Scrap Baler Shear
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Scrap Baler Shear — An Integrated Engine for High-Density Pre-processing and Continuous Shearing

Range: Throughput: approx. 10–20 TPH

Application: End-of-Life Vehicle (ELV) recycling plants - Mixed metal recycling plants - Scrap processing yards - Aluminum and light scrap recycling plants

The scrap baler shear is an integrated unit, combining compression and shearing for efficient pre-processing of loose and medium-sized scrap. Through a continuous compression–cutting cycle, it transforms low-density materials into high-density, uniform output.

Within the plant process, it plays a key role in material densification and standardization. By increasing bulk density, it reduces transportation, storage, and handling costs. At the same time, it stabilizes feed size and shape, improving shredding consistency and reducing impact loads.Furthermore, densified materials exhibit more stable trajectories and clearer physical characteristics during downstream separation, enhancing sorting precision and non-ferrous recovery rates. It is a critical node for achieving high system efficiency and value recovery.

 

- Shear force: approx. 500–700 tons

- Throughput: approx. 10–20 TPH (depending on material)

- Cycle: continuous compression and shearing

- Applicable material: loose and medium-sized scrap

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Integrated compression and shearing for efficient densification

Integrated compression and shearing design

Combines baling and cutting in one unit, reducing intermediate steps and equipment footprint, improving plant layout efficiency and integration level.

 

 High-efficiency densification capability

Significantly increases material density, reducing logistics costs while improving downstream processing efficiency.

 

 Continuous and stable operation

Designed for continuous compression and cutting cycles, ensuring stable output and minimizing process fluctuations.

 

 Intelligent hydraulic energy optimization

Adaptive hydraulic system optimizes energy usage under varying loads, reducing cost per ton processed.

 

 High-reliability structural design

Wear-resistant components and reinforced structure, combined with lubrication and oil management systems, ensure long service life and reduced maintenance.

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