When many people mention titanium anodes, they will say: good performance!
But you know, what are the properties of titanium anodes? Where is the performance? Let’s take a detailed analysis of the specific performance of titanium anodes.
1. Low temperature resistance.
The low temperature resistance of titanium anode is good, and the strength increases with the decrease of temperature, but the plasticity changes little. In addition, titanium anodes can still maintain good ductility and toughness at low temperatures of -196-253 °C, avoiding the cold brittleness of metals, and are ideal materials for low-temperature containers, tanks and other equipment.
2. Heat resistance.
The new titanium can be used for a long time at a temperature of 600 ℃ or higher.
3. Anti-damping performance
Titanium anodes have high damping resistance. Compared with metals such as steel and copper, titanium has a longer vibration decay time after being subjected to mechanical and electrical vibrations.
4. Non-magnetic and non-toxic.
Titanium is a non-magnetic metal and will not be magnetized in large magnetic fields. Moreover, titanium is non-toxic and has good compatibility with human tissue and blood, so it is used in the medical field.
5. Inhalation performance.
Titanium is a chemically active metal that reacts with many elements and compounds at high temperatures.
6. Corrosion resistance.
Titanium is a very active metal with low equilibrium potential in the medium and great tendency to thermodynamic corrosion. In air or oxygen-containing medium, a dense oxide film with strong adhesion and inertness is formed on the surface of titanium, which protects the titanium substrate from corrosion. Even with mechanical wear, it will heal or regenerate quickly.
7. Good heat exchange performance.
Although the thermal conductivity of titanium is lower than that of carbon steel and copper, the wall thickness of titanium can be greatly reduced due to its excellent corrosion resistance. Furthermore, the heat exchange between the surface and the steam is dropwise condensation, which reduces the thermal resistance. The surface of titanium can also reduce thermal resistance without scaling, making the heat exchange of titanium better.
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