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Created with Pixso. 315 Ton Hydraulic Metal Baler for High-Density Compression and Circular Economy in Scrap Recycling

315 Ton Hydraulic Metal Baler for High-Density Compression and Circular Economy in Scrap Recycling

브랜드 이름: Wanshida
모델 번호: Y83/F-315
MOQ: 1세트
가격: 70000~75000$
배달 시간: 35일
지불 조건: L/C, T/T, 웨스턴 유니온
상세 정보
원래 장소:
중국
인증:
CE & ISO9001
기계 중량:
38.5톤
베일사이즈:
사용자 정의 가능, 일반적으로 600x800x1000mm
전압:
380/60HZ 또는 220/50HZ
사이클 길이:
App.180초
베일밀도:
> 1800kg/m3
용량:
4000-5000kg/h
배출하는 것 곤포로 포장하세요:
투표율
보증:
1년
산출:
7-8톤/시간
가공된 재료:
금속 스크랩
포장 세부 사항:
항해에 적합한 포장
공급 능력:
30 세트/월
강조하다:

315 ton hydraulic metal baler

,

metal baling machine for scrap recycling

,

circular economy metal baler

제품 설명

315 Ton Hydraulic Scrap Metal Baler for Sustainable Recycling Solutions

Product Overview

The 315 ton hydraulic scrap metal baler is designed to support modern recycling operations with a strong focus on environmental responsibility and resource efficiency. It is widely used in recycling centers, metal processing facilities, and waste management plants across Europe, where sustainability and compliance with environmental standards are essential.


This machine efficiently compresses various types of scrap metal, including steel, aluminum, and mixed metal waste, into high-density bales. By reducing material volume, it helps optimize transportation, minimize storage space, and lower carbon emissions associated with logistics.


With a robust hydraulic system and optional PLC control, the baler ensures stable operation, consistent performance, and long-term reliability in demanding industrial environments.





Core Features and Environmental Benefits

  • High-Density Compression for Reduced Transport Emissions

    Produces compact bales that significantly reduce transport frequency and fuel consumption.

  • Energy-Efficient Hydraulic System

    Optimized hydraulic design lowers energy usage while maintaining high pressing force.

  • Support for Circular Economy Practices

    Converts loose scrap into standardized bales suitable for re-melting and reuse in steel production.

  • Low Noise and Stable Operation

    Designed for improved working conditions and compliance with environmental workplace standards.

  • Flexible Material Handling

    Suitable for steel scrap, aluminum profiles, sheet metal, and mixed recyclable materials.

  • Optional PLC Automation

    Enhances operational efficiency and reduces manual intervention.






Technical Specifications

Nominal Force: 3150 kN

Chamber Size: 2600 × 1750 × 1200 mm

Bale Size: approx. 600 × 600 mm

Capacity: 4000–7000 kg/h (depending on material)

Cycle Time: approx. 120–150 seconds

Motor Power: 60–90 kW

Operation: Manual valve or PLC semi-automatic

Discharge Type: Turn-out / Push-out (optional)





Working Principle

The machine operates through a hydraulic system that applies high pressure to compress scrap metal inside the chamber. The material is first loaded into the compression box, then pressed from multiple directions to form a dense and uniform bale.


Once the desired density is reached, the bale is discharged either by turn-out or push-out mechanism, making it ready for storage or transportation. This process ensures efficient material handling and consistent bale quality.





Applications

  • Scrap metal recycling yards

  • Steel mills and foundries

  • Waste management and sorting facilities

  • Automotive dismantling plants

  • Industrial metal processing workshops




Why Choose This Machine for European Markets

  • Designed with sustainability and efficiency in mind

  • Helps reduce carbon footprint in recycling operations

  • Supports compliance with European environmental standards

  • Built for long service life and low maintenance

  • Backed by over 40 years of manufacturing experience




Project Value Summary

For recycling companies facing increasing pressure to improve environmental performance and operational efficiency, this 315 ton scrap metal baler offers a practical and reliable solution. By reducing waste volume, optimizing logistics, and enabling high-quality material recovery, it plays a key role in advancing sustainable recycling systems.