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Titanium clad copper bar

Short Description:

ANTON produces titanium clad copper bars by the technology of extrusion and extrusion & drawing. Usually in two stages, firstly take the copper bar put into titanium tube for welding to make composite billet. Usually the titanium tube we used outside diameter is 85~125mm, wall thickness is 6~7mm. Clean up the outer surface of copper and titanium tube inner surface, put the copper bar into the titanium tube, welding seal on both ends of titanium tube with titanium plate by argon arc welding. Extrusion deformation under high temperature, due to the large amount of deformation (usually more than 95%) and the metal is in a state of three-phase compressive stress, along with the large deformation under high pressure, the interface between titanium and copper produce depth metallurgical bonding, generally formed a wide composite wave and composite belt, the compound strength is high. The bending resistance and surface roughness of the composite bar were improved after proper cold drawing, product size precision is also improved. Our products have been recognized by many customers because of the excellent quality.


Product Detail

Product Tags

Product Parameter

Base material  Pure copper
Clad material  CP titanium, Titanium alloy
Size  Customization
Standard  GB/T 12769
Shape  Square, Round, Rectangular, Flat
Technology  Extruding + Stretching

Features

High supporting strength. Yield strength is above 135Mpa, the tensile shear strength can reach 180 ~ 160MPa, fully meet the needs of the anode in the work of the supporting performance.
Good corrosion resistance. The outer layer of pure titanium is with excellent corrosion resistance, direct contact with the electrolytic medium, its life expectancy is more than 10 times longer than other materials.
Save energy consumption. Titanium and copper completely together, do not produce stratification, sharply reduce the electrolyte, electroplating liquid pollution, made the current resistance greatly reduced to 7.77 x 10-6 Ω, so that make the current more smoothly, and thus saving


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