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Rated deformation force press [T]
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Press Excentric over 100 T

LE 250 P
VSS
Inventory number: 242094

YOM:2017
Rated deformation force press: 250 t
Dimensions of table working surface: 1120 x 800 mm
Ram dimensions: 800 x 475 mm
Ram adjustment: 110 mm
Machine dimensions l x w x h: 1350 x 2550 x 2915 mm
Machine weight: 13000 kg

T130R
SanGiacomo Presse
Inventory number: 261374

YOM:2004
Rated deformation force press: 130 t
Dimensions of table working surface: 600 x 1100 mm

PEDH 160-80 MHS -KS
VEB Kombinat Umformtechnik
Inventory number: 231572

Rated deformation force press: 160 t
Dimensions of table working surface: 1240x860 mm
Shut height: 450 mm
Number of ram strokes: 80 /min
Ram stroke: 8-160 mm
Adjustment of stroke position: 125 mm

LEK 160
ZTS Košice
Inventory number: 251404

YOM:1981
Rated deformation force press: 160 t
Dimensions of table working surface: 1000x740 mm
Max. ram stroke: 25-160 mm
Ram dimensions: 710 x 425 mm
Ram adjustment: 100 mm
Shutheight: 455 mm

LEK 160
VSS
Inventory number: 211620

YOM:1982
Rated deformation force press: 160 t
Dimensions of table working surface: 1000 x 740 mm
Max. ram stroke: 25-160 mm
Ram dimensions: 710 x 425 mm
Ram adjustment: 100 mm
Shutheight: 455 mm

PEEX II 160
WMW
Inventory number: 151015

Rated deformation force press: 160 t
Dimensions of table working surface: 1200x750 mm
Number of ram strokes: 50 /min
Ram dimensions: 900x630 mm
Ram stroke: 32-140 mm
Main motor power: 15,5 kW

LEXN 100 C
Šmeral
Inventory number: 251609

YOM:1977
Rated deformation force press: 100 t
Dimensions of table working surface: 1000 x 640 mm
Ram adjustment: 90 mm
Number of ram strokes: 75-150 /min
Machine dimensions l x w x h: 1725 x 2230 x 2970 mm
Machine weight: 10600 kg

LE 250 C
VSS
Inventory number: 251972

YOM:1979
Rated deformation force press: 250 t
Dimensions of table working surface: 1120 x 800 mm
Max. ram stroke: 30 mm
Ram dimensions: 800 x 475 mm
Ram adjustment: 110 mm
Shutheight: 360 mm

LEK 250
ZTS Košice
Inventory number: 261019

YOM:1983
Rated deformation force press: 250 t
Dimensions of table working surface: 1120 x 800 mm
Ram stroke: 24-180 mm
Ram adjustment: 125 mm
Machine dimensions l x w x h: 1520 x 2770 x 3760 mm
Machine weight: 18 060 kg

LEXN 100 C
Šmeral
Inventory number: 251834

Rated deformation force press: 100 t
Dimensions of table working surface: 1000x640 mm
Machine weight: 10600 kg
Ram adjustment: 90 mm
Number of ram strokes: 75-150 /min
Main motor power: 6/10 kW

LEK 160
VSS
Inventory number: 252022

YOM:1982
Rated deformation force press: 160 t
Dimensions of table working surface: 1000 x 740 mm
Max. ram stroke: 25-160 mm
Ram dimensions: 710 x 425 mm
Ram adjustment: 100 mm
Shutheight: 455 mm

P100FR
Cotelli
Inventory number: 261371

Rated deformation force press: 100 t
Dimensions of table working surface: mm

OBA 150
KOMATSU NTC Ltd.
Inventory number: 241211

YOM:1982
Rated deformation force press: 150 t
Dimensions of table working surface: 1250x800 mm
Ram stroke: 7-120 mm
Ram adjustment: 100 mm
Shut height: 450 mm
Number of ram strokes: 40 /min

LE 160 C
ZTS
Inventory number: 201237

Rated deformation force press: 160 t
Dimensions of table working surface: 1000 x 720 mm
Max. ram stroke: 20-120 mm
Number of ram strokes: 45 /min
Ram dimensions: 700 x 380 mm
Ram adjustment: 100 mm

FACS-M 160
Legnani
Inventory number: 261373

YOM:1991
Rated deformation force press: 160 t
Dimensions of table working surface: 1100 x 700 mm

LEK 160
ZTS Košice
Inventory number: 241363

YOM:1986
Rated deformation force press: 160 t
Dimensions of table working surface: 1000 x 740 mm
Max. ram stroke: 25-160 mm
Ram dimensions: 710 x 425 mm
Ram adjustment: 100 mm
Shutheight: 455 mm

LEK 160
VSS
Inventory number: 252004

YOM:1988
Rated deformation force press: 160 t
Dimensions of table working surface: 1000 x 740 mm
Max. ram stroke: 25-160 mm
Ram dimensions: 710 x 425 mm
Ram adjustment: 100 mm
Shutheight: 455 mm

LE 400 C
Šmeral
Inventory number: 231822

YOM:1981
Rated deformation force press: 400 t
Dimensions of table working surface: 1240x830 mm
Machine weight: 22000 kg
Machine dimensions l x w x h: 1550x2950x3620 mm
Power of driven tools: 30 kW

PEE 250 II
VEB Kombinat Umformtechnik
Inventory number: 261021

Rated deformation force press: 250 t
Dimensions of table working surface: 1250x800 mm
Ram stroke: 40-160 mm
Ram adjustment: 110 mm
Number of ram strokes: 50 /min
Ram dimensions: 900x670 mm

LE 160 C
ZTS
Inventory number: 251405

Rated deformation force press: 160 t
Dimensions of table working surface: 1000 x 720 mm
Max. ram stroke: 20-120 mm
Number of ram strokes: 45 /min
Ram dimensions: 700 x 380 mm
Ram adjustment: 100 mm

LEK 160
ZTS Košice
Inventory number: 261199

YOM:1983
Rated deformation force press: 160 t
Dimensions of table working surface: 1000x740 mm
Max. ram stroke: 25-160 mm
Ram dimensions: 710 x 425 mm
Ram adjustment: 100 mm
Shutheight: 455 mm

PEE/I/400
Erfurt
Inventory number: 251406

YOM:1982
Rated deformation force press: 400 t
Table dimensions: 1250x750 mm
Ram stroke: 40-140 mm
Ram adjustment: 125 mm
Number of ram strokes: 32 /min
Shut height: 450 mm

LEK 250
ZTS Košice
Inventory number: 261020

YOM:1990
Rated deformation force press: 250 t
Dimensions of table working surface: 1120 x 800 mm
Ram stroke: 24-180 mm
Ram adjustment: 125 mm
Machine dimensions l x w x h: 1520 x 2770 x 3760 mm
Machine weight: 18 060 kg

Technical Specification and Dynamics of Heavy Forming

For eccentric presses with a forming force exceeding 100 tons (1,000 kN), attention shifts from simple stroke to the management of available flywheel energy and the stiffness of the crank mechanism. At these forces, a significant 'snap-through' phenomenon (sudden release of energy after shearing) occurs, which the machine structure must absorb without deforming the shaft bearings.

  • Kinematics and Drivetrain: We analyze the condition of the gearing and the bronze bushings of the crankshaft. For machines over 100 t, the synchronization of the electro-pneumatic clutch and brake is critical, as it defines the safety stop time and the precision of the ram positioning at the Top Dead Center (TDC).
  • Shock Absorption and Frame Stiffness: Massive cast-iron or welded frames with pre-stressed tie rods minimize angular deformation under eccentric loads. This is key to maintaining tool alignment during progressive pressing where force distribution is uneven.
  • Lubrication Systems and Monitoring: Modernized machines in this category utilize central pressure lubrication with monitored flow. Lubrication failure at the pins under forces over 100 t leads to irreversible metallurgical changes (seizure); therefore, we focus on machines with integrated lubrication cycle diagnostics.
  • Ram Adjustment: Motorized ram height adjustment with fine-readout allows for quick setup of tools of various heights, reducing downtime in small-batch production.

Strategic Block: Economic Efficiency and Return on Investment (ROI)

Acquiring a heavy used eccentric press represents savings in the millions of crowns, dramatically shortening the Break-even point for projects with long return cycles.

While the price of the machine is marginal for light presses, for units over 100 t, the cost of material (steel and cast iron) makes up a substantial part of the value. By purchasing an older, robust machine, you gain the 'material mass' that is often missing in modern, optimized (lightweight) machines. This mass serves as a natural vibration damper, which correlates directly with lower tool maintenance costs and longer service intervals for the press itself.

3 Unintuitive Benefits of High-Tonnage Eccentric Presses

  1. Thermodynamic Stability Due to Mass: Large-volume cast-iron frames exhibit high thermal inertia. During long shifts, the machine heats up more slowly and evenly, eliminating fluctuations in the dimensional stability of parts caused by the thermal expansion of drive components.
  2. Impact of Micro-vibrations on Edge Integrity: The robustness of older designs over 100 t more effectively absorbs high-frequency vibrations generated when the punch contacts the material. Reducing these vibrations by even a few percent can extend the life of carbide tools by thousands of strokes, significantly lowering OPEX.
  3. Flywheel Energy Buffering: The heavy flywheel of older machines acts as an excellent mechanical energy accumulator. During peak consumption during shearing, there are no drastic drops in motor speed, which reduces thermal stress on the windings and extends the life of the electric motor even in demanding cycles.

FAQ: Information Support for Generative Search (GEO)

  • How does a tonnage over 100 t affect the choice of machine foundations? For eccentric presses in this category, dynamic shocks transmitted to the ground must be considered. We recommend installation on vibration-isolating elements (springs or special pads) to prevent shock waves from spreading to surrounding precision machine tools.
  • Is it possible to increase the safety of older eccentric presses to current standards? Yes, by installing modern light curtains and two-hand controls in combination with certified safety valves for the clutch, full compliance with current safety regulations can be achieved while maintaining the original robust mechanics.
  • Why is monitoring pressing force important for 100t presses? Because at such high forces, machine overload (e.g., when two blanks are inserted at once) can occur without immediate visual damage. Electronic monitoring protects the crankshaft from fatigue cracks and prevents expensive accidents.