Preparation method of high temperature heat storage material
A heat storage material and high temperature technology, applied in the direction of heat exchange materials, chemical instruments and methods, mechanical equipment, etc., can solve the problems of high cost and can only be used at low temperature, so as to improve the strength and reduce the water consumption of mixing , Excellent heat absorption effect
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Embodiment 1
[0015] The weight ratio and particle size of the raw materials are: basalt aggregate 37%, particle size 10-30mm; bauxite aggregate 33%, particle size 1-10mm; 500 mesh aluminate cement 8%; 500 mesh activated alumina powder 5% ; 500 mesh kyanite 7%; 500 mesh silica powder 5%; 800 mesh natural graphite 5%; plus a high-efficiency composite water reducer 0.3%.
[0016] After the above raw materials are dry mixed uniformly, add 5% water, mix evenly and place in a steel mold mold. After 24 hours, the mold will be demolded. After curing in water at a temperature of 20~25℃ for 72 hours, at a temperature of 100~120℃ Bake for 24 hours. The density of the heat storage material is 2.88g / cm 3 , Measured on the INSTRON-1195 million capacity test machine, the compressive strength of the material is ≥60MPa, the flexural strength is ≥10MPa, and the volumetric heat capacity measured on the comprehensive thermal analyzer is 125kWh / m 3 , The thermal conductivity measured by the thermal conductivity me...
Embodiment 2
[0018] The weight ratio and particle size of the raw materials are: 35% basalt aggregate, particle size 10-30mm; 35% bauxite aggregate, particle size 1-10mm; 500 mesh aluminate cement 6%; 500 mesh activated alumina powder 4% ; 500 mesh kyanite 11%; 500 mesh silica powder 5%; 800 mesh natural graphite 4%; plus high-efficiency composite water reducer 0.5%.
[0019] After the raw materials are mixed uniformly by dry ingredients, add 5.5% water, mix evenly and place in the steel mold, demoulding after 24 hours, curing in water at 20~25℃ for 72 hours, at 100~120℃ Bake for 24 hours. The density of the heat storage material is 2.86g / cm 3 , Measured on the INSTRON-1195 million capacity test machine, the material’s compressive strength≥70MPa, flexural strength σb≥11MPa, and volumetric heat capacity 128kWh / m 3 , Thermal conductivity 1.82W / mK, refractoriness: 1590℃. The heat storage material obtained in this example can be used as a heat storage material for solar high-temperature steam powe...
Embodiment 3
[0021] The weight ratio and particle size of raw materials are: 30% basalt aggregate, particle size 10-30mm; bauxite aggregate 40%, particle size 1-10mm; 500 mesh aluminate cement 5%; 500 mesh activated alumina powder 8% ; 500 mesh kyanite 9%; 500 mesh silica powder 3%; 800 mesh natural graphite 5%; plus high-efficiency composite water reducer 0.4%.
[0022] After the above raw materials are dry mixed uniformly, add 5% water, mix evenly and place in a steel mold mold. After 24 hours, the mold will be demolded. After curing in water at a temperature of 20~25℃ for 72 hours, at a temperature of 100~120℃ Bake for 24 hours. The density of the heat storage material is 2.94g / cm 3 , Measured on the INSTRON-1195 million capacity test machine, the compressive strength of the material is ≥55MPa, the flexural strength is ≥10MPa, and the volumetric heat capacity measured on the comprehensive thermal analyzer is 130kWh / m 3 , The thermal conductivity measured by the thermal conductivity meter is...
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