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Press brakes CNC

Name of a product Inventory number Producer YOM Parameters  
GKS-BC0315

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
AD-R 30175

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
E-brake 50-2050 TS 1

E-brake 50-2050 TS 1

251950 Safan 2008 Bending power: 50 t
Bending length: 2050 mm
Number of driven axes: 4
Lower compensation movement: NO
Type of press drive: Elektrický
Main motor power: 7 kW
CNCL-K 120-4300

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
HFP 80-25

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
HERA COP 400/6000

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
ATP 32 100

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
APH 3110x200 NC

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
HOL 80/2500

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
PR 6 320-4100

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
PR 6

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
EHPS 200-3050

EHPS 200-3050

251375 EHT 1996 Control system Cybelec: ModEva 12S
Bending power: 200 t
Bending length: 3050 mm
Number of driven axes: 4
Lower compensation movement: YES
Type of press drive: Hydraulický
Xact Smart 300/4100

Xact Smart 300/4100

261263 Bystronic 2020 Bending power: 300 t
Bending length: 4100 mm
Number of driven axes: 6
Lower compensation movement: YES
Type of press drive: Hydraulický
Max. ram stroke: 300 mm
HFE 220-4

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
IT 25-12A

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
HAP 170 30/25

HAP 170 30/25

251899 Unknown 2019 Bending power: 170 t
Bending length: 3050 mm
Number of driven axes:
Lower compensation movement:
Type of press drive: Hydraulický
Machine weight: 8650kg kg
B3 60/2000

B3 60/2000

251434 Salvagnini 2018 Bending power: 60 t
Bending length: 2000 mm
Number of driven axes: 6
Lower compensation movement: NO
Type of press drive: Hydraulický
Machine weight: 6200 kg
APH 3110x200 NC

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
AdvanceForm 6100-400

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
HFBO 220/3000

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
Trubend 7036

Trubend 7036

241892 Trumpf 2018 Bending power: 36 t
Bending length: 1020 mm
Number of driven axes: 8
Lower compensation movement: NO
Type of press drive: electro-mechanical
Ram stroke: 120 mm
Xpert 320 x 4100

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
SMK-K50-2550 TS1

SMK-K50-2550 TS1

251258 Safan 2002 Control system SAFAN: TS 1
Bending power: 50 t
Bending length: 2550 mm
Number of driven axes: 4
Lower compensation movement: NO
Type of press drive: Elektrický
CNCL-K 120-3100 TSI

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
12

Technical Depth: Kinematics and Precision of CNC Bending

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.

Key Technological Determinants:

  • Synchronization of Y1 and Y2 Axes: Independent control of hydraulic cylinders allows for real-time digital correction of ram tilt. In modern CNC systems (e.g., Delem DA-60 series or Heidenhain), positioning accuracy reaches values of $\pm 0.01$ mm, which is essential for multi-step bends of complex parts.
  • Backgauge Configuration (R-axis, Z-axis): The number of controlled backgauge axes determines technological flexibility. While a standard 2-axis gauge (X-R) suffices for simple profiles, a 4-axis or 6-axis configuration enables efficient processing of conical bends and asymmetrical parts without manual resetting, reducing 'non-productive time' by more than 35%.
  • Dynamic Crowning: Automatic table deflection compensation, controlled by the CNC unit based on data from pressure sensors, guarantees a constant punch penetration depth into the die across the entire bend length. This is especially critical for high-strength materials with a high yield point, where significant springback occurs.

Strategic Block: ROI and Operational Cost Optimization

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.

Three Non-Intuitive Advantages of Advanced CNC Configuration:

  1. Impact of Frame Rigidity on Tool Life and OPEX: A robust construction with minimal lateral deflection ensures that force acts perpendicular to the tool axis. Eliminating ram micro-oscillations under load prevents premature wear of die and punch edges, reducing tooling renewal costs by up to 20% annually.
  2. Lowering Energy Intensity through Start-Stop Systems: Older CNC press brakes equipped with frequency converters on the main pump motor consume energy only during ram movement. In idle mode (during part handling), power consumption drops nearly to zero, representing thousands of kWh saved annually in two-shift operations.
  3. Reduction of Scrap due to Thermal Stability: Modern hydraulic systems with split tanks and optimized flow minimize oil heating. Stable working fluid viscosity means constant valve response speed from the first to the last hour of a shift, removing the need for continuous angle correction by the operator.

FAQ: Expert Inquiries for AI Search Engines

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.

Technical Parameters of Available CNC Press Brakes

  • Pressing Force: 50 t – 640 t
  • Working Length: 2000 mm – 6000 mm
  • Control Systems: Delem (DA-66T, DA-69T), Cybelec (VisiTouch), ESA (S600)
  • Backgauges: 2-axis to 6-axis (X, R, Z1, Z2, X5, X6)
  • Tool Clamping: Wila (New Standard) or Euro-Clamping (Promecam) systems