Motorized press
electromechanicalstampingdeep drawing

motorized press
motorized press
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Characteristics

Operation
motorized, electromechanical
Function
stamping, deep drawing, drawing, punching, cutting, test, tryout, embossing
Structure
downstroke, with movable piston, frame, compact, column type, square ram, with fixed table, friction screw
Control
automatic, PLC-controlled, CNC
Other characteristics
servo-driven, vertical, custom, shop, with pressure regulator, with automatic feeder, with ridge-locking, bench-top, with stroke force monitoring, transfer, continuous, direct-drive, universal, direct-acting, wide
Applications
for aluminum, for production, for the automotive industry, process, for the aeronautical industry, for conveyor belt splicing, for industrial applications, for sheet metal, for heating systems, for beverage industry, for bulk materials, for automotive parts, laboratory, for the furniture industry, for heat exchanger plate production, for steel, high-volume, for battery pole, for tools, for electrical connectors, for the aerospace industry, for connectors
Force

Min.: 300 kN

1,250 kN

Max.: 4,000 kN

Rate (strokes/min)

Min.: 20 p/min

120 p/min

Max.: 150 p/min

Stroke

Min.: 150 mm
(6 in)

250 mm
(10 in)

Max.: 800 mm
(31 in)

Table width

Min.: 400 mm
(16 in)

600 mm
(24 in)

Max.: 1,800 mm
(71 in)

Table length

Min.: 800 mm
(31 in)

2,000 mm
(79 in)

Max.: 4,000 mm
(157 in)

Description

MultipleStagePress are equipped with all of the technical advantages of the ServoSpindlePresses, but are particularly suitable for complex techniques. Thus, for instance, when they are used as transfer or multiple-die presses, the supplementary axes are moved independently by means of servo drives. This way, their flexibility can be made use of for future applications. In combination with the automated quick-change system, product changes can be executed quickly, and idle times can be reduced as well. Advantage in technology: Maximal tonnage available along the entire stroke range Press forces can be distributed within the die Arbitrary stroke locations and stroke heights, large variety of dies Increased number of strokes through individual motion segments More efficient product development A wider range of parts can be produced Top cut quality by high-precision ram parallelism control Highly complex parts can be produced with supplementary operations Energy management system Temporary store and reduction of connected power. Tonnage distribution along the stroke Maximal tonnage along the entire stroke, better distribution of individual press force components within the die. Less tonnage required than for conventional presses. Ram position control Compensation of frame elastic deformation and torsion in real-time mode, at different load, velocity and temperature. Drive dynamics Individual motion functions are parameterizable to achieve maximal press efficiency. Smallest die clearances through high-precision rams Machine precision and active ram position control guarantee minimal die clearance and top quality cutting with low die wear.

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.