High-elasticity-modulus gold imitation alloy with gold color and luster and process thereof
A high elasticity, alloy technology, applied in the field of imitation gold alloy, can solve problems such as weak core competitiveness, influence on industrialization and promotion of market share, small enterprise scale, etc., to overcome easy fading, avoid nucleation and long-term Big, personal effects
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Embodiment 1
[0016] A gold imitation alloy with a high modulus of elasticity and a process thereof. In terms of weight percentage, the composition of the alloy is: P: 0.6wt.%, Ca: 2.0wt.%, V: 0.5wt.%, Cr: 1.0wt.%, Sm: 0.4wt.%, Sb: 1.0wt. %, Zn: 6.0wt.%, Cu: 15.0wt.%, and the balance is tin. The preparation method of the above-mentioned gold imitation gold alloy with high modulus of elasticity and its technology includes the following steps: adding the above proportioned raw materials into an induction furnace protected by argon gas, and using a graphite crucible; Low-flow argon gas protection to avoid severe burning of alloy elements due to large air flow; heat preservation at 850 degrees for 10 minutes during smelting, and electromagnetic stirring by high-frequency induction furnace; after stirring evenly, heat preservation at 850 degrees for 1 minute and casting out of the furnace; alloy Casting adopts a steel mold with a diameter of 100-200mm, and uses water cooling to cool down. Roll...
Embodiment 2
[0019]A gold imitation alloy with a high modulus of elasticity and a process thereof. In terms of weight percentage, the composition of the alloy is: P: 0.8wt.%, Ca: 2.5wt.%, V: 0.8wt.%, Cr: 1.5wt.%, Sm: 0.5wt.%, Sb: 1.5wt. %, Zn: 10.0wt.%, Cu: 20.0wt.%, and the balance is tin. The preparation method of the above-mentioned gold imitation gold alloy with high modulus of elasticity and its technology includes the following steps: adding the above proportioned raw materials into an induction furnace protected by argon gas, and using a graphite crucible; Low-flow argon gas protection to avoid severe burning of alloy elements due to large air flow; heat preservation at 850 degrees for 10 minutes during smelting, and electromagnetic stirring by high-frequency induction furnace; after stirring evenly, heat preservation at 850 degrees for 1 minute and casting out of the furnace; alloy Casting adopts a steel mold with a diameter of 100-200mm, and uses water cooling to cool down. Roll...
Embodiment 3
[0022] A gold imitation alloy with a high modulus of elasticity and a process thereof. In terms of weight percentage, the composition of the alloy is: P:0.7wt.%, Ca:2.4wt.%, V:0.6wt.%, Cr:1.2wt.%, Sm:0.4wt.%, Sb:1.2wt.%. %, Zn: 8.0wt.%, Cu: 18.0wt.%, and the balance is tin. The preparation method of the above-mentioned gold imitation gold alloy with high modulus of elasticity and its technology includes the following steps: adding the above proportioned raw materials into an induction furnace protected by argon gas, and using a graphite crucible; Low-flow argon gas protection to avoid severe burning of alloy elements due to large air flow; heat preservation at 850 degrees for 10 minutes during smelting, and electromagnetic stirring by high-frequency induction furnace; after stirring evenly, heat preservation at 850 degrees for 1 minute and casting out of the furnace; alloy Casting adopts a steel mold with a diameter of 100-200mm, and uses water cooling to cool down. Roll the...
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