Super hydrophilic functional ceramic material easy to be cleaned and preparation technique
A functional ceramic and hydrophilic technology, applied in the field of super hydrophilic and easy-to-clean functional ceramic materials, can solve the problems of drainage, water pollution, and inability to kill them.
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Embodiment 1
[0072] The super-hydrophilic and easy-to-clean functional ceramic material of the present invention, the percentage molar ratio of raw material used is:
[0073] 5% of cerium nitrate, 35% of silicon oxide, 30% of aluminum oxide, 10% of tourmaline with a particle size of 5-15 microns, 10% of potassium oxide, and 10% of inorganic composite antibacterial agent.
[0074] The preparation process is to mix cerium nitrate, silicon oxide, aluminum oxide, potassium oxide and the inorganic composite antibacterial agent produced and sold by the applicant for 8 hours in the early stage, and then add tourmaline powder for 12 hours in the later stage of ball milling, and heat and melt to 1250 ±20°C, keep warm for 2 hours, quench with warm tap water to form a frit, and then pulverize to produce the superfine hydrophilic and easy-cleaning functional ceramic powder material of the present invention with a particle size of 1-8 microns.
Embodiment 2
[0076] The super-hydrophilic and easy-to-clean functional ceramic material of the present invention, the percentage molar ratio of raw material used is:
[0077] 10% of cerium nitrate, 40% of silicon oxide, 25% of aluminum oxide, 5% of tourmaline with a particle size of 5-15 microns, 12% of potassium oxide, and 8% of inorganic composite antibacterial agent.
[0078] The preparation process is the same as that in Example 1, and the control parameters are as follows: 5 hours of mixed ball milling in the early stage, 20 hours of ball milling in the later stage, melting temperature at 1300±20° C., and heat preservation for 1.5 hours.
Embodiment 3
[0080] The super-hydrophilic and easy-to-clean functional ceramic material of the present invention, the percentage molar ratio of raw material used is:
[0081] 6% cerium oxide rare earth material, 40% ultra-fine rutile titanium oxide powder far-infrared radiation material with a particle size of less than 5 microns, 30% magnesium oxide surface energy adjustment material, and tourmaline charge control material with a particle size of 5-15 microns 4%, sodium oxide fluxing material 12%, inorganic composite antibacterial agent 8%.
[0082] The preparation process is to mix and ball-mill rare earth materials, far-infrared radiation materials, surface energy adjustment materials, fluxing materials and inorganic antibacterial materials for 8 hours in the early stage, then add tourmaline powder for post-stage ball milling for 16 hours, and heat and melt to 1300±20°C , heat preservation for 2 hours, quenched in water to make a frit, and then pulverized to make a powder product.
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