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Application of aluminum profile CNC machining center in new energy vehicles

Views: 2     Author: Site Editor     Publish Time: 2025-06-10      Origin: Site

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Application of aluminum profile CNC machining center in new energy vehicles

      The core of lightweighting of new energy vehicles is to use new composite materials to replace traditional steel. New materials such as carbon fiber, fiberglass, aluminum alloy, etc. are lightweight and high-strength. Their strength is several times that of steel, but their weight is one-quarter of that of steel, or less. The 5-axis aluminum profile machining center with enhanced rigidity supports multi-angle and multi-surface machining of complex profiles. It can complete the milling, drilling, tapping and other processes of the battery tray frame at one time. The machining accuracy reaches ±0.02mm, reducing the error caused by secondary clamping.

LXC1

       According to the processing and production of different parts of new energy vehicles, a complete flexible production solution is provided, which can quickly perform high-speed milling on different parts and carry out mass production. For the battery compartment structure of different models, special-shaped cavities, heat dissipation holes, installation holes, etc. are quickly processed. For the production of large quantities of parts, production lines can be provided to realize unmanned processing needs.

cm1

       In the era of intelligent production, new energy vehicles are upgrading from scale to high quality, and aluminum profile processing centers continue to empower innovation in the automotive industry with their advantages of precision processing capabilities, flexible production adaptability, and intelligent management platforms. With the integrated die-casting of automotive structural frames and the application of multiple materials, aluminum profile processing centers will continue to use technological innovation as a fulcrum to promote new energy vehicle manufacturing towards a high-efficiency, low-energy production era.

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