Corrosion-resistant palladium alloy for yellow jewelry and processing technology thereof
A processing technology, palladium alloy technology, applied in the field of alloys, can solve the problems that affect the promotion of palladium alloys and the expansion of market share, weak core competitiveness, small enterprise scale, etc., achieve excellent decorative effects, overcome easy fading, internal clean effect
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Embodiment 1
[0017] A palladium alloy for corrosion-resistant yellow jewelry and its processing technology. In terms of weight percentage, the composition of the alloy is: Te:0.5wt.%, Ca:1.0wt.%, V:1.4wt.%, W:1.4wt.%, C:0.2wt.%, Ru:2.0wt. %, Y: 1.0wt.%, Sn: 25.0wt.%, and the balance is palladium. The above-mentioned preparation method of a palladium alloy for corrosion-resistant yellow jewellery, comprises the following steps: adding the above proportioned raw materials into an argon-protected induction furnace, and adopting a graphite crucible; adopting a low-flow argon protection after the metal is melted, Avoid large air flow to cause serious burning of alloy elements; heat preservation at 1650 degrees for 10 minutes during smelting, and stir evenly with high-frequency induction furnace electromagnetically; after stirring evenly, heat preservation at 1650 degrees for 1 minute and cast out of the furnace; palladium alloy casting adopts a diameter of 100-200mm The steel mold is cooled by...
Embodiment 2
[0020]A palladium alloy for corrosion-resistant yellow jewelry and its processing technology. In terms of weight percentage, the composition of the alloy is: Te: 0.8wt.%, Ca: 1.5wt.%, V: 1.8wt.%, W: 1.6wt.%, C: 0.3wt.%, Ru: 2.8wt.%. %, Y: 1.2wt.%, Sn: 28.0wt.%, and the balance is palladium. The above-mentioned preparation method of a palladium alloy for corrosion-resistant yellow jewellery, comprises the following steps: adding the above proportioned raw materials into an argon-protected induction furnace, and adopting a graphite crucible; adopting a low-flow argon protection after the metal is melted, Avoid large air flow to cause serious burning of alloy elements; heat preservation at 1650 degrees for 10 minutes during smelting, and stir evenly with high-frequency induction furnace electromagnetically; after stirring evenly, heat preservation at 1650 degrees for 1 minute and cast out of the furnace; palladium alloy casting adopts a diameter of 100-200mm The steel mold is co...
Embodiment 3
[0023] A palladium alloy for corrosion-resistant yellow jewelry and its processing technology. In terms of weight percentage, the composition of the alloy is: Te: 0.6wt.%, Ca: 1.2wt.%, V: 1.5wt.%, W: 1.5wt.%, C: 0.2wt.%, Ru: 2.4wt.%. %, Y: 1.1wt.%, Sn: 26.0wt.%, and the balance is palladium. The above-mentioned preparation method of a palladium alloy for corrosion-resistant yellow jewellery, comprises the following steps: adding the above proportioned raw materials into an argon-protected induction furnace, and adopting a graphite crucible; adopting a low-flow argon protection after the metal is melted, Avoid large air flow to cause serious burning of alloy elements; heat preservation at 1650 degrees for 10 minutes during smelting, and stir evenly with high-frequency induction furnace electromagnetically; after stirring evenly, heat preservation at 1650 degrees for 1 minute and cast out of the furnace; palladium alloy casting adopts a diameter of 100-200mm The steel mold is c...
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