Magnetic conducting coating with compact structure and preparation method thereof
A coating and magnetically conductive technology, applied in the direction of magnetic materials, magnetic objects, electric/magnetic/electromagnetic heating, etc., can solve the problems of decreased electromagnetic heating eddy current effect, decreased block compactness, low electromagnetic heating power, etc. The bonding force of the magnetic conductive coating and the electromagnetic heating power, the bonding force is strong, and the effect is not easy to fall off
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[0052] The invention also discloses a preparation method of a magnetically conductive coating with a dense structure, which includes the following steps: cold spraying the powder of the magnetically conductive metal on the surface of the structure to be sprayed through the working gas.
[0053] The working gas is one or more of air, helium and nitrogen. The injection pressure of the cold spraying is 1-3.5Mpa. The spraying temperature of the cold spraying is 573-1273K. The gas velocity of the cold spraying is 1~2.4m 3 / min. The conveying speed of the magnetically conductive powder for cold spraying is 5-15 kg / h. The spraying distance of the cold spraying is 10-50 mm. The power consumption of the cold spraying is 15-55kW. The magnetically permeable metal is selected from one or a mixture of Fe, Ni, Co, Fe-Si, and stainless steel. The particle size of the magnetically permeable metal powder is 1-50 μm. The thickness of the magnetically permeable coating is 0.1-0.6 mm.
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Embodiment 1
[0062] A pot body includes a pot body and a magnetically conductive coating, and the magnetically conductive coating is located on the outer surface of the pot body. The material of the pot body is aluminum alloy.
[0063] Utilize the cold spray process to prepare the magnetically conductive coating on the pot body, including the following steps:
[0064] 1. Degrease and degrease the outer surface of the pot body to be sprayed;
[0065] 2. The powder of the magnetically conductive metal is cold-sprayed on the outer surface of the pot body through the working gas, and the powder of the magnetically conductive metal forms a magnetically conductive coating on the surface of the pot body. The specific process parameters are:
[0066] (1) The magnetically conductive powder is selected from Fe powder with a purity of 99.0-99.8%, and the powder particle size is 10-20 μm; the working gas adopts high-purity nitrogen, and the purity of nitrogen is 99.99%, and the spraying distance is 2...
Embodiment 2
[0069] A pot body includes a pot body and a magnetically conductive coating, and the magnetically conductive coating is located on the outer surface of the pot body. The material of the pot body is 304 stainless steel.
[0070] Utilize the cold spray process to prepare the magnetically conductive coating on the pot body, including the following steps:
[0071] 1. On the outer surface of the pot body to be sprayed, the position that does not need to be sprayed is shielded with a shielding fixture;
[0072] 2. The powder of the magnetically conductive metal is cold-sprayed on the surface of the pot body through the working gas, and the powder of the magnetically conductive metal forms a magnetically conductive coating on the surface of the pot body. The specific process parameters are:
[0073] (1) The magnetically conductive powder is selected from Fe powder with a purity of 99.0-99.8%, and the powder particle size is 10-20 μm; the working gas adopts high-purity nitrogen, and ...
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