Essential details
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Product Introduction
Product description
Summary: Mingyin Iron Titanium Silicon Copper Alloy is a dispersion strengthened high conductivity Mingcopper alloy, which relies on trace chromium element grain refinement and precipitation strengthening to achieve a comprehensive performance balance of ultra-high conductivity, moderate hardness, high temperature resistance and softening resistance. The material is environmentally friendly, cost controllable, and has stable performance. It is a high-strength upgraded substitute material for pure copper and widely used in high-power conductive, heat-conducting, and precision components under medium temperature conditions.
Main features and advantages
1. Excellent conductivity and thermal conductivity: The conductivity can reach 85% IACS or above, close to the level of pure copper. At the same time, the thermal conductivity is excellent, with low heating and fast heat dissipation when powered on. It can stably carry continuous high currents for a long time and has extremely low conductivity loss.
2. Excellent high temperature and softening resistance: Compared with pure copper, the high temperature annealing resistance and softening resistance are significantly improved, and stable mechanical strength can still be maintained under continuous high temperature work. It is not easy to deform or relax, and is suitable for electrical structural components that work continuously for a long time.
3. Good mechanical and wear resistance: The grain size is dense and uniform, and the hardness and tensile strength are better than ordinary copper. It has good deformation resistance and wear resistance, high surface smoothness, is not easy to oxidize and powder, and has a longer service life.
4. Excellent corrosion resistance and oxidation resistance, outstanding corrosion resistance and high-temperature oxidation resistance in atmospheric and conventional industrial environments. Long term use is not easy to blacken or oxidize, and stable conductive contact performance can be maintained.
5. Easy to process and shape, suitable for mass production. The material has high flatness and good toughness, and can be directly stamped, bent, cut, and precisely cut before cutting; Excellent welding and riveting performance, no need for complex heat treatment, suitable for mass production of precision electronic and industrial control components.
Core application areas
1. New energy electrical: power battery busbar, high current conductive terminals, low-voltage connector conductive pieces, energy storage equipment conductive connectors, suitable for low heat generation and high current carrying conditions.
2. Industrial control and power equipment: high and low voltage switch conductive contacts, circuit breaker conductive components, contactor connectors, industrial control equipment heat dissipation conductive components, ensuring long-term stable and low loss operation of the equipment.
3. Precision electronic equipment: high-power precision conductive spring, high-frequency heat dissipation gasket, instrument and meter conductive structural components, balancing high conductivity and dimensional stability.
4. Automation and mold accessories, equipment thermal conductive inserts, precision fixture conductive gaskets, automation contact conductive components, suitable for continuous high load and high heat dissipation work scenarios.
Summary: Mingyin Iron Titanium Silicon Copper Alloy is a dispersion strengthened high conductivity Mingcopper alloy, which relies on trace chromium element grain refinement and precipitation strengthening to achieve a comprehensive performance balance of ultra-high conductivity, moderate hardness, high temperature resistance and softening resistance. The material is environmentally friendly, cost controllable, and has stable performance. It is a high-strength upgraded substitute material for pure copper and widely used in high-power conductive, heat-conducting, and precision components under medium temperature conditions.
Main features and advantages
1. Excellent conductivity and thermal conductivity: The conductivity can reach 85% IACS or above, close to the level of pure copper. At the same time, the thermal conductivity is excellent, with low heating and fast heat dissipation when powered on. It can stably carry continuous high currents for a long time and has extremely low conductivity loss.
2. Excellent high temperature and softening resistance: Compared with pure copper, the high temperature annealing resistance and softening resistance are significantly improved, and stable mechanical strength can still be maintained under continuous high temperature work. It is not easy to deform or relax, and is suitable for electrical structural components that work continuously for a long time.
3. Good mechanical and wear resistance: The grain size is dense and uniform, and the hardness and tensile strength are better than ordinary copper. It has good deformation resistance and wear resistance, high surface smoothness, is not easy to oxidize and powder, and has a longer service life.
4. Excellent corrosion resistance and oxidation resistance, outstanding corrosion resistance and high-temperature oxidation resistance in atmospheric and conventional industrial environments. Long term use is not easy to blacken or oxidize, and stable conductive contact performance can be maintained.
5. Easy to process and shape, suitable for mass production. The material has high flatness and good toughness, and can be directly stamped, bent, cut, and precisely cut before cutting; Excellent welding and riveting performance, no need for complex heat treatment, suitable for mass production of precision electronic and industrial control components.
Core application areas
1. New energy electrical: power battery busbar, high current conductive terminals, low-voltage connector conductive pieces, energy storage equipment conductive connectors, suitable for low heat generation and high current carrying conditions.
2. Industrial control and power equipment: high and low voltage switch conductive contacts, circuit breaker conductive components, contactor connectors, industrial control equipment heat dissipation conductive components, ensuring long-term stable and low loss operation of the equipment.
3. Precision electronic equipment: high-power precision conductive spring, high-frequency heat dissipation gasket, instrument and meter conductive structural components, balancing high conductivity and dimensional stability.
4. Automation and mold accessories, equipment thermal conductive inserts, precision fixture conductive gaskets, automation contact conductive components, suitable for continuous high load and high heat dissipation work scenarios.