China Suppliers Factory Silicon Steel Core Turning Table for Transformer Cores - 3-10T Capacity & Precise Positioning

Introducing our Silicon Steel Core Turning Table, expertly designed for the efficient flipping and positioning of silicon steel cores, such as those used in transformers and motors. With a robust load capacity ranging from 3-10T, this table allows for seamless 0-180° flipping without vibrations, ensuring precise operation with a positioning accuracy of ±0.5mm, Manufactured in China, our table features anti-scratch padding and adjustable clamping mechanisms to protect the cores from damage during handling. By significantly reducing manual labor, it streamlines your assembly workflows and accommodates a variety of core sizes. As a trusted supplier in the industry, we ensure that our product complies with all industrial standards, delivering reliable and high-performance results for your silicon steel core processing needs. Choose our factory for a dependable solution that enhances efficiency and precision in your operations

Product Description

Product Specification

Parameter SH-3T SH-5T SH-10T
Loading 3T 5T 10T
Working Height 850mm 1000mm 1200mm
Iron Core Size Length: 1500mm
Width: 1500mm
Length: 2000mm
Width: 2000mm
Length: 2500mm
Width: 2500mm
Overturning Angle 0–90° 0–90° 0–90°

Advantages

  • ⚖️
    Stable Load-Bearing & Smooth Turning

    Supports a maximum load of up to [XX] kg, enabling 0–180° continuous, low-vibration flipping. It avoids core displacement or deformation during turning (a common issue with manual handling), ensuring the structural integrity of silicon steel cores (e.g., transformer/motor cores) throughout the process.

  • 🎯
    High Post-Turning Positioning Accuracy

    Guarantees ±0.5mm positioning precision after flipping, ensuring the core remains aligned with subsequent assembly stations (e.g., lamination stacking, welding). This eliminates repositioning time and reduces assembly errors, directly improving production efficiency.

  • 🛡️
    Effective Silicon Steel Core Protection

    Equipped with anti-scratch padding on the work surface and adjustable clamping fixtures. It prevents scratches on the core's surface and avoids excessive pressure-induced deformation—critical for maintaining the magnetic performance of silicon steel cores and reducing material waste.

  • Labor-Saving & Safe Operation

    Replaces manual flipping of heavy cores (which is labor-intensive and high-risk), significantly reducing workers' physical burden and lowering the risk of workplace injuries. Its automated/semi-automated control simplifies operation, making it easy to integrate into existing production lines.

Product Display

Iron core overturning worktable

Application

1 Transformer Core Manufacturing

It is widely used in the production of power transformers, distribution transformers, and special transformers. After silicon steel sheets are stacked into transformer cores (single-phase or three-phase), the table realizes smooth 0–180° flipping of the core. This facilitates subsequent processes such as winding (winding installation), core bonding, or end face trimming, while ensuring the core remains free of displacement—critical for maintaining the concentricity of the transformer's magnetic circuit and reducing no-load loss.

2 Motor Core Production

For manufacturing high-frequency amorphous inductors (e.g., in new energy vehicle power systems) and amorphous power reactors (e.g., for power factor correction), the table assembles amorphous core bodies into stable structures. Its scratch-resistant design protects fragile amorphous materials, ensuring the inductors/reactors maintain stable electromagnetic characteristics during long-term operation.

3 Silicon Steel Core Inspection & Repair

In the quality inspection and repair links of silicon steel cores, the table provides stable positioning and flipping functions. Inspectors can use it to slowly flip the core to check for surface scratches, lamination looseness, or dimensional deviations on all sides; during repair, the table fixes the core in a suitable angle, allowing precise correction of defective parts (e.g., re-stacking loose laminations). This ensures the core meets quality standards before entering the next production process.

Frequently Asked Questions

Q What load capacities are available for the iron core overturning worktable?
The worktable is available in three standard load capacities: SH-3T (3 tons), SH-5T (5 tons), and SH-10T (10 tons), covering a wide range of silicon steel core sizes used in transformer and motor manufacturing.
Q What is the overturning angle range of the worktable?
All models (SH-3T, SH-5T, SH-10T) support a continuous overturning angle range of 0–90°, allowing flexible positioning of silicon steel cores for various downstream processes.
Q How does the worktable protect silicon steel cores from damage during flipping?
The worktable is equipped with anti-scratch padding on the work surface and adjustable clamping fixtures. These features prevent surface scratches and avoid pressure-induced deformation, preserving the magnetic performance of the silicon steel core and minimizing material waste.
Q What positioning accuracy can be achieved after flipping?
The worktable guarantees a positioning precision of ±0.5mm after each flip, ensuring the core is accurately aligned with subsequent assembly stations such as lamination stacking and welding, which reduces errors and improves overall production efficiency.
Q Is the iron core overturning worktable suitable for integration into existing production lines?
Yes. The worktable features automated and semi-automated control options, making it straightforward to integrate into existing transformer or motor core production lines. Its compact design and standardized operation reduce the learning curve for operators.
Q What industries and applications is this worktable designed for?
The iron core overturning worktable is designed for transformer core manufacturing (power, distribution, and special transformers), motor core production (including amorphous inductors and reactors for new energy vehicles), and silicon steel core quality inspection and repair workflows.

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