• 20 tf (≈ 196 kN) Maximum Pressing Force
  • 150 kg Bale Weight
  • 40 s Cycle Time
  • 3 kW · 16 A Motor
  • 220-240 V Power Supply
  • 72 dB Noise Level

Technical Data

Technical Specifications

Specification Configuration Value
Maximum Pressing Force 20 tf (≈ 196 kN)
Machine Dimensions (H × W × D) 2600 × 1560 × 1030 mm
Machine Weight 780 kg
Transport Height 1955 mm
Bale Dimensions (H × W × D) 1000 × 975 × 800 mm
Bale Weight 150 kg
Feed Opening (H × W × D) 470 × 975 × 800 mm
Cycle Time 40 s
Motor 3 kW · 16 A
Power Supply 220-240 V
Noise Level 72 dB

The table summarises the machine dimensions, pressing force, bale format, cycle time, motor, power supply and noise level for configuration review.

Product Brochure

Technical Brochure

Download the current PDF brochure for technical specifications, configuration details and layout references.

Product Definition

Wider batch loading with controlled compression and bale removal.

TB150 is a batch-fed vertical baler for operations that collect bulky, separated packaging and production waste. Its wide upper opening gives the operator room to place flattened cartons, film and other compressible material evenly across the chamber. During each cycle, the hydraulic cylinder lowers the platen to consolidate the charge, while chamber retaining elements help limit spring-back before the next batch. This load-and-press sequence continues until the required bale volume has been built. The compressed load is secured through the in-chamber binding channels, the lower door is released and assisted ejection helps present the bale for removal. Suitable applications include dry corrugated cardboard, paper, clean plastic film, empty PET bottles and rigid containers, woven sacks, textile off-cuts and comparable compressible packaging streams. Materials should be segregated by grade where bale quality or end-market acceptance requires it, and liquids, hazardous residues or damaging inclusions must be excluded. Actual bale weight and density vary with feed composition, preparation, moisture, recovery after compression and loading consistency. Project review should therefore consider representative material, loading labour, removal clearance, storage and downstream handling equipment.

Open upper feed chamber of a vertical baler with a completed tied bale positioned beside the machine
Open-feed view showing chamber access and a completed bale.
  1. Large-Format Loading

    The 975 × 800 mm feed-opening footprint supports loading of larger cardboard and packaging material.

  2. Material Retention

    Retaining claws in the chamber reduce spring-back during the compression sequence.

  3. Assisted Bale Removal

    An automatic bale ejector helps move the completed bale out of the chamber for onward handling.

Open lower chamber of a vertical baler with a tied bale at the discharge area
Bale-removal view showing the lower chamber and discharge area.

Material Preparation and Application

Build a consistent bale from bulky, separated material.

TB150 provides a wider loading format for packaging and production streams that are awkward to manage loose. A useful material review considers how each charge enters the chamber, how strongly it springs back between cycles and what quality the receiving recycler expects from the finished bale.

The 150 kg figure is a material-dependent reference. Bale mass, density and cycle count change with grade, moisture, preparation, spring-back and the consistency of each batch loaded into the chamber.

  • Bulky Cardboard

    Larger cartons and corrugated board can be loaded in batches after rigid packing components, metal bands and unrelated waste have been removed. Flattening oversized pieces improves chamber use and loading consistency.

  • Paper Grades

    Production paper, office grades and clean board should be separated where their end markets differ. Wet paper, food-soiled fibre and bonded composites can reduce bale quality and should be identified before loading.

  • Film and Flexible Packaging

    Stretch wrap, clean film and suitable flexible packaging can exhibit strong spring-back. Controlled batch size, even distribution and removal of rigid cores help the retaining elements work effectively.

  • PET and Plastic Containers

    Empty PET bottles and compatible rigid containers may be reviewed as separated streams. Free liquid, sealed pressure, incompatible polymers and hazardous residues must be controlled before baling.

  • Sacks and Textiles

    Clean woven sacks and textile off-cuts should be sized so they cannot bridge the feed opening or trail into closing areas. Long, tangled pieces require a defined preparation method.

  • Receiving and Storage

    Agree the grade, tying method, allowable contamination and identification requirements with the bale receiver. The storage area and handling equipment should suit the actual bale mass and recovery behaviour.

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