Type: | Copper Bars |
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Application: | New Energy |
Material: | Bronze |
Shape: | Round |
Alloy: | Alloy |
Color: | Golden |
Samples: |
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Customization: |
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C14500 Tellurium Copper Material Used for Electronic Industry excellent electrial conductivity
CuTeP Tellurium Copper:
Cu+Ag+Te+P | P | Te | |
Min-Max | 99.9 | 0.004-0.012 | 0.4-0.7 |
Tensile Strength | Rm Mpa | 320-350 |
Yeild Strength | δ0.5 Mpa | 330-370 |
Elongation | % | 9-12 |
Electrical Conductivity | %IACS | ≥85 |
Hardness | HRB | 48 |
We are usually packed in export wooden cases and lined with pearl-cotton foam to prevent scratches on the surface. The modes of transport are usually rail transport, sea transport, air transport and express delivery.
CuTeP copper alloy Introduction AND Applications:
One of the most significant advantages of CuTeP is its high thermoelectric efficiency, which allows it to convert heat energy into electricity with excellent performance. This makes CuTeP an ideal candidate for use in thermoelectric generators, which can convert waste heat from various sources into valuable electrical power. Additionally, CuTeP exhibits good stability and durability, ensuring long-term use in harsh environments.
CuTeP is also an excellent choice for use in semiconductors, due to its high electrical conductivity and excellent thermal stability. This makes it ideal for use as a conductive material in electronic devices and circuits, as well as a potential replacement for more expensive materials such as silver and gold.
Another advantage of CuTeP is its unique optical properties, which make it an ideal material for use in optical sensors and detectors. Its high sensitivity to light and excellent photoluminescence allow it to detect even the smallest changes in the infrared spectrum, making it ideal for use in a variety of applications such as biomedical sensing and imaging.
Overall, CuTeP is a highly promising material with outstanding properties and significant potential for use in a wide range of applications. With continued research and development, it is likely that CuTeP will become an increasingly important material in various fields, including energy, electronics, and optics.
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