wok
A wok and wok body technology, applied in the wok field, can solve the problems of unfavorable health, poor strength and fastness, easy to fall off, etc., and achieve the effects of improving service life, good high temperature oxidation resistance, and low preparation cost
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Embodiment 1
[0015] Weigh the raw materials of the frying pan: 3 parts of glass fiber, 15 parts of aluminum oxide, 8 parts of aluminum powder, 12 parts of wrought iron, 5 parts of titanium powder, 3 parts of magnesium oxide, 4 parts of calcium carbonate, 60 parts of graphite, and remove the glass fiber Other raw materials are melted into alloy liquid.
[0016] Pour the alloy liquid into an integrated frying pan mold, add glass fiber, and die-cast; before die-casting, coat a layer of paint on the mold, and the paint includes the following raw materials in parts by weight: 40 parts of graphite powder, pottery clay 2 parts of powder, 3 parts of refractory mud powder, 3 parts of carbon nanotubes, 4 parts of fumed silica, 3 parts of nano silver, 1.5 parts of wetting agent, and 30 parts of deionized water.
[0017] The formed wok is fired at 1400° C. for 1.5 hours, and the assembler handles it to obtain the wok.
Embodiment 2
[0019] Weigh the raw materials of the frying pan: 2 parts of glass fiber, 20 parts of aluminum oxide, 5 parts of aluminum powder, 15 parts of wrought iron, 3 parts of titanium powder, 5 parts of magnesium oxide, 1 part of calcium carbonate, 80 parts of graphite, and remove the glass fiber Other raw materials are melted into alloy liquid.
[0020] Pour the alloy liquid into an integrated frying pan mold, add glass fiber, and die-cast; before die-casting, coat a layer of paint on the mold, and the paint includes the following raw materials in parts by weight: 30 parts of graphite powder, pottery clay 3 parts of powder, 2 parts of refractory mud powder, 5 parts of carbon nanotubes, 0.5 parts of fumed silica, 5 parts of nano silver, 1 part of wetting agent, and 40 parts of deionized water.
[0021] The formed wok is fired at 1500° C. for 1 hour, and the assembler handles it to obtain the wok.
Embodiment 3
[0023] Weigh the raw materials of the frying pan: 5 parts of glass fiber, 10 parts of aluminum oxide, 10 parts of aluminum powder, 10 parts of wrought iron, 8 parts of titanium powder, 1 part of magnesium oxide, 5 parts of calcium carbonate, 50 parts of graphite, and remove the glass fiber Other raw materials are melted into alloy liquid.
[0024] Pour the alloy liquid into an integrated frying pan mold, add glass fiber, and die-cast; before die-casting, coat a layer of paint on the mold, and the paint includes the following raw materials in parts by weight: 50 parts of graphite powder, pottery clay 1 part of powder, 5 parts of refractory mud powder, 0.5 parts of carbon nanotubes, 5 parts of fumed silica, 0.5 parts of nano silver, 2 parts of wetting agent, and 20 parts of deionized water.
[0025] The formed wok is fired at 1300° C. for 2 hours, and the assembler handles it to obtain the wok.
[0026] In the wok of the present invention, graphite, glass fiber, alumina, alumin...
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