| Name of a product | Inventory number | Producer | YOM | Parameters | ||
|---|---|---|---|---|---|---|
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CNCL-K 120-3100 TSI |
191175 | Safan | 2002 | Bending power: 120 t Bending length: 3100 mm Number of driven axes: 3 Lower compensation movement: YES Type of press drive: Hydraulický Ram stroke: 180 mm |
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AD-R 30175 |
251148 | Durma Turkey | 2013 | Control system Cybelec: Bending power: 175 t Bending length: 3050 mm Number of driven axes: 4 Lower compensation movement: YES Type of press drive: Hydraulický |
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CNCL-K 120-4300 |
261174 | Safan | 2002 | Control system SAFAN: Bending power: 120 t Bending length: 4300 mm Number of driven axes: 4 Lower compensation movement: YES Type of press drive: Hydraulický |
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HFP 80-25 |
261362 | AMADA | 2006 | Bending power: 80 t Bending length: 2500 mm Number of driven axes: 7 Lower compensation movement: YES Type of press drive: Hydraulický |
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HERA COP 400/6000 |
251450 | HERA | 1992 | Control system Cybelec: DNC 94 Bending power: 400 t Bending length: 6100 mm Number of driven axes: 2 Lower compensation movement: Type of press drive: Hydraulický |
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ATP 32 100 |
241968 | HACO | 2015 | Control system Haco: Bending power: 100 t Bending length: 3200 mm Number of driven axes: 4 Lower compensation movement: YES Type of press drive: Hydraulický |
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APH 3110x200 NC |
251333 | BAYKAL | 2012 | Bending length: 3100 mm Bending power: 200 t Number of driven axes: 2 Type of press drive: Hydraulický Lower compensation movement: YES Ram stroke: 150÷250 mm |
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HOL 80/2500 |
241679 | Liptovské strojárne | 1997 | Control system Delem: DA 24e Bending power: 80 t Bending length: 2500 mm Number of driven axes: 4 Lower compensation movement: NO Type of press drive: Hydraulický |
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DENER |
261402 | DENER | 2008 | Bending power: 120 t Bending length: 3100 mm Number of driven axes: 4 Lower compensation movement: YES Type of press drive: hydraulic Main motor power: 11 kW |
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PR 6 320-4100 |
251570 | Beyeler | 2002 | Control system Cybelec: Bending power: 320 t Bending length: 4100 mm Number of driven axes: 6 Lower compensation movement: YES Type of press drive: Hydraulický |
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PR 6 |
231192 | Beyeler | 1997 | Bending length: 3100 mm Bending power: 100 t Control system Cybelec: DNC 800 Number of driven axes: 6 Type of press drive: Hydraulický Lower compensation movement: YES |
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PFO/PS/N 400/50 |
231152 | Farina | 2005 | Control system Delem: DA - 65 Bending power: 400 t Bending length: 5100 mm Number of driven axes: 3 Lower compensation movement: YES Type of press drive: Hydraulický |
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GKS-BC0315 |
251982 | GWEIKE | 2023 | Bending power: t Bending length: 1500 mm Number of driven axes: Lower compensation movement: Type of press drive: Machine weight: 10000 kg |
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E 30300 |
261446 | Durma Turkey | 2010 | Control system Cybelec: DNC 880S Bending power: 300 t Bending length: 3050 mm Number of driven axes: 3 Lower compensation movement: YES Type of press drive: Hydraulický |
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HFE 220-4 |
251786 | AMADA | 2008 | Control system Amada: Bending power: 220 t Bending length: 4000 mm Number of driven axes: 7 Lower compensation movement: YES Type of press drive: Hydraulický |
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TruBend 3100 |
261430 | Trumpf | 2021 | Bending power: 100 t Bending length: 3060 mm Number of driven axes: 7 Lower compensation movement: YES Type of press drive: Hydraulický Clearance between columns: 3384 mm |
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IT 25-12A |
241891 | AMADA | 1990 | Control system Amada: Bending power: 25 t Bending length: 1250 mm Number of driven axes: 2 Lower compensation movement: NO Type of press drive: Hydraulický |
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APH 3110x200 NC |
261024 | BAYKAL | 2005 | Bending power: 200 t Bending length: 3100 mm Number of driven axes: 2 Lower compensation movement: YES Type of press drive: Hydraulický Ram stroke: 150÷250 mm |
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AdvanceForm 6100-400 |
251042 | Vartek Machinery | 2022 | Control system Delem: DA - 69 T Bending power: 400 t Bending length: 6100 mm Number of driven axes: 8 Lower compensation movement: YES Type of press drive: Hydraulický |
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HFBO 220/3000 |
241430 | AMADA | 1998 | Bending power: 220 t Bending length: 3000 mm Number of driven axes: 5 Lower compensation movement: NO Type of press drive: Hydraulický Machine weight: 13500 kg |
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Xpert 320 x 4100 |
242048 | Bystronic | 2018 | Bending power: 320 t Bending length: 4100 mm Number of driven axes: 8 Lower compensation movement: YES Type of press drive: Hydraulický Max. ram stroke: 565 mm |
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Trubend 5085 |
261455 | Trumpf | 2009 | Bending power: 85 t Bending length: 2720 mm Number of driven axes: 6 Lower compensation movement: YES Type of press drive: Hydraulický Machine weight: 8200 kg |
The efficiency of a CNC press brake is defined not only by nominal pressure but primarily by the dynamic response of the control system to material deformation. For used CNC machines (e.g., Trumpf, SafanDarley, or Amada), the interaction between linear scales and proportional valves is key. This closed-loop system ensures ram parallelism even under eccentric loads, directly eliminating bending angle variability.
Purchasing a used CNC press brake with advanced control represents a strategic advantage in CAPEX/OPEX. Investing in a machine with an intuitive 3D graphical interface and offline programming shortens the 'First Part Right' preparation time, directly impacting the profitability of small-batch production.
What is the difference between conventional and hybrid drives in a CNC press brake?
A hybrid drive combines the precision of servomotors with the power of hydraulics. The result is a higher ram approach speed (up to 200 mm/s) and extreme stopping precision under load. For the user, this means a 15–25% reduction in the work cycle and a significantly quieter operating environment.
Why is the control system version more important than the machine's year of manufacture?
The hardware robustness of machines manufactured 10 years ago is often higher than today's economy lines. If such a machine is equipped with a modern CNC system supporting STEP/DXF formats, it achieves the same process speed as a new machine but at half the acquisition cost.
How does the throat depth in the side frames affect production variability?
The throat depth limits the bending length for parts with deep side flanges. When selecting a used machine, this parameter is fixed and determines whether it will be possible to produce wide cabinets and deep profiles without colliding with the machine frame.