Pressurized air drives an adjustable impact tip to create repeatable dent flaws with controlled depth and accurate placement on complex surfaces.
Variable hydraulic flow helps a forging hammer reach ram setpoint speed while keeping chamber pressure above the cavitation threshold.
A damped impact head and tool setup controls strike energy in high-velocity forming, preventing rebound, double hits, and component wear.
A laterally movable impact head absorbs thermal expansion during repeated strikes, protecting tool accuracy and extending forming equipment life.
Dampening the impact head return stroke prevents rebound, improves forming quality, and reduces wear in high velocity material forming.
Near-surface radial forging before high-bite hydraulic pressing prevents surface cracks while improving ingot core microstructure.
A tapered impact head and damping elements spread strike energy evenly, limiting rebound, tool deformation, and repeat hits in HVF.
A damped tool holder controls rebound in high velocity metal forming, enabling single-strike energy transfer, tighter tolerances, and lower tool wear.
Controlled lateral movement lets the impact head expand under heat without deforming the tool, preserving alignment and forming accuracy.
Variable radial hydraulic rams and removable die segments enable near-net forging while preserving crystallographic texture and strength.
A flexurally elastic link isolates ram vibration and tilt from the linear motor, protecting the air gap and improving forging stability.
Alternating pressure energy storage lets a free forging hydraulic press deliver high-pressure oil while the pump runs at lower pressure, cutting idle energy waste.
A rotary table shifts workpiece receptacles inside or outside the press head to improve forming flexibility, handling, and energy use.
Large bite ratios improve core forming but can crack the surface; staged bite ratios and hydraulic actuation balance deformation and recrystallization.
Rotary table positions workpiece receptacles laterally outside the machining head cross-section for direct tool access.