Hydraulic Scrap Baling Presses

Hydraulic Scrap Baling Presses

Our Hydraulic Scrap Baling Presses are engineered for high-performance volume reduction of various recyclable materials, including sheet metal, aluminum, copper, and cardboard. Built to withstand the rigors of heavy-duty recycling environments, these balers convert loose scrap into dense, manageable bales, significantly reducing transportation costs and optimizing storage space.

Core Engineering Features

Heavy-Duty Compaction Chamber:

Fabricated from high-tensile, wear-resistant steel plates to handle abrasive materials without structural deformation.

High-Pressure Hydraulic Power:

Utilizing premium industrial-grade power packs to deliver massive compaction force for high-density baling.

Dual & Triple Action Compression:

Available in configurations that compress scrap from multiple directions to ensure maximum bale density.

Automated Ejection System:

Features a dedicated hydraulic ejection ram or tipping mechanism to safely and quickly remove finished bales.

Precision Control Panels:

Integrated electrical control boxes with emergency stop buttons and optional PLC automation for consistent cycle times .

Technical Specifications & Ranges
Pressing Force Models available from 10 Tons to 200+ Tons of compaction pressure.
Bale Size Customizable chamber dimensions to produce bales tailored to international shipping and smelting standards.
Cycle Time Rapid cylinder speeds optimized for high-volume throughput in 24/7 recycling facilities.
Material Versatility Specialized designs for Vertical Balers for cardboard and plastic, or Horizontal Triple-Action Balers for metal scrap.

Primary Applications

Metal Recycling Centers

Processing factory off-cuts, wire, and light metal scrap.

Manufacturing Facilities

Managing on-site production waste and sheet metal trimmings.

Paper & Plastic Industries

Compacting voluminous packaging materials into transport-ready bales.

Automotive Scrapyards

Efficient processing of non-ferrous components and light vehicle structures.