Titanium and Copper Clad Bar, which is a layer of titanium coated with a certain thickness on the copper rod, is the main component of the metal anode. It combines the excellent conductivity of copper and the excellent corrosion resistance of titanium and is mainly used in electrolysis, electroplating, hydrometallurgy and metal anode electrolyzers under strong corrosion conditions.
Features of titanium-clad copper:
It can not only ensure the original conductivity of the copper material, but also use titanium to protect the copper body from corrosion, and greatly reduce the pollution of electroplating an electroplating solution.
Advantage:
1. Supporting strength: The yield strength of the titanium-copper composite rod reaches 135Mpa and the tensile shear strength reaches 180Mpa, which fully meets the production design requirements and achieves the supporting performance required by the anode during operation.
2. Corrosion resistance: The outer layer of the titanium-copper composite rod is in direct contact with the electrolytic medium. The pure titanium in the outer layer has excellent corrosion resistance, and its life is more than 10 times longer than that of other materials.
3. Energy-saving: Because the explosion + rolling method used in the production process can make titanium and copper fully composite, without delamination, greatly reducing the pollution of electrolyte and plating solution, and greatly reducing the current resistance to 7.77×10-6Ωmakes the current smoother, thus saving energy consumption.
4. Improve the environmental protection effect: Because the explosion + rolling method used in the production process can make the titanium and copper completely composite, no liquid pollution caused by delamination, because the outer layer of titanium is corrosion-resistant and does not produce air caused by oxidation And environmental pollution, also greatly reduce the overall environmental pollution.
Standard Titanium Grade Condition of Delivery Tolerance Dimensions
Standard Titanium Grade Condition of Delivery Tolerance Dimensions
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