to a set temperature of 80°C, and maintain it at a constant temperature for 12 hours After that, the mechanical properties of the samples were measured. The flexural strength of nickel slag thermal curing products is 5.31MPa, the compressive strength is 8.26MPa, and the impact resistance is 9.85kJ / m 2 .
Embodiment 2
[0025] Mix 169.4g of nickel slag, 219.2g of phosphogypsum, 460.8g of calcium carbide slag and 150.6g of coal gangue and put them in a planetary mill, grind for 30min, and the specific surface area is 350m 2 / kg, add 550g of water and 5% of ordinary Portland cement, take it out, pour the mixture into the mold, demould after molding, and obtain a block sample;
[0026] Put the above samples in a standard curing box (temperature is 20°C, relative humidity is 95%) and maintain for 4 days, then move to a digital display constant temperature stirring circulation curing box that has been heated to a set temperature of 120°C, and maintain at a constant temperature. After 3 h, the mechanical properties of the samples were measured. The flexural strength of nickel slag thermal curing products is 5.57MPa, the compressive strength is 10.13MPa, and the impact resistance is 10.03kJ / m 2 .
Embodiment 3
[0028] Mix 195g of nickel slag, 192.5g of phosphogypsum, 480.2g of calcium carbide slag and 132.2g of coal gangue and put them in a planetary mill, grind for 20min, and the specific surface area is 350m 2 / kg, add 550g of water and 7% high-alumina cement, take it out, pour the mixture into the mold, demould after molding, and obtain a block sample;
[0029] Put the above samples in a standard curing box (temperature is 20°C, relative humidity is 95%) and maintain for 5 days, then move to a digital display constant temperature stirring circulation curing box that has been heated to a set temperature of 50°C, and maintain at a constant temperature. After 24 h, the mechanical properties of the samples were measured. The flexural strength of nickel slag thermal curing products is 4.48MPa, the compressive strength is 7.48MPa, and the impact resistance is 9.59kJ / m 2 .
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