Pre-cut flaps let a sensor sheet conform to raised control panel features without thermoforming, avoiding misalignment, recalibration, and extra energy use.
A hydraulic cylinder handles short-stroke die pressurizing, enabling high-cycle press molding with precise force control and less servomotor demand.
A linked second hydraulic chamber shares axial thrust from high-pressure torsion forming, protecting the rotational bearing and enabling higher loads.
By accelerating the ram and drive shaft before forming, a servo press reaches nominal force with a smaller drive and lower power demand.
A linked hydraulic chamber shares thrust from the rotating table, protecting the bearing and enabling higher compressive torsion pressure.
Synchronized crank drives and a lever-crosspiece mechanism raise press force while reducing friction and preserving adjustable slider stroke.
Cam-based tensioning system releases tie bar force to reduce tooling change time.
Drag crank mechanism reduces motor diameter while maintaining output torque for stamping press drive units.
Hydraulic unlocking of the toothed eccentric ring reduces adjustment time and maintains dimensional accuracy during metal forging operations.
Aligning the toggle lever fixed bearing with the ram stroke axis minimizes horizontal force components, reducing ram wear and frame massiveness.
Sintered steel V-drivers with embedded graphite replace bronze to cut material costs and maintenance downtime.
A force measurement system detects stamped part defects by comparing real-time die forces against reference profiles.