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YB2 series motor rotor laminations price

YB2 Series Motor Rotor Laminations Price Overview The price of rotor laminations for the YB2 series motor is influenced by multiple factors, including material costs, production processes, market demand, and regional economic conditions. Below is a detailed analysis of the key elements affecting pricing: 1. Material Costs The primary material used in YB2 rotor laminations is electrical steel (silicon steel), which accounts for a significant portion of the total cost. The grade and thickness of the steel directly impact performance and pricing. Higher-grade silicon steel with low core loss and high magnetic permeability tends to be more expensive. Additionally, fluctuations in global steel prices, driven by raw material availability and trade policies, can cause price variations. 2. Manufacturing Process The production of rotor laminations involves precision stamping, stacking, and insulation treatment. Advanced stamping techniques, such as laser cutting or progressive die stamping, ensure high dimensional accuracy but may increase costs. The complexity of the lamination design, including the number of slots and the shape of the core, also affects pricing. Furthermore, heat treatment and coating processes to reduce eddy current losses add to the overall expense. 3. Labor and Overhead Expenses Labor costs vary depending on the region of production. Countries with lower labor costs may offer more competitive pricing, while regions with higher wages may have elevated prices. Additionally, energy costs, factory maintenance, and quality control measures contribute to overhead expenses, influencing the final price. 4. Market Demand and Supply The demand for energy-efficient motors, such as the YB2 series, impacts rotor lamination pricing. In periods of high demand, prices may rise due to limited supply or increased production lead times. Conversely, oversupply or reduced demand can lead to price reductions. Global economic conditions, including inflation and trade tariffs, also play a role in pricing stability. 5. Customization and Order Volume Customized rotor laminations, tailored to specific motor designs or performance requirements, typically cost more than standard designs. Larger order volumes often benefit from economies of scale, reducing the unit price, while small-batch orders may incur higher per-piece costs due to setup and tooling expenses. 6. Quality and Certification High-quality laminations that meet international standards (such as IEC or NEMA) often command premium prices. Certifications for energy efficiency, durability, and environmental compliance (e.g., RoHS) may also increase costs due to additional testing and compliance requirements. Conclusion The price of YB2 series motor rotor laminations is determined by a combination of material selection, manufacturing complexity, labor costs, market dynamics, and customization needs. Buyers should consider these factors when evaluating suppliers to ensure a balance between cost, quality, and performance. For accurate pricing, it is advisable to request quotations from multiple manufacturers based on specific technical requirements and order quantities.

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  • Three-phase asynchronous motor rotor laminations YB2 series

    Three-phase asynchronous motor rotor laminations YB2 series

    Category: Motor stator and rotor laminations
    Browse number: 119
    Number:
    Release time: 2025-09-30 14:56:43
    YB2 series three-phase asynchronous motor rotor laminations are engineered to maximize motor efficiency and reduce energy loss in industrial applications. Made from high-grade silicon electrical steel with precise thickness and insulation coating, these laminations minimize eddy current and hysteresis losses, ensuring optimal magnetic flux distribution. Precision stamping and accurate stacking provide mechanical stability, low vibration, and consistent torque output. Suitable for pumps, fans, compressors, conveyors, and other continuous-duty equipment, YB2 rotor laminations enhance motor reliability, lower operating temperatures, and extend service life. They are a critical component for energy-efficient, high-performance three-phase asynchronous motor systems.

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