φ89*52.4*44 Gr2 Forged Titanium Rings Non Magnetic Metal Ring
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Titanium Rings TA2 Grade ASTM B381 Titanium Rings φ89*52.4*44mm Ultrasonic Testing
The good mechanical properties of titanium ring as a structural material are achieved by strictly controlling the appropriate impurity content and adding alloying elements. Titanium processing industry is developing fast at present, it is not only with many of the good qualities of titanium industry made a lot of love, and also have sophisticated metal plastic working skills to be able to use, which has a long history of steel and non-ferrous metals processing skills and equipment to be able to use and learn about, this makes the plasticity of titanium processing skills, able to quickly improve and sophisticated. Now titanium and titanium alloy are widely used in deep submersible, icebreaker, hydrofoil, hovercraft, minesweeper, propeller, whip antenna, seawater pipeline, condenser, heat exchanger, petroleum equipment, chemical equipment, sports equipment, automobile manufacturing, medical equipment, tools and so on. Mainly using its excellent corrosion resistance, and low density, memory, non-magnetic. Titanium is a widely used metal, due to its light weight, higher strength than aluminum alloy, can maintain a higher strength than aluminum at high temperature and is highly valued by the aviation industry. Only hydrofluoric acid, concentrated hydrochloric acid, concentrated sulfuric acid can act on it. The presence of impurities in titanium greatly affects its mechanical properties, especially the interstitial impurities (oxygen, nitrogen, carbon) can greatly improve the strength of titanium and significantly reduce its plasticity. With the improvement of medical technology, metal implantation in human body is a very common surgical operation. Due to the weak rejection reaction of titanium metal with human tissue, it is widely used in artificial bones, artificial joints, artificial teeth and other human implants.
Main advantages and applications:
1. Low density. 2. Higher than strength. 3. Small elastic modulus; 4. High fatigue strength, suitable for spring; 5. Low coefficient of thermal expansion. |
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