Preparation of ordered big hole porous ceramic film material
A technology of porous ceramics and ceramic powders, applied in ceramic products, applications, household appliances, etc., can solve the problems of small porosity adjustment range of porous materials, large pore size dispersion of porous materials, poor mechanical properties, etc., to ensure homogeneity Effect of isotropy, lower manufacturing cost, and less stress concentration
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[0018] The present invention will be described in further detail below. The present invention is a method for preparing a porous material with an ordered and controllable pore structure, which is characterized in that the operation steps of the method are as follows:
[0019] (1) Prepare an aqueous adhesive solution, add one of the following substances in deionized water: polyvinyl alcohol, polyethylene glycol, sucrose, polyethylene oxide, polyvinylpyrrolidone, and prepare an aqueous solution with a percentage concentration of 0.5% to 10wt%. ;
[0020] (2) Prepare ceramic raw materials; weigh ceramic powder and adhesive aqueous solution according to the formula of ceramic materials to be prepared, and the solid phase volume fraction of ceramic raw materials is 25vol%~55vol%;
[0021] (3) Weighing dispersant and regulator; dispersant is one of the following substances or a mixture of several substances: ammonium polyacrylate, ammonium polymethacrylate, acrylic acid-acrylate bi...
Embodiment 1
[0030] Example 1: A porous alumina ceramic with a pore size of 300 μm.
[0031] The raw material is alumina powder α-Al 2 o 3 (purity is 99.99%, d50=0.46μm), Suzhou soil, calcium carbonate CaCO 3, and its ratio is 30:1.5:1. Add polyvinyl alcohol with a percentage concentration of 1 wt% into deionized water and completely dissolve it to obtain an aqueous adhesive solution. The monodisperse polystyrene microspheres adopt the particle diameter of 350 μm (the average shrinkage rate of the pore diameter is about 15%). Prepare a ceramic slurry with a solid content of about 30 vol%, and then add 1% acrylic acid-acrylate binary copolymer and tetramethylammonium hydroxide respectively. Mix by ball milling for 5 hours and pour the slurry into a container. Monodisperse polystyrene microspheres are placed in a 100-mesh sieve, and the mixed slurry is slowly poured on it, and stirred evenly with a glass rod, so that the surface of each microsphere has the same amount of slurry adhered ...
Embodiment 2
[0032] Example 2: Porous alumina ceramics with a pore size of 400 μm
[0033] The raw material is alumina powder α-Al 2 o 3 (purity is 99.99%, d50=0.46μm), Suzhou soil, calcium carbonate CaCO 3 , and its ratio is 40:2:1. Add polyethylene glycol with a percentage concentration of 2wt% in deionized water and completely dissolve it to obtain an aqueous adhesive solution. The monodisperse polystyrene microspheres adopt the particle diameter of 470 μm (the average shrinkage rate of the pore diameter is about 15%). Prepare a ceramic slurry with a solid content of about 40 vol%, and then add 2% ammonium polyacrylate and ammonia water respectively. Mix by ball milling for 10 hours and pour the slurry into a container. Monodisperse polystyrene microspheres are placed in a 60-mesh sieve, slowly pour the mixed slurry on top, and stir evenly with a glass rod, so that the same amount of slurry adhered to the surface of each microsphere (as required) Can be reapplied). Carry out natu...
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