Process for the preparation of light blue gold alloys for the jewelry and watch industry
A light blue, alloy technology, applied in the field of preparation of light blue gold alloy, can solve problems such as use restrictions
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[0021] figure 1 It is a flowchart of a method for preparing a light blue gold alloy used in jewelry and watch industry according to an embodiment of the present invention. As shown in the figure, the preparation method of the present invention comprises the following steps:
[0022] Step 101: collect alloy composition and process information (process information includes heat treatment process, smelting process, etc.) by the mobile terminal;
[0023] Step 102: The mobile terminal sends an alloy composition and process information upload request message to multiple base stations;
[0024] Step 103: The mobile terminal receives the permission to send message sent by one or more base stations, wherein the permission to send message is sent by the base station in response to receiving the alloy composition and process information upload request message;
[0025] Step 104: If the mobile terminal receives a transmission permission message sent by a base station, the mobile termina...
Embodiment 1
[0044] The alloy manufacturing platform prepares the alloy according to the following weight percentages, the content of silver (Ag) is 5%, the content of copper (Cu) is 5%, the content of zinc (Zn) is 1%, the content of indium (In) is 1%, and the content of manganese (Mn) is 4%, and the balance is Au. Melting under the protection of inert gas or reducing gas, the melting temperature is 1000℃. Invert the mold according to the well-known methods in the jewelry industry and the watch industry, and then undergo follow-up treatments such as grinding and polishing to obtain 18K light blue gold alloy ornaments. Repeat the above process to obtain ten sets of samples, and the obtained 18K light blue gold alloy CIELab color data a*: -1.5--1.5, b*: 2-2 (that is, within the detection limit of the instrument, the color of the ten sets of samples is completely Consistent), showing light blue, hardness Hv180-182. The average value of the manufacturing cost is 1 (because the actual value o...
Embodiment 2
[0046] The alloy manufacturing platform formulates the alloy according to the following weight percentages, the content of silver (Ag) is 10%, the content of copper (Cu) is 7.5%, the content of zinc (Zn) is 5%, the content of indium (In) is 10%, and the content of manganese (Mn) The content of iridium (Ir) is 120 ppm, the content of boron (B) is 120 ppm, the content of phosphorus (P) is 50 ppm, and the balance is Au. Melting under the protection of inert gas or reducing gas, the melting temperature is 1100℃. Invert the mold according to the well-known methods in the jewelry industry and the watch industry, and then undergo follow-up treatments such as grinding and polishing to obtain 18K light blue gold alloy ornaments. Repeat the above process to obtain ten sets of samples, and the obtained 18K light blue gold alloy CIELab color data a*: 1.5-1.5, b*: 8-8, hardness Hv230-235. The average manufacturing cost is 1.1, and the casting performance of the alloy is good, and the smal...
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