Coating for tungsten-copper alloy material and preparation method thereof
A technology of tungsten-copper alloy and coating, which is applied in the field of coating for tungsten-copper alloy materials and its preparation, can solve the problems that the anti-oxidation ability cannot meet the use requirements, the application requirements of alloy materials cannot be met, and the material surface is not firmly bonded. Achieve the effects of small particle size, anti-diffusion, and strong surface activity
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Embodiment 1
[0029] A coating for a tungsten-copper alloy material (the mass fraction of tungsten in the tungsten-copper alloy material is 90%, and the mass fraction of copper is 10%), the coating includes a transition layer and an anti-oxidation layer formed sequentially on the surface of the alloy material , the transition layer includes the following raw materials by weight: 15 parts of nano-tin oxide, 10 parts of strontium fluoride, 0.1 part of tetrabutyl titanate, and 1 part of polyvinyl alcohol; the anti-oxidation layer includes the following raw materials by weight: 10 parts of nano-cerium oxide part, 30 parts of silicon-barium-iron alloy powder.
[0030] The preparation method of coating for above-mentioned tungsten-copper alloy material comprises the following steps:
[0031] (1) Pretreat the surface of the tungsten-copper alloy material by using a diamond grinder to remove the oxide layer on the surface of the material;
[0032] (2) Add nano-tin oxide and strontium fluoride to a...
Embodiment 2
[0037] A coating for a tungsten-copper alloy material (the mass fraction of tungsten in the tungsten-copper alloy material is 90%, and the mass fraction of copper is 10%), the coating includes a transition layer and an anti-oxidation layer formed sequentially on the surface of the alloy material , the transition layer includes the following raw materials by weight: 18 parts of nano-tin oxide, 12 parts of strontium fluoride, 0.3 parts of tetrabutyl titanate, 2 parts of polyvinyl alcohol; the anti-oxidation layer includes the following raw materials by weight: 15 parts of nano-cerium oxide part, 40 parts of silicon-barium-iron alloy powder.
[0038] The preparation method of coating for above-mentioned tungsten-copper alloy material comprises the following steps:
[0039] (1) Pretreat the surface of the tungsten-copper alloy material by using a diamond grinder to remove the oxide layer on the surface of the material;
[0040] (2) Add nano-tin oxide and strontium fluoride to abs...
Embodiment 3
[0045]A coating for a tungsten-copper alloy material (the mass fraction of tungsten in the tungsten-copper alloy material is 90%, and the mass fraction of copper is 10%), the coating includes a transition layer and an anti-oxidation layer formed sequentially on the surface of the alloy material , the transition layer includes the following raw materials by weight: 20 parts of nano-tin oxide, 15 parts of strontium fluoride, 0.5 parts of tetrabutyl titanate, and 5 parts of polyvinyl alcohol; the anti-oxidation layer includes the following raw materials by weight: nano-cerium oxide 20 part, 50 parts of silicon-barium-iron alloy powder.
[0046] A method for preparing a coating for the above-mentioned tungsten-copper alloy material, comprising the following steps:
[0047] (1) Pretreat the surface of the tungsten-copper alloy material by using a diamond grinder to remove the oxide layer on the surface of the material;
[0048] (2) Add nano-tin oxide and strontium fluoride to abso...
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