293-PSV
BERG Automatic Hydro-mechanical Self-locking Drawbar Style Clamping Systems
Self-traveling (Automatic) quick die changing system with self-locking drawbar style clamping
The drawbar style hydromechanical (hydrolock) self-locking die clamping system is designed for clamping dies of various widths on press slides. The clamping actuator moves automatically in the T-slot of the press slide between the parking position and the respective die. Clamping and unclamping are performed by a hydromechanical self-locking clamping gear. Hydraulic pressure is at a maximum 90 bar.
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Related
Automatic Electromechanical Drawbar Style Clamping Systems
The electro-mechanical self-locking drawbar style clamping system is designed for quick clamping dies of different widths with clamping slot on press slides.
The clamping systems are controlled de-centrally and individually in each clamping system. Each local clamp control system communicates with the pressing machine control system. The clamping actuator automatically moves into the T-slot of the press slide between the parking position and the respective die. The electro-mechanical clamping system clamps the die and switches off automatically on reaching the clamping force.
Manual Hydro-mechanical Self-locking Drawbar Style Clamping Systems
The hydromechanical self-locking (hydrolock) drawbar style die clamping system is designed for clamping dies of various widths on press slides. The clamping actuator can be moved manually in the T-slot of the press slide between the parking position and the respective die. Hydraulic pressure is at a maximum 90 bar.
Manual Mechanical Self-locking Drawbar Style Clamping Systems
The manually actuated drawbar style die clamping system is designed for clamping dies of various widths on press slides and tables. The self-locking eccentric cam gear guarantees a simple handling with a maximum of safety.
Automatic Hydro-mechanical Self-locking C-clamping Systems
The C-clamping hydromechanical self-locking (hydrolock) die clamping system is designed for clamping dies of various widths on press slides. The clamping actuator moves automatically in the T-slot of the press slide between the parking position and the respective die. Clamping and unclamping are performed by a hydromechanical self-locking clamping gear. Hydraulic pressure is at a maximum of 90 bar.
Automatic Hydraulic Drawbar Style Clamping Systems
The hydraulic die clamping system with drawbar style clamping is designed for clamping dies of different widths on press slides. The clamping actuator moves automatically into the T-slot of the press slide between the parking position and the respective die. The clamping element can clamp different clamping rim heights due to the long clamping stroke of the double acting cylinder. Hydraulic pressure is at a maximum 400 bar.
Automatic Mechanical Disk Spring Washer Style Clamping Systems
The mechanical disk-spring washer style die clamping system is designed for clamping dies of various widths on press slides. The clamping actuator moves automatically in the T-slot of the press slide between the park position and the respective die. Clamping is performed by belleville spring washers and hydraulic unclamping.
Transfer Rail Couplings
The mechanical self-locking Berg gripper rail coupling GSM is designed for manual coupling of gripper rails on transfer presses. A vertical lift-out stroke is required for changing the tool.
Stationary Hydraulic Self-locking Swing-out Style Clamping Systems
Hydraulic, self-locking stationary swing-out style clamp for die clamping on slides and blackholders. When unclamping the draw bar swings out up to 15 degrees max.
Hydro-mechanical Self-locking Transfer Rail Couplings
The hydromechanical self-locking gripper rail coupling is designed for automatic coupling of gripper rails on transfer presses. A vertical lift-out stroke is required for changing the tool. The coupling consists of a hard anodized aluminum housing, an axially movable tensioning rod and a hydromechanical self-locking clamping gearing. This configuration allows for high clamping forces and features a very high dynamic rigidity with minimum mass.