• 30 tf (≈ 294 kN) Maximum Pressing Force
  • 250 kg Bale Weight
  • 40 s Cycle Time
  • 4 kW · 16 A Motor
  • 220-240 V Power Supply
  • 72 dB Noise Level

Technical Data

Technical Specifications

Specification Configuration Value
Maximum Pressing Force 30 tf (≈ 294 kN)
Machine Dimensions (H × W × D) 2900 × 1759 × 1185 mm
Machine Weight 1250 kg
Transport Height 2250 mm
Bale Dimensions (H × W × D) 1000 × 1200 × 800 mm
Bale Weight 250 kg
Feed Opening (H × W × D) 678 × 1200 × 800 mm
Cycle Time 40 s
Motor 4 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

Broad-platen compression for larger separated-material volumes.

TB250 is a higher-capacity, batch-fed vertical baler for sites that accumulate substantial volumes of separated recyclable material and need a consistent format for storage and onward handling. Large charges enter through the wide upper opening and are distributed so the broad platen engages the load evenly. The hydraulic drive moves the platen downward, while successive loading and compression cycles build the bale progressively. Once the target volume is reached, binding is completed through the chamber channels and assisted ejection supports controlled removal through the lower-door area. The 1200 × 800 mm bale footprint can be coordinated with pallet-based storage and handling, subject to actual bale condition. Typical streams include high-volume corrugated cardboard and paper, clean plastic film, empty PET containers, sacks and textiles. Selected metal cans require technical review of geometry, wall thickness, residual contents and safe loading. Final bale weight and density remain material-dependent and are influenced by grade, moisture, contamination, spring-back, particle form and operator loading practice. The project basis should also verify removal space, floor conditions, utilities and completed-bale handling.

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. 1200 × 800 mm Bale Footprint

    The bale format uses a Euro-pallet-sized footprint with a 1000 mm height; actual bale condition controls handling decisions.

  2. Maximum Pressing Force: 30 tf

    Maximum pressing force is 30 tf (≈ 294 kN), with a 40-second cycle time.

  3. Output Handling Support

    Retaining claws reduce spring-back and an automatic bale ejector assists completed-bale removal.

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

Control high-volume material before it reaches the chamber.

TB250 is intended for substantial separated streams where preparation, loading discipline and finished-bale logistics need to work as one process. The review should establish material grade, piece geometry, contamination limits, spring-back and the route from the open chamber to storage or collection.

The 250 kg figure remains a material-dependent reference. Representative trials or reliable material data are important where bulk density, moisture, contamination or piece form varies across shifts and suppliers.

  • High-Volume Cardboard

    Corrugated cases and board off-cuts should arrive dry, separated and free from rigid packing hardware. Large pieces should be prepared so the load spreads across the broad platen instead of bridging the chamber.

  • Recovered Paper

    Paper grades can be baled where moisture, coatings, food residue and non-paper components remain within the receiver’s acceptance basis. Separate grades when mixing would reduce recovered-fibre value.

  • Film, Wrap and Sacks

    Clean film, stretch wrap and suitable sacks require controlled charges because their low bulk density and spring-back can produce uneven loading. Remove hard cores, long ties and incompatible residues.

  • PET and Rigid Containers

    Empty PET and compatible rigid plastic containers can be reviewed as defined streams. Closed, pressurised or chemically contaminated packaging must not enter the normal loading route.

  • Selected Metal Cans

    Metal cans are not a blanket application. Geometry, wall thickness, closures, sharp edges and residual contents require technical confirmation before a safe loading and compression method is approved.

  • Pallet and Bale Logistics

    Coordinate the bale footprint with pallet use, ejection clearance, weighing, forklift access, stacking limits and collection-vehicle requirements. Handling must be based on actual bale stability and mass.

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