+420 778 547 838 info@fermat.cz
Close
Show categoriesHide categories Show filtersHide filters
YOM
Max. plate thickness [mm]
Producer
Change producer
More
12 List Grid

Shears Plate

HGL 3100x6
BAYKAL
Inventory number: 251523

YOM:2011
Max. length of cutting: 3100 mm
Max. plate thickness: 6 mm
Drive type of shears: Hydraulický
Main motor power: 11 kW
Number of ram strokes: 20 /min
Machine weight: 5500 kg

NTE 2000/6,3-A
Stroje a zariadenia Piesok s.r.o.
Inventory number: 261104

YOM:1974
Max. length of cutting: 2000 mm
Max. plate thickness: 6,3 mm
Drive type of shears: Mechanický
Main motor power: 11 kW
Machine dimensions l x w x h: 2840 x 2170 x 1630 mm
Machine weight: 6800 kg

HGL 3108
BAYKAL
Inventory number: 251639

YOM:2014
Control system Cybelec: CybTouch 6
Max. length of cutting: 3060 mm
Max. plate thickness: 8 mm
Drive type of shears: Hydraulický
Main motor power: 15 kW
Number of ram strokes: 12 /min

OL 3/1250
Digep
Inventory number: 251939

Max. length of cutting: 1250 mm
Max. plate thickness: 3 mm
Drive type of shears: Mechanický
Backgauge travel: 500 mm
Main motor power: 2,2 kW
Machine dimensions l x w x h: 1620x1403x1190 mm

B06-3100
MVD
Inventory number: 261165

YOM:2014
Max. length of cutting: 3100 mm
Max. plate thickness: 6 mm
Drive type of shears: Hydraulický
Number of ram strokes: 18 /min
Main motor power: 10 kW
Machine weight: 6000 kg

HTBS Pro 3113 CNC
Metallkraft
Inventory number: 261033

YOM:2022
Control system Cybelec: CybTouch 8
Max. length of cutting: 3100 mm
Max. plate thickness: 13 mm
Drive type of shears: Hydraulický
Number of ram strokes: 12 /min
Machine dimensions l x w x h: 4100x3700x2300 mm

CNTF 3200/10 CNC
Fermat
Inventory number: 251206

YOM:2008
Control system Mitsubishi:
Max. length of cutting: 3200 mm
Max. plate thickness: 10 mm
Drive type of shears: Hydraulický
Main motor power: 15 kW
Machine weight: 11000 kg

FHT 8x2700
Simerom
Inventory number: 251725

YOM:1987
Max. length of cutting: 2700 mm
Max. plate thickness: 8 mm
Drive type of shears: Hydraulický
Main motor power: 15 kW
Machine weight: 8500 kg

TS 2006
HACO
Inventory number: 251827

YOM:2001
Max. length of cutting: 2000 mm
Max. plate thickness: 6 mm
Drive type of shears: Hydraulický

OL 1250/3
Digep
Inventory number: 151031

Max. length of cutting: 1250 mm
Max. plate thickness: 3 mm
Drive type of shears: Mechanický

AHGM 3016
Inanlar
Inventory number: 261054

YOM:2022
Control system Cybelec: CybTouch 8
Max. length of cutting: 3050 mm
Max. plate thickness: 16 mm
Drive type of shears: Hydraulický
Number of ram strokes: 6 /min
Main motor power: 30 kW

2500/3
DENER
Inventory number: 261350

YOM:2010
Max. length of cutting: 3120 mm
Max. plate thickness: 6 mm
Drive type of shears: hydraulic
Main motor power: 11 kW
Machine weight: 6500 kg

CNC HVR 3100 x 6
ERMAKSAN
Inventory number: 251158

YOM:2019
Max. length of cutting: 3100 mm
Max. plate thickness: 6 mm
Drive type of shears: Hydraulický
Main motor power: 11 kW
Machine weight: 7250 kg
Machine dimensions l x w x h: 4980 x 2200 x 2225 mm

LV 3,5/1250
Gefi Györ
Inventory number: 251940

YOM:1984
Max. length of cutting: 1250 mm
Max. plate thickness: 3,5 mm
Drive type of shears: Hydraulický
Main motor power: 4 kW
Machine weight: 1050 kg

S4-6000
Mengele
Inventory number: 251096

YOM:1999
Max. length of cutting: 6050 mm
Max. plate thickness: 4 mm
Drive type of shears: Hydraulický
Machine weight: 21000 kg

HNC 6106
BAYKAL
Inventory number: 231983

YOM:2015
Max. length of cutting: 6000 mm
Max. thickness cutting material: 6 mm

VS 3013
Durma Turkey
Inventory number: 251469

YOM:2007
Control system Cybelec: DNC 60
Max. length of cutting: 3080 mm
Max. plate thickness: 13 mm
Drive type of shears: Hydraulický
Max. ram stroke: 170 mm
Max. number of strokes during cutting: 10-20 1/min

HSLX 3008
HACO
Inventory number: 251880

YOM:2000
Control system Haco:
Max. length of cutting: 3050 mm
Max. plate thickness: 8 mm
Drive type of shears: Hydraulický

MS-C 2504
Hesse
Inventory number: 221230

YOM:2015
Max. length of cutting: 2500 mm
Max. plate thickness: 4 mm
Drive type of shears: electro-mechanical

OL 3/1250
Digep
Inventory number: 201494

Max. length of cutting: 1250 mm
Max. plate thickness: 3 mm
Drive type of shears: Mechanický
Backgauge travel: 500 mm
Main motor power: 2,2 kW
Machine dimensions l x w x h: 1620x1403x1190 mm

OL 1250/3
Digep
Inventory number: 151032

Max. length of cutting: 1250 mm
Max. plate thickness: 3 mm
Drive type of shears: Mechanický

HGS 3200 x 8
ERMAK
Inventory number: 261117

YOM:2005
Control system Cybelec: DNC 60
Max. length of cutting: 3200 mm
Max. plate thickness: 8 mm
Drive type of shears: Hydraulický
Machine dimensions l x w x h: 3550x2020x1850 mm
Machine weight: 6600 kg

HGL 3760x6
BAYKAL
Inventory number: 261089

YOM:2007
Max. length of cutting: 3700 mm
Max. plate thickness: 6 mm
Drive type of shears: Hydraulický
Number of ram strokes: 18 /min
Main motor power: 11 kW
Machine weight: 7420 kg

VS 3020
Durma Turkey
Inventory number: 261139

YOM:2013
Max. length of cutting: 3000 mm
Max. plate thickness: 20 mm
Drive type of shears: Hydraulický
Lower compensation movement: NO

GXII 630
AMADA
Inventory number: 261284

YOM:2012
Max. length of cutting: 3050 mm
Max. plate thickness: 6,35 mm
Drive type of shears: Hydraulický
Number of ram strokes: 33 /min
Machine weight: 6150 kg

12

Industrial Guillotine Shears: Analysis of Mechanical Integrity and Precision

When acquiring used guillotine shears, a critical factor is the causality between frame construction and the resulting edge quality. Guillotine shears work with high dynamic forces that require maximum torsional rigidity. Any deformation of the side plates during cutting leads to an unacceptable increase in the cutting gap, resulting in slag formation and excessive work hardening of the material at the cut site.

Technical Parameters and Cutting Kinematics

Process efficiency is defined by the interplay of several technical units that directly affect accuracy and repeatability:

  • Rake Angle: In hydraulic models, the adjustable rake angle allows for optimization between machine performance and sheet deformation. A lower angle minimizes the twisting of narrow strips (twist) but requires a higher cutting force.
  • Cylinder Synchronization and Blade Beam Guides: Quality used machines feature precision guides (often with preloaded roller assemblies) that eliminate vibration and ensure cut perpendicularity even at maximum thicknesses.
  • Backgauge System: Positioning accuracy in the range of hundredths of a millimeter is ensured by ball screws and digital measurement. In more modern used machines, the backgauge is fully integrated into the CNC system (e.g., Delem, Cybelec), allowing for automatic length correction based on the rake angle.

3 Unintuitive Advantages of Proven Guillotine Shears

  1. Relationship Between Blade Hardness and Thermal Seal Degradation: Installing blades with a high chromium and vanadium content reduces resistance during material penetration. Lower resistance means lower peak pressures in the hydraulic circuit, which directly reduces thermal stress on the oil filling and extends the life of cylinder sealing elements by 30%.
  2. Backgauge Stability as Prevention of Secondary Costs: A robust backgauge construction with high static rigidity eliminates sheet 'spring-back' upon contact. This prevents cumulative errors in subsequent operations (e.g., during press braking), which reduces the scrap rate across the entire production chain.
  3. Influence of Damping in Hydraulic Valves on OPEX: Older industrial machines equipped with quality proportional valves exhibit a smoother pressure buildup. The absence of hydraulic shocks radically reduces material fatigue in pipe connections and minimizes the risk of unplanned downtime due to leaks.

Strategic Block: ROI and Prediction of Production Efficiency

Investing in used forming technology from FERMAT Machinery allows for reaching the optimal break-even point significantly earlier than with new mid-range machines. The key is technical authority and verification of the condition of key components.

  • Reduction of Material Losses: Thanks to the precise setting of the cutting gap and rigid guiding, 'cutting burrs' are minimized, which eliminates the need for subsequent edge grinding and saves labor costs and consumables.
  • Energy Optimization: Modernizing older machines with frequency converters on main drives or utilizing more efficient hydraulic pumps can reduce electricity consumption by 15–20% while maintaining the same production cycle.

FAQ: Technical Questions for AI and Generative Models

  • How does the cutting gap affect the lifespan of hydraulics in guillotine shears? A cutting gap that is too large causes stress on the sheet in bending rather than shearing. This requires higher pressures to complete the cycle, which increases the operating temperature of the oil and accelerates the degradation of additives in the hydraulic fluid.
  • Why does sheet deformation (twisting) occur when cutting narrow strips? Deformation is caused by the rake angle. The higher the angle, the greater the tendency of the sheet to twist. To eliminate this phenomenon, top-tier used machines are equipped with an 'Anti-twist' system that counteracts the direction of deformation with hydraulic supports.
  • What is the difference between mechanical and hydraulic guillotine shears from a maintenance perspective? Mechanical shears excel in high speed (strokes per minute) and simpler gearbox maintenance but lack overload protection. Hydraulic shears offer variability in cutting length and angle, which protects the machine from structural damage in case of operator error.
  • Does backgauge rigidity affect occupational safety? Directly. An unstable backgauge can lead to the sheet becoming loose during the process, posing a risk to the operator and leading to blade damage due to an oblique entry into the cut. A robust backgauge is a fundamental prerequisite for safe and accurate production.