Introducing the DLM-4 Double-Side Coil Lacing Machine
Automatic Economic Type Double Side Binding Induction Stator Coil End Lacing Machine for Compression Motors with High Winding Overhang in Large Electric Motors (Model: DLM-4)
1. Built with an enduring mechanical structure for long-lasting durability
2. Enjoy remarkable convenience with easy repair and replacement features
Introduction to the DLM-4 Double-Side Coil Lacing Machine:
This advanced machine is designed for expertly binding engine stator coils. It accommodates various wire binding methods and features a tension controller to finely tune the tightness of the binding wires.
Key Features of the DLM-4 Double-Side Coil Lacing Machine:
1) Engineered with a robust mechanical structure for outstanding durability, facilitating effortless repair and replacement of diverse engine stators.
2) Offers versatile binding options, allowing for either full-slot binding or electrical insulation slot binding.
3) Experience accelerated binding speeds, reaching an impressive 220 RPM.
Positioning Mode for the DLM-4 Double-Side Coil Lacing Machine:
Choose between internal or external positioning modes, enhanced with an additional clamping device for precision.
Scope of Application for the DLM-4 Double-Side Coil Lacing Machine:
Ideal for Y series electric engines, generator motors, washing machines, air conditioners, water pumps, compressors, and fan motors. It's compatible with copper, aluminum, and various special wires.
Additional Remarks on the DLM-4 Double-Side Coil Lacing Machine:
Tailored customization available to meet unique customer requirements for special electric engines, with pricing based on the specific production technology involved.
Technical Parameters of the DLM-4 Double-Side Coil Lacing Machine:
Laminated thickness of stator |
15mm-120mm |
Max outer diameter of stator |
Φ 150mm |
Min adaptive core bore |
Φ 33mm |
Tack time |
0.4-0.5 s/pin |
Input |
380V/50Hz |
Air pressure |
0.5-0.8 MPa |
Power |
3000 W |
Dimension |
1570mm× 670mm× 1680mm |
Weight |
900kg |