China 3D Wound Core Curve Cutting Machine for Transformer Manufacturing | Suppliers & Factory Solutions

Introducing our cutting-edge 3D wound core curve cutting machine, designed for precision in transformer core manufacturing. This advanced CNC technology enhances accuracy and efficiency, making it the perfect choice for suppliers and factories in China. Ideal for producing stereo laminated iron cores, our machine effortlessly navigates complex curves, improving production quality while minimizing waste. With its user-friendly design and automated features, operating this machine is a breeze, ensuring it meets industrial standards reliably. Elevate your manufacturing processes with our premier cutting solution today!

Product Description

Product Specification

Code SHKL-400
Cutting type Straight/Curve
Max feeding width 400MM
Cutting speed 0-60M/min
Cutting method Cut one into two strip
Material utilization 99%
Cutting accuracy ±0.3MM
Cutting burr ≤0.03MM
Speed adjusting way Stepless speed adjust

Key Advantages

1. Superior Precision: Leverages advanced CNC technology and high-precision servo systems to achieve cutting accuracy of up to ±0.02mm, ensuring consistent curve profiles.
2. High Efficiency: Integrates automatic feeding and curve programming, boosting production efficiency by over 30% compared to traditional equipment.
3. Strong Adaptability: Intelligent sensors for real-time thickness monitoring and automatic parameter adjustment for different silicon steel grades.
4. Stable & Durable Operation: Rigid frame structure minimizes vibration during high-speed cutting, extending service life and reducing maintenance.
5. User-Friendly & Safe: Intuitive HMI for easy operation with built-in safety interlocks and emergency stop functions.
6. Seamless Workflow Integration: Compatible with CAD/CAM systems for direct design file import, eliminating manual programming errors.
7. Waste Reduction: Precise cutting control minimizes material waste, lowering raw material costs for transformer core manufacturing.

Details Display

3D Wound Core Curve 1
3D Wound Core Curve 2
3D Wound Core Curve 3
3D Wound Core Curve 4

Industrial Applications

1. Power Transformer Manufacturing

Precisely cuts silicon steel sheets into curved profiles for 3D wound cores, ensuring tight lamination and reducing magnetic loss in distribution and power plant transformers.

2. Special Transformer Production

Ideal for traction transformers, industrial electrolysis rectifier transformers, and dry-type transformers, adapting to diverse curve designs and steel grades.

3. High-Frequency Transformer & Inductor Making

Supports miniaturization in new energy vehicles and photovoltaic inverters by cutting thin-gauge silicon steel or amorphous alloy sheets into precise shapes.

4. Renewable Energy Equipment

Supplies accurately cut 3D wound core parts for wind power converters and solar grid-connected inverters, optimizing energy transmission efficiency.

Frequently Asked Questions

Q1: What is the maximum cutting precision of the SHKL-400?

The machine utilizes advanced CNC technology to achieve a cutting accuracy of ±0.3MM with a cutting burr level of ≤0.03MM.

Q2: What is the maximum material width this machine can handle?

The SHKL-400 supports a maximum feeding width of 400MM, making it versatile for various transformer core sizes.

Q3: How does the machine improve production efficiency?

By integrating automatic material feeding and curve programming, it reduces manual intervention and boosts efficiency by over 30% compared to traditional methods.

Q4: Can this machine handle different grades of silicon steel?

Yes, it is equipped with intelligent sensors for real-time thickness monitoring and automatic parameter adjustment to handle various silicon steel grades smoothly.

Q5: Is the SHKL-400 compatible with digital design software?

Yes, it is fully compatible with CAD/CAM systems, allowing for direct design file imports to eliminate manual programming errors.

Q6: What is the primary cutting method of this equipment?

The machine uses a specialized cutting method that splits one strip into two, achieving a material utilization rate of 99%.

Related Products