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Custom Electric Vehicle Motor Iron Core Lamination

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  • Custom Electric Vehicle Motor Iron Core Lamination

    As a professional motor lamination manufacturer, our precision facilities, cutting-edge technology, and experienced professionals ensure that you receive an Electric vehicle motor iron core of the highest quality and precision. Our expertise lies in the customization of Electric Vehicle motor stators and rotor lamination stacks. We understand that every EV application demands unique specifications, and that’s why we offer a diverse range of sizes, shapes, and designs to suit your requirements. Whether you require custom designs or competitive pricing solutions, you’ll find it all here at

    When it comes to customization, our capabilities are second to none. Whether you require a unique size to fit a specific EV motor design, an unconventional shape to optimize space utilization, or a specialized design to enhance motor performance, we have the expertise and technology to bring your vision to life. No request is too complex or too ambitious for our team of skilled professionals. From lamination prototypes to mass production runs, we have the equipment and experience to meet your needs efficiently and with precision. Our state-of-the-art facilities boast large punching presses, laser cutting machines, and wire EDM (Electrical Discharge Machining) equipment, enabling us to handle projects of varying scales.

    Our expertise in this field encompasses a variety of stamping techniques, including compound stamping, progressive stamping, and rotary notching processes. These advanced methods allow us to produce high-precision lamination stacks that are essential for the optimal performance of EV motors. Our stamping technology results in efficient and cost-effective manufacturing of motor laminations for mass production. What sets us apart is our extensive array of stamping dies, customized to match a variety of sizes, shapes, and designs. The resulting stacks exhibit core low losses, reduced energy consumption, and enhanced magnetic properties
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