Preparation method of impeller
A technology of impeller and metal alloy, which is applied in the field of impeller preparation, can solve problems such as the size of the finished product exceeding the design requirements, and achieve the effects of ensuring runout tolerance, improving production efficiency, and reducing impact
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Embodiment 1
[0016] A preparation method of an impeller, comprising the following steps: preparing a metal alloy material according to a designed ratio, after the metal alloy material is smelted, poured, and then demolded to obtain an impeller blank; the mass parts of each component of the metal alloy The number is: the mass fraction of each component of the metal alloy is: Al 7 parts, Ti 3 parts, Ni 0.7 parts, Co 0.8 parts, V 0.8 parts, Sn 0.4 parts, Cr 0.3 parts, Cu 0.02 parts, Mg 0.5 parts parts, Mo 0.6 parts, Si 0.7 parts, Fe 0.06 parts, Pr 0.06 parts, Ce 0.01 parts.
[0017] The impeller blank is then heat treated, the impeller is heated to quenching, and then subjected to aging treatment, and finally air-cooled;
[0018] Then the surface is treated, firstly, the surface is roughened with corundum sand, and then the surface is activated;
[0019] The surface of the activated impeller is thermally sprayed to form a wear-resistant coating.
Embodiment 2
[0021] A preparation method of an impeller, comprising the following steps: preparing a metal alloy material according to a designed ratio, after the metal alloy material is smelted, poured, and then demolded to obtain an impeller blank; the mass parts of each component of the metal alloy The numbers are: Al 9 parts, Ti 2 parts, Ni 0.9 parts, Co 0.6 parts, V 0.8 parts, Sn 0.3 parts, Cr 0.4 parts, Cu 0.02 parts, Mg 0.6 parts, Mo 0.5 parts, Si 0.6 parts, Fe 0.06 parts part, 0.06 part of Pr, 0.01 part of Ce.
[0022] The impeller blank is then heat treated, the impeller is heated to quenching, and then subjected to aging treatment, and finally air-cooled;
[0023] Then the surface is treated, firstly, the surface is roughened with corundum sand, and then the surface is activated;
[0024] The surface of the activated impeller is thermally sprayed to form a wear-resistant coating.
Embodiment 3
[0026] A preparation method of an impeller, comprising the following steps: preparing a metal alloy material according to a designed ratio, after the metal alloy material is smelted, poured, and then demolded to obtain an impeller blank; the mass parts of each component of the metal alloy The numbers are: Al 6 parts, Ti 3 parts, Ni 0.9 parts, Co 0.9 parts, V 0.9 parts, Sn 0.4 parts, Cr 0.3 parts, Cu 0.03 parts, Mg 0.5 parts, Mo 0.6 parts, Si 0.9 parts, Fe 0.07 parts part, 0.05 part of Pr, 0.02 part of Ce.
[0027] The impeller blank is then heat treated, the impeller is heated to quenching, and then subjected to aging treatment, and finally air-cooled;
[0028] Then the surface is treated, firstly, the surface is roughened with corundum sand, and then the surface is activated;
[0029] The surface of the activated impeller is thermally sprayed to form a wear-resistant coating.
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