Silver-germanium jewelry alloy
A technology for alloys and ornaments, applied in the fields of silver-stained-silver alloys, germanium jewelry alloys, and silver
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Embodiment 1
[0008] Example 1 :Will 99.9% of silver and 99.9% germanium ingot 1∶0.081 The mass ratio of put into the vacuum furnace, the vacuum degree is 5Pa , warming up to 1200℃ ,constant temperature 1 After an hour, stir evenly and pour into the mold to 30min After cooling at a high speed, it is made into rectangular silver and germanium alloys, each weighing 1kg±10 gram. The silver, germanium alloy hardness that this method makes is 3.5 Degree of far-infrared micro-current generated under light irradiation (standard silver hardness is 2.5 degree, no far-infrared micro-current is generated under light irradiation)
Embodiment 2
[0009] Example 2 :Will 99.9% of silver and 99.9% germanium ingot 1∶0.111 The mass ratio of put into the vacuum furnace, the vacuum degree is 5Pa , warming up to 1200℃ ,constant temperature 1 After an hour, stir evenly and pour into the mold to 30min After cooling at a high speed, it is made into rectangular silver and germanium alloys, each weighing 1kg±10 gram. The silver, germanium alloy hardness that this method makes is 3.8 degrees , produce far-infrared micro-current under light irradiation.
Embodiment 3
[0010] Example 3 :Will 99.9% of silver and 99.9% germanium ingot 1∶1 The mass ratio of put into the vacuum furnace, the vacuum degree is 5Pa , warming up to 1200℃ ,constant temperature 1 After an hour, stir evenly and pour into the mold to 30min After cooling at a high speed, it is made into rectangular silver and germanium alloys, each weighing 1kg±10 gram. The silver, germanium alloy hardness that this method makes is 4.2 The degree of far-infrared micro-current is generated under the irradiation of light.
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Abstract
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