Phase change material wrapped thermal storage concrete and preparation method thereof
A phase change material and concrete technology, applied in the field of energy storage materials, can solve the problems of high processing cost, high installation and transportation cost, high corrosion of molten salt, increase application cost, etc., achieve good chemical stability, and improve unit heat storage. , the effect of reducing the dosage
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Embodiment 1
[0030] The weight ratio and particle size of the raw materials are: 30% dolomite aggregate, particle size 5-20mm; 45% bauxite aggregate, particle size 1-5mm; 300 mesh aluminate cement 10%; 500 mesh silica powder 5%; 300 mesh activated alumina powder 3%, 300 mesh silicon carbide powder 2%; adipic acid / silica capsule particles 5%; plus 1.0% of the total mass of the aforementioned raw materials composite water reducer.
[0031] After the above-mentioned raw materials are dry mixed uniformly, add 4% water, mix evenly and place in a steel mold mold, leave it at room temperature for 24 hours, then demold, dry and cure for 72 hours at 20-25℃, and then at 105-120 Bake at ℃ for 24h to obtain the sample. The density of the heat storage material is 2.85g / cm 3 , After testing, the compressive strength of the material is 37.8MPa, the flexural strength is 6.2MPa, the specific heat capacity measured on the comprehensive thermal analyzer is 1.88J / (g·℃), and the thermal conductivity measured by t...
Embodiment 2
[0033] The weight ratio and particle size of the raw materials are: 50% dolomite aggregate, particle size 5-20mm; 30% bauxite aggregate, particle size 1-5mm; 300 mesh aluminate cement 5%; 500 mesh silica powder 3%; 300 mesh activated alumina powder 3%, 300 mesh silicon carbide powder 1%; adipic acid / silica capsule particles 8%; plus a composite water reducing agent accounting for 0.8% of the total mass of the aforementioned raw materials.
[0034] After the above-mentioned raw materials are dry mixed uniformly, add 5% water, then mix evenly and place in a steel mold mold, leave it at room temperature for 24 hours, then demold, dry and cure at 20-25℃ for 72h, and then at 105-120 Bake at ℃ for 24h to obtain the sample. The density of the heat storage material is 2.94g / cm 3 After testing, the compressive strength of the material is 32.8MPa, the flexural strength is 5.7MPa, the specific heat capacity measured on the comprehensive thermal analyzer is 2.37J / (g·℃), and the thermal condu...
Embodiment 3
[0036] The weight ratio and particle size of the raw materials are: dolomite aggregate 50%, particle size 5-20mm; bauxite aggregate 20%, particle size 1-5mm; 300 mesh aluminate cement 10%; 500 mesh silica powder 5%; 300 mesh activated alumina powder 8%, 300 mesh silicon carbide powder 1%; adipic acid / silica capsule particles 6%; plus 0.3% of the total mass of the aforementioned raw materials composite water reducer.
[0037] After the above-mentioned raw materials are dry-mixed uniformly, add 6% water, mix well and place in a steel mold, leave it at room temperature for 24 hours, then demold, dry and cure for 72 hours at a temperature of 20-25 ℃, and then at 105-120 Bake at ℃ for 24h to obtain the sample. The density of the heat storage material is 2.87g / cm 3 After testing, the compressive strength of the material is 38.8MPa, the flexural strength is 6.6MPa, the specific heat capacity measured on the comprehensive thermal analyzer is 2.09J / (g·℃), and the thermal conductivity meas...
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