GT4-12 Steel Wire Straightening Machine
Model: GT4-12
Straightening Rebar: 4-12mm
Cut Length: 300-12000mm
Speed: 55-80m/min
Motor Power: 15 KW+5.5KW
Size: 2580*660*1200mm
Weight: 950KGS
GT4-12 Steel Wire Straightening Machine
GT4-12 Steel Wire Straightening Machine, An all-in-one straightening and cutting solution for low-carbon round bars and threaded steel bars (Ø4-12mm), delivering 40% faster processing with precision accuracy. Ideal for prefab plants and construction sites, its automated operation reduces labor costs while maintaining consistent output quality.
Model and Specifications:
| GT4-12 Steel Wire Straightening Machine | ||
|---|---|---|
| Specification | Details | Notes |
| Model | GT4-12 | |
| Capacity (II Rebar ≤450N) | ø4mm – ø12mm | Standard rebar grade |
| Capacity (III Rebar ≤650N) | ø4mm – ø10mm | High-strength rebar |
| Cutting Length | 300mm to up | Minimum 300mm length |
| Cutting Error | ±1cm | Precision tolerance |
| Speed | 55-80m/min | Processing speed |
| Straighten & Traction Motor | 15kW | Main drive power |
| Pump Motor | 5.5kW | Hydraulic system |
| Straightening Degree | ±1mm/m | Straightness tolerance |
| Whole Weight | 950kg | Machine weight |
| Dimension (L×W×H) | 3000 × 1070 × 1280mm | Size |
| Motor Voltage Options | 380V / 220V / 415V / 440V | Customizable power |
Key Features:
High-Speed Performance
Straightens and cuts rebar at 55–80 meters per minute, enabling rapid processing of large volumes with exceptional accuracy.
Programmable Control System
Features a user-friendly PLC control system, allowing for easy setup, real-time adjustments, and consistent output.
Precision Cutting
Delivers cut length accuracy of ±0.5cm, ensuring that each steel bar is trimmed to the required size without wastage.
Wide Application Range
Suitable for use in:
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Cement prefabricated component plants
-
Cement product manufacturing
-
Construction sites
-
Steel distribution and processing centers
Strong Motor for Reliable Operation
Equipped with a 15KW high-power motor for stable and powerful performance under continuous workloads.








