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DYPS-G series heavy pipe crusher, for pipes which diameter below 630mm, do not need shredding, directly crushing.
There is a special pipe hopper in the crusher. The pipe and crusher rotor form a specific Angle, to achieve the best crushing effect. The largest length of pipe and profile can be 6 meters.
The crusher is designed with a third fixed knife, which can be used to change the first cutting point of the crushing material. For waste materials with high strength and large volume, it can reduce the impact force and avoid the moving knife being blocked by materials. Special steel and firm welding process to ensure product quality. The special design of spindle can meet the crushing requirements of all kinds of pipes, profiles, films, sheets and large solid materials.
The crusher is wide versatility, economical, practical, simple operation and durable.
Model | Feed mouth size(mm) | Main motor Power(kW) | Rotor blade(pcs) | Fixed blade (pcs) | Rotor diameter (mm) | Output (kg/h) |
DYPS-G 700 | 310*300 | 37 | 6 | 4 | Φ500 | 450 |
DYPS-G 800 | 360*350 | 55 | 6/10 | 6 | Φ600 | 650 |
DYPS-G 1000 | 510*500 | 75-110 | 10/14 | 6 | Φ700 | 850 |
DYPS-G 1200 | 650*650 | 110-160 | 14/18 | 6 | Φ800 | 1200 |
Highly automated: Fully automatic operation reduces manual intervention and increases efficiency.
Heavy-duty design: Designed to handle tough materials like PVC pipes and other heavy plastics.
Versatile material handling: Capable of handling a range of plastics, including PP, PE and HDPE.
Efficient shredding: Shreds waste plastic pipes and similar materials quickly and efficiently.
Reliable performance: Designed for continuous operation with minimal maintenance downtime.
Space-saving construction: Compact design easily integrates into existing production lines.
User-friendly controls: Simple interface for easy operation and monitoring of the shredding process.
Advantages:
Heavy-Duty Design: Designed for tough plastic materials, ideal for large-scale recycling operations.
Efficient: Equipped with powerful blades and high torque for efficient material reduction.
Cost-Effective: Reduces material size, reduces waste disposal costs and increases recycling efficiency.
Durable Construction: Long-lasting and built for continuous, heavy-duty use.
Low Maintenance: Reliable operation with minimal downtime and reduced maintenance needs.
Environmentally Friendly: Helps recycle plastics and supports environmentally friendly waste management solutions.
Applications:
Plastic Pipes: Efficiently shreds large plastic pipes such as PVC, PE and HDPE for recycling.
Profile Materials: Handles a wide range of plastic profiles and sheets, making them easier to reuse and repurpose.
Thick Plastics: Handles thicker materials, including industrial plastics, making recycling more manageable.
Packaging Materials: Ideal for shredding plastic packaging to increase recycling yield.
Wires and Cables: Shreds cables and wires to separate plastic and metal for recycling.
Auto Parts: Ideal for recycling automotive parts such as bumpers and plastic parts.
1. What materials can the DYPS-G Series Heavy Duty Pipe Crusher process?
The DYPS-G Series Heavy Duty Pipe Crusher can process a variety of material types, including PVC pipes, PP, PE, HDPE, and other thick plastics.
2. How efficiently does the DYPS-G Series Heavy Duty Pipe Crusher operate?
The DYPS-G Series has an efficient crushing capability, making it ideal for recycling applications, especially for handling heavy materials.
3. Is the DYPS-G Series Heavy Duty Pipe Crusher suitable for continuous operation?
Yes, the DYPS-G Series is designed for continuous operation, with durability and performance in demanding conditions.
4. What industries can benefit from the DYPS-G Series Heavy Duty Pipe Crusher?
The DYPS-G Series is ideal for industries involved in plastic recycling, such as manufacturing, automotive, and construction, which need to handle heavy plastic materials.
5. Does the DYPS-G Series Heavy Duty Pipe Crusher require a lot of manual intervention?
The DYPS-G Series is fully automatic, reducing the need for human intervention and improving overall efficiency.
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