Cu-Ti-Cr-Zr high-performance copper-based elastic alloy and manufacturing method thereof
A technology of elastic alloy and manufacturing method, which is applied in the field of ultra-high-strength elastic copper alloy materials, can solve problems such as unfavorable environment, and achieve the effect of wide application
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0019] Alloy materials are prepared from high-quality metal titanium, chromium, zirconium, vanadium, cerium, and electrolytic copper. The design masses of each group are: 0.7 kg of high-quality metal titanium, 0.034 kg of chromium, 0.06 kg of vanadium, 0.018 kg of zirconium, and 0.004 kg of cerium 19.184 kg of electrolytic copper (loaded into a 25 kg vacuum induction furnace step by step) The operating procedure is as follows: titanium + chromium + zirconium + cerium + vanadium + copper → melting → refining → condensation → refining → heating → casting
[0020] After casting and forming, the ingot is heated to 870°C and forged into a slab. After the slab is processed, it is heated to 600~850°C and rolled to a solid solution at 850°C. Anneal at 570°C, continue cold rolling and then quench at 850°C, and continue cold rolling the finished product. The total processing rate is controlled between 50-70%, and the finished product processing rate is controlled between 80-85%.
[002...
Embodiment 2
[0033] Alloy materials are prepared from high-quality metal titanium, chromium, zirconium, vanadium, cerium, and electrolytic copper. The design masses of each group are: 0.7 kg of high-quality metal titanium, 0.036 kg of chromium, 0.06 kg of vanadium, 0.018 kg of zirconium, and 0.008 kg of cerium Kg, 19.178 kg of electrolytic copper (loaded into a 25kg vacuum induction furnace step by step) The operating procedure is as follows: titanium + chromium + zirconium + cerium + vanadium + copper → melting → refining → condensation → refining → heating → casting
[0034] After casting and forming, the ingot is heated to 870°C and forged into a slab. After the slab is processed, it is heated to 600~850°C and rolled to a solid solution at 850°C. Anneal at 570°C, continue cold rolling and then quench at 850°C, and continue cold rolling the finished product. The total processing rate is controlled between 50-70%, and the finished product processing rate is controlled between 80-85%.
[...
Embodiment 3
[0037] Alloy materials are prepared from high-quality metal titanium, chromium, zirconium, vanadium, cerium, and electrolytic copper. The design masses of each group are: 0.76 kg of high-quality metal titanium, 0.04 kg of chromium, 0.07 kg of vanadium, 0.0 kg of zirconium, and 0.012 kg of cerium. Kg, 19.098 kg of electrolytic copper (loaded into a 25kg vacuum induction furnace step by step) The operating procedure is as follows: titanium + chromium + zirconium + cerium + vanadium + copper → melting → refining → condensation → refining → heating → casting
[0038] After casting and forming, the ingot is heated to 870°C and forged into a slab. After the slab is processed, it is heated to 600~850°C and rolled to a solid solution at 850°C. Anneal at 570°C, continue cold rolling and then quench at 850°C, and continue cold rolling the finished product. The total processing rate is controlled between 50-70%, and the finished product processing rate is controlled between 80-85%.
[0...
PUM
Property | Measurement | Unit |
---|---|---|
tensile strength | aaaaa | aaaaa |
elongation | aaaaa | aaaaa |
Vickers hardness | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com