Rose copper alloy with brittlement resistance, wear resistance, low cost and rose color
A wear-resistant, low-cost technology, applied in the field of alloys, can solve the problems of easy discoloration, brittle fracture, hindering market share, etc., and achieve the effect of high hardness and good wear resistance
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2018-11-13
- Estimated Expiration
- Not applicable · inactive patent
Abstract
Description
technical field
[0001] The invention relates to the technical field of alloys, in particular to a copper alloy. Background technique
[0002] Gold is a soft, golden-yellow and corrosion-resistant precious metal. Gold is very stable and hardly reacts with anything to produce compounds. It is soft and easy to process, and it has a dazzling and golden color that is rare in nature. It has long won the fascination and admiration of human beings, and it has naturally become a symbol of wealth.
[0003] Colored gold is actually a general term for colored gold, that is, a general term for gold alloys of various colors formed by adding alloying elements to gold. Except for white gold, others are called prize money, and the most common one in our life is 18K prize money. K is an international symbol used to represent the purity of gold. The reason for the color is that the types and proportions of metals are different. When gold is added to copper, aluminum, silver, cobalt, pallad...
Examples
Embodiment 1
[0019] Anti-brittle, wear-resistant, low-cost rose copper alloy with rose color. In terms of weight percentage, the composition of the alloy is: In: 1.2wt.%, Ca: 0.4wt.%, Ti: 1.8wt.%, C: 0.2wt.%, Mg: 2.0wt.%, Ru: 0.6wt.%. %, Pd: 4.0wt.%, Cu: 60.0wt.%, and the balance is silver. The method for preparing the brittle fracture-resistant, wear-resistant, low-cost and rose-colored rose copper alloy includes the following steps: adding the above-mentioned raw materials into an argon-protected induction furnace, and using a graphite crucible; The flow of argon is protected to avoid severe burning of the alloy elements due to the large air flow; when smelting, it is kept at 1150 degrees for 10 minutes, and it is evenly stirred by a high-frequency induction furnace; after stirring evenly, it is kept at 1250 degrees for 1 minute and cast out of the furnace; copper alloy Casting adopts a steel mold with a diameter of 100-200mm, and uses water cooling to cool down. The obtained ingot is ...
Embodiment 2
[0022] Anti-brittle, wear-resistant, low-cost rose copper alloy with rose color. In terms of weight percentage, the composition of the alloy is: In:1.4wt.%, Ca:0.6wt.%, Ti:2.5wt.%, C:0.3wt.%, Mg:3.5wt.%, Ru:0.8wt.%. %, Pd: 5.0wt.%, Cu: 65.0wt.%, and the balance is silver. The method for preparing the brittle fracture-resistant, wear-resistant, low-cost and rose-colored rose copper alloy includes the following steps: adding the above-mentioned raw materials into an argon-protected induction furnace, and using a graphite crucible; The flow of argon is protected to avoid severe burning of the alloy elements due to the large air flow; when smelting, it is kept at 1150 degrees for 10 minutes, and it is evenly stirred by a high-frequency induction furnace; after stirring evenly, it is kept at 1250 degrees for 1 minute and cast out of the furnace; copper alloy Casting adopts a steel mold with a diameter of 100-200mm, and uses water cooling to cool down. The obtained ingot is rolled...
Embodiment 3
[0025] Anti-brittle, wear-resistant, low-cost rose copper alloy with rose color. In terms of weight percentage, the composition of the alloy is: In: 1.3wt.%, Ca: 0.5wt.%, Ti: 1.9wt.%, C: 0.2wt.%, Mg: 2.8wt.%, Ru: 0.7wt.%. %, Pd: 4.2wt.%, Cu: 62.0wt.%, and the balance is silver. The method for preparing the brittle fracture-resistant, wear-resistant, low-cost and rose-colored rose copper alloy includes the following steps: adding the above-mentioned raw materials into an argon-protected induction furnace, and using a graphite crucible; The flow of argon is protected to avoid severe burning of the alloy elements due to the large air flow; when smelting, it is kept at 1150 degrees for 10 minutes, and it is evenly stirred by a high-frequency induction furnace; after stirring evenly, it is kept at 1250 degrees for 1 minute and cast out of the furnace; copper alloy Casting adopts a steel mold with a diameter of 100-200mm, and uses water cooling to cool down. The obtained ingot is ...