In the past decade, the demand for high-precision specialized copper strips has grown rapidly, especially with the rapid development of power, telecommunications, electronics, photovoltaic, and automotive industries, resulting in strong demand for copper strips for cable and copper strips for photovoltaic.
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In the past decade, the demand for high-precision specialized copper strips has grown rapidly, especially with the rapid development of power, telecommunications, electronics, photovoltaic, and automotive industries, resulting in strong demand for copper strips for cable and copper strips for photovoltaic.
GINTE is vigorously developing high-precision, high-performance, and high-tech copper strips for cable . With the improvement of production capacity, there has been a significant investment in technological innovation.

 

 

C1020/C10200/Cu-ETP/UNS T2/TU1

O

0.1mm-1.5mm

10mm-100mm

-5%--+10%

Ø100mm, Ø150mm, Ø300mm or customized

GB/T 18813-2014/EN 13599/JIS-H3100-2006 or as customer's specification

 

 

 

 

●7S management of the total QC control.

●100% Qualified rate.

 

 

1.Electrolytic Copper Ingot → Heating with gas in the stepper furnace, starting at a rolling temperature of 860 degree

2.Hot rolling mill, rolled to 14-16mm, water-cooled, single coil weight 25 (41) tons

3.Double sided milling, edge milling, milling thickness 0.4-3.5mm

4.Slitting and trimming → Edging → Finished product→Packing.

 

 

 

Production facilities have been discovered to employ them as raw materials in a variety of equipment. They are often used mostly by production companies that are situated in areas with significant soil salt content.Long service life, precise engineering, dimensional control, and crack-free bends are the key characteristics.

 

 

Since they are defect-free, a variety of switch gears and oil field transformers are where they are most frequently used. Copper strips that have been enameled are also commonly used in business for binding. These strips are used to connect a variety of components, including high-voltage motors, electric motor stators, and specialized transformers.Durability, tensile strength, resistance to heat, weather, and water, as well as flexibility, are significant characteristics of these strips.

 

 

 

 

 

 

Copper is also non-corrosive under certain water quality conditions, and will not corrode if the water quality is appropriate for oxygen and salinity. Furthermore, copper is a highly durable material because of its properties as a precious metal, resistance to oxidation, and resistance to high temperatures and acids. Therefore, copper is widely used in industrial applications such as building materials, water pipes, and ships.

 

 

 

 

 

 

 

 

1. Differences in Material Composition

 

Copper strip, also known as electrolytic copper strip, is mainly composed of pure copper, with a purity generally above 99.9%. The remarkable feature of copper strip is its excellent electrical and thermal conductivity, thanks to the physical properties of pure copper. The chemical properties of pure copper are stable, except gradually oxidizing into green copper rust in moist environments, it remains relatively stable under other conditions.

 

Brass strip is a copper-zinc alloy, mainly composed of copper and zinc. The properties of brass vary depending on the zinc content. Generally, the copper content in brass is between 55% and 70%, and the zinc content is between 45% and 30%. Compared to copper strip, brass strip has better mechanical processing properties and wear resistance, but lags slightly behind in terms of electrical and thermal conductivity. Jintian stands out as one of the professional brass strip suppliers, providing high-quality products for diverse needs.

 

2. Differences in Application Areas

 

 

 

A: High melting point ensures the wires do not burn at very high temperatures and the electrical appliances remain secure. It means if you are using wires with copper strips, you don't need to worry about electrical fluctuations or fire hazards. Corrosion-resistance: Copper is resistant to corrosion.

A: The primary benefits of copper foil strips are its excellent resistance to heat and chemicals, high-temperature resistance, anti-interference, and high stickiness.

A: Conductive strip can conduct electricity on both the top and bottom of the strip, whereas non-conductive copper strip is only conductive on the one side. This makes each of the different types best suited to varying applications.

A: The copper tape will corrode in water and must be replaced on regular intervals. The rate of corrosion will depend on the environment, with increasing salinity and temperature accelerating the corrosion process. For challenging, warm, marine environments the copper tape should withstand deployments of 60 days or more.

A: Copper foil tapes are recommended for electro-static shielding, cable wrapping, and stained glass work. They may or may not be conductive, and their adhesive may also be conductive. Copper foil tape is chemically resistant and may or may not have a liner.

A: Under the same temperature rise that is 10 degree , a 10mil-trace with 1oz copper weight is capable of withstanding current of 1amp at most and we rest assured that a 50mil-trace is capable of withstanding current larger than 1amp.

A: Again, copper foil is pretty much just a flat copper wire and easily transfers both heat and electronics very well. We then bumped it up to 2A of current and the fun started. At 2 amps the tape instantly heated up to about 105F.

A: Eventually, the tape should become greener as the copper ages so it will become less noticeable. It is long-lasting. Unlike things like slug pellets or beer traps which will need frequent applications, copper tape should last for at least a couple of years.

A: Copper is a non-ferrous metal. It doesn't contain iron, so it won't turn into rust when exposed to oxygen. Instead, when oxygen molecules land on copper's surface, they combine with copper atoms and form copper oxide. Unlike iron oxide, copper oxide does not disintegrate over time.

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