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High strength aluminum alloy arc additive

The performance advantages of high-strength aluminum alloy arc additive manufacturing technology mainly include the following aspects:


Efficient manufacturing: Arc additive manufacturing technology can significantly improve the manufacturing efficiency of aluminum alloy components. Through techniques such as path generation and spot welding heating control, high-precision machining can be achieved, thereby accelerating the progress of large-scale production.


High precision manufacturing: Arc additive manufacturing technology uses powder materials to achieve the manufacturing of complex shaped components, and through advanced process control technology, can achieve high-precision machining effects.


High resource utilization rate: This technology uses heating to melt the material and drip it onto the gradually forming mold, effectively utilizing the material and reducing resource waste. The utilization of aluminum alloy powder is also more economically valuable than other materials.


Suitable for complex structures: Arc additive manufacturing technology can manufacture large and complex structural components, especially suitable for fields such as aerospace and automotive manufacturing, and can meet the demand for high-precision and high durability components in these fields.


Multi metal compatibility: Arc additive manufacturing technology is compatible with various metal materials, including titanium, aluminum, nickel, and steel alloys, and has significant advantages in the production of large metal parts.


Cost effectiveness: Compared with other additive manufacturing processes, arc additive manufacturing technology has lower equipment costs and can manufacture large-sized components, making it suitable for large-scale production.


Environmentally friendly: This technology has low environmental pollution and is suitable for the needs of green manufacturing.



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