A kind of industrial high temperature heat storage concrete material and its preparation method
A concrete and industrial technology, applied in the field of industrial high-temperature heat storage concrete materials and their preparation, can solve the problems of low phase transition temperature, complex preparation process, poor heat storage capacity, etc. , the effect of improving the service life and stability
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Embodiment 1
[0031] The weight ratio and particle size of raw materials are: basalt aggregate 30%, particle size 5-20mm; bauxite clinker aggregate 45%, particle size 1-5mm; silica sol 5%, all passed through 80μm negative pressure sieve; 200 mesh silicon Micropowder 8%; 200 mesh activated alumina powder 3%; 200 mesh silicon carbide powder 1%; NaNO 3 / Al 2 o 3 8% of composite capsule particles; the addition of composite water reducer accounts for 0.7% of the total mass of the aforementioned raw materials.
[0032] After the above raw materials are uniformly dry-mixed, add 6% water, mix evenly, place in a steel mold, place at room temperature for 24 hours, demould, and vibrate on a vibrating table for 30-60s. Dry and cure at 20-25°C for 72 hours, and then bake at 105-120°C for 24 hours to obtain the sample.
[0033] The density of heat storage material is 2.67g / cm 3 After testing, the compressive strength of the material is 53.2MPa, the flexural strength is 6.5MPa, and the volumetric heat...
Embodiment 2
[0035] The weight ratio and particle size of the raw material composition are: basalt aggregate 30%, particle size 5-20mm; bauxite clinker aggregate 45%, particle size 1-5mm; silica sol 10%, all passed through 80μm negative pressure sieve; 200 mesh silicon Micropowder 3%; 200 mesh activated alumina powder 3%; 200 mesh silicon carbide powder 1%; NaNO 3 / Al 2 o 3 8% of composite capsule particles; the addition of composite water reducing agent accounts for 1.0% of the total mass of the aforementioned raw materials.
[0036] After the above raw materials are uniformly dry-mixed, add 6% water, mix evenly, place in a steel mold, place at room temperature for 24 hours, demould, and vibrate on a vibrating table for 30-60s. Dry and cure at 20-25°C for 72 hours, and then bake at 105-120°C for 24 hours to obtain the sample.
[0037] The density of heat storage material is 2.66g / cm 3 After testing, the compressive strength of the material is 56.3MPa, the flexural strength is 6.8MPa, ...
Embodiment 3
[0039] The weight ratio and particle size of the raw material composition are: basalt aggregate 45%, particle size 5-20mm; bauxite clinker aggregate 20%, particle size 1-5mm; silica sol 5%, all passed through 80μm negative pressure sieve; 200 mesh silicon Micropowder 4%; 200 mesh activated alumina powder 8%; 200 mesh silicon carbide powder 8%; NaNO 3 / Al 2 o 3 10% of composite capsule particles; the addition of composite water reducer accounts for 0.3% of the total mass of the aforementioned raw materials.
[0040] After the above raw materials are uniformly dry-mixed, add 6% water, mix evenly, place in a steel mold, place at room temperature for 24 hours, demould, and vibrate on a vibrating table for 30-60s. Dry and cure at 20-25°C for 72 hours, and then bake at 105-120°C for 24 hours to obtain the sample.
[0041] The density of heat storage material is 2.63g / cm 3 After testing, the compressive strength of the material is 52.4MPa, the flexural strength is 6.6MPa, and the...
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