KCT-1220: China Suppliers Revolutionize Spring Manufacturing with 50% Faster Setup in Factory
| Model | KCT-1220WZ |
| Number Of Axes | 12 (Max 18 axes) |
| Wire Diameter | Φ0.3–2.0mm |
| Max. Wire Feed Speed | 120m/min |
| Spring Index | 3 |
| Feed Roller Group | 2 Groups |
| Feed Servo Motor | 2.9kW |
| Quill Servo Motor | 1.0kW |
| Wire Rotation Motor | 2.9kW |
| Former Servo Motor | 0.85kW × 8 |
| Spinner Servo Motor | 0.4kW |
| Air Pressure | 0.2–0.4Pa |
| Air Cylinder | 5 |
| Probe | 5 |
| Power | 3P / 380V 50/60Hz |
| Dimension (L×W×H) | 1500 × 1160 × 1800mm |
| Weight | 1500 KG |
Product Detail Display
Frequently Asked Questions
Q1 What is the maximum number of axes supported by the KCT-1220WZ spring coiling machine?
The KCT-1220WZ supports 12 axes as standard, and can be expanded up to a maximum of 18 axes to accommodate more complex spring forming requirements.
Q2 What wire diameter range is compatible with the KCT-1220WZ?
The machine is designed to handle wire diameters ranging from Φ0.3mm to Φ2.0mm, making it suitable for a wide variety of spring manufacturing applications.
Q3 What is the maximum wire feed speed of the KCT-1220WZ?
The KCT-1220WZ achieves a maximum wire feed speed of 120 meters per minute, enabling high-efficiency and high-volume spring production.
Q4 What power supply is required to operate the KCT-1220WZ?
The machine requires a three-phase power supply at 380V, 50/60Hz. Please ensure your facility meets this electrical specification before installation.
Q5 What are the overall dimensions and weight of the KCT-1220WZ?
The KCT-1220WZ measures 1500 × 1160 × 1800mm (L × W × H) and weighs approximately 1500 kg. Please ensure adequate floor space and load-bearing capacity at the installation site.
Q6 How many servo motors does the KCT-1220WZ use and what are their functions?
The KCT-1220WZ is equipped with multiple servo motors: a 2.9kW feed servo motor, a 1.0kW quill servo motor, a 2.9kW wire rotation motor, eight 0.85kW former servo motors, and a 0.4kW spinner servo motor — each precisely controlling a specific aspect of the spring forming process.























