Preparation method of ceramic-metal compound wear-resistant material
A technology of wear-resistant materials and ceramic metals, which is applied in the field of wear-resistant composite materials, can solve the problems that cannot fundamentally solve the problem of adhesion between ceramic particles and matrix metals, and achieve high yield, stable performance, and simple production.
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Embodiment 1
[0018] Preparation of Porous Ceramic Preforms:
[0019] The zirconia ceramic powder with a particle size of 50-260 meshes and the dispersant sodium carboxymethyl cellulose are uniformly mixed in a ceramic ball mill, wherein the added amount of the sodium carboxymethyl cellulose accounts for 0.5% of the mass fraction of the ceramic particles. The solid content of the slurry is 65%, and then the porous ceramic prefabricated part is obtained by casting, drying, sintering and cooling with the furnace.
[0020] Nickel plating on the surface of ceramic preforms:
[0021] The above-mentioned porous ceramic preform is subjected to surface treatment according to the following steps:
[0022] 1. Degreasing: soak in anhydrous alcohol solution for 10-35 minutes, wash with deionized water under the action of ultrasonic waves, completely degrease the surface of the prefabricated part, and then dry it naturally.
[0023] 2. Roughening: Under the action of ultrasonic waves, soak in hydroflu...
Embodiment 2
[0032] Preparation of gridded ceramic preforms:
[0033] Alumina ceramic powder with particle size of 200-300 mesh, zirconia ceramic powder of 200-300 mesh, binder sodium lignosulfonate, plasticizer dibutyl phthalate and auxiliary glycerin are uniformly mixed. The mass ratio of the alumina ceramic powder to the zirconia ceramic powder is 1:1, wherein the added amount of sodium sulfonate accounts for 1.5% of the total mass of the ceramic powder. The plasticizer dibutyl phthalate accounts for 0.5% of the total mass of the ceramic powder. Auxiliary glycerin accounts for 0.5% of the total mass of the ceramic powder. Then it is pressed into a grid-shaped ceramic green body and dried. Then sintering and cooling with the furnace to obtain grid-like ceramic prefabricated parts.
[0034] Nickel plating on the surface of grid-like ceramic preforms:
[0035] Surface treatment of the grid-shaped ceramic prefabricated part is carried out according to the following steps:
[0036] 1. D...
Embodiment 3
[0046] Preparation of Porous Ceramic Preforms:
[0047] Alumina ceramic powder with a particle size of 200-300 meshes and sodium carboxymethylcellulose as a dispersant are uniformly mixed in a ceramic ball mill, wherein the amount of sodium carboxymethylcellulose accounts for 1.0% of the mass of ceramic particles. The solid content of the slurry is 60%, and then it is molded by pouring and dried. Then sintering and cooling with the furnace to obtain porous irregular ceramic prefabricated parts.
[0048] Nickel plating on the surface of porous ceramic preforms:
[0049] The porous irregular ceramic preform is subjected to surface treatment according to the following steps:
[0050] 1. Degreasing: soak in anhydrous alcohol solution for 10-35 minutes, wash with deionized water under the action of ultrasonic waves, completely degrease the surface of the prefabricated part, and then dry it naturally.
[0051] 2. Roughening: Under the action of ultrasonic waves, soak in hydrofluo...
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Abstract
Description
Claims
Application Information
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