High Performance C14500 Tellurium Copper Alloy from China Suppliers and Factory
Chemical Composition and Performance of C14500
C14500 tellurium copper alloy is mainly composed of copper (Cu) and a small amount of tellurium (Te), with copper content exceeding 99.2% and tellurium content ranging from 0.4% to 0.7%. In addition, the alloy also contains trace amounts of phosphorus (P), with a content between 0.004% and 0.012%. This precise chemical composition ratio gives C14500 a range of excellent performance.
Excellent Machinability
C14500 stands out with superb cutting performance, making it one of the absolute best materials for precision machining applications among high-copper alloys.
Electrical & Thermal Conductivity
Conductivity reaches 94%-98% (10%-13% higher than pure copper). Thermal conductivity exceeds pure silver by 22% and pure copper by 28%, ideal for high-current components.
Corrosion Resistance
Outstanding resistance to oxidative and corrosive media, anti-electrical erosion performance, and surface antibacterial properties for demanding environments.
Frequently Asked Questions (FAQ)
What is the chemical composition of C14500 tellurium copper?
C14500 is primarily composed of copper (Cu) exceeding 99.2% and tellurium (Te) ranging from 0.4% to 0.7%, with trace amounts of phosphorus (P) between 0.004% and 0.012%.
Why is C14500 preferred for precision machining?
C14500 tellurium copper alloy possesses excellent machinability, making it one of the best high-copper alloys for cutting performance and high-speed precision manufacturing.
How does C14500 perform in electrical conductivity?
It has outstanding electrical conductivity, reaching 94%-98% IACS, which is 10% to 13% higher than standard pure copper.
What are the thermal properties of C14500 tellurium copper?
Its thermal conductivity is exceptional, exceeding pure silver by 22% and pure copper by 28%, making it highly effective for thermal management applications.
Does C14500 offer corrosion resistance?
Yes, C14500 provides outstanding corrosion resistance against oxidative and corrosive media, along with anti-electrical erosion characteristics and antibacterial properties.






