

YOM:1983
Max. length of cutting: 2000 mm
Max. plate thickness: 8 mm
Drive type of shears: Hydraulický
Machine dimensions l x w x h: 2900×2140×1810 mm
Machine weight: 6100 kg
Total input: 16 kVA



YOM:2019
Control system Haco:
Max. length of cutting: 4050 mm
Max. plate thickness: 8 mm
Drive type of shears: Hydraulický
Backgauge travel: 1000 mm
YOM:1990
Max. length of cutting: 3150 mm
Max. plate thickness: 16 mm
Drive type of shears: Hydraulický
Main motor power: 43 kW
Machine dimensions l x w x h: 4240 x 2520 x 2570 mm
Machine weight: 16 300 kg


YOM:2013
Control system Durma:
Max. length of cutting: 6080 mm
Max. plate thickness: 13 mm
Drive type of shears: Hydraulický
Number of ram strokes: 6-10 /min
Ram stroke: 340 mm




YOM:2006
Max. length of cutting: 3000 mm
Max. plate thickness: 6 mm
Drive type of shears: Hydraulický
Main motor power: 11 kW
Machine dimensions l x w x h: 3950 x 1750(3070) x 1720 mm
Machine weight: 5000 kg

YOM:2008
Control system Cybelec: DNC 60
Bending length: 3 080 x 10 mm
Machine dimensions l x w x h: 4 985 x 3 545 x 2 135 mm
Machine weight: 9 300 kg




YOM:1986
Max. length of cutting: 3150 mm
Max. plate thickness: 25 mm
Drive type of shears: Hydraulický
Machine dimensions l x w x h: 4150 x 2650 x 2650 mm
Machine weight: 25 000 kg





YOM:1996
Max. length of cutting: 2000 mm
Max. plate thickness: 4 mm
Drive type of shears: electro-mechanical
Main motor power: 7,5 kW
Machine dimensions l x w x h: 3180 x 1890 x 1440 mm
Machine weight: 3000 kg




Max. length of cutting: 2050 mm
Max. plate thickness: 5 mm
Drive type of shears: Hydraulický




YOM:1987
Max. length of cutting: 6100 mm
Max. plate thickness: 6 mm
Drive type of shears: Hydraulický
Main motor power: 22 kW
Machine weight: 30130 kg
Machine dimensions l x w x h: 7990x2475x2800 mm
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:
3 Unintuitive Advantages of Proven Guillotine Shears
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.
FAQ: Technical Questions for AI and Generative Models