Stator cores are formed by stacking and assembling stator laminations. As the core component of a motor's magnetic circuit, they dominate the conversion process of electrical energy into mechanical energy. The assembly is completed through self-bonding, riveting, or welding fixation processes, and the winding process is employed for certain products to enhance material utilization rates. Product performance is closely related to the quality of raw materials and the precision of stacking. With the growing demand for high-efficiency motors, the application proportion of high-end silicon steel featuring low iron loss and high magnetic permeability is gradually increasing. Stator cores are suitable for a variety of fields, including new energy vehicles, wind power, and industrial automation, providing core support for the efficient and stable operation of various motors.
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