Merges multiple processing steps into a single workstation to reduce capital investment and manual handling.
Force detection elements and position systems enable real-time monitoring of tool placement, preventing rim damage from misalignment.
A single-cell workstation integrates a robotic arm and adjustable tire engaging devices to position and mount tire-wheel assemblies.
Rigid frame connection stabilizes the bead seating device against high air flow forces, preventing tire bead cracks and operator injury.
A tyre-changing machine uses two adjustable support arms equipped with non-rolling contact surfaces to push opposite tyre flanks simultaneously.
A wedge-shaped slide pad aligns tyre bead parts on rims, eliminating trial-and-error gap adjustments and reducing side force variations.
A processing system detects abnormal operating conditions during tire mounting and demounting procedures to guide operator actions.
Radially adjustable wedge segments in the filling bell seal diverse tire sidewalls, reducing stress and ensuring accurate inflation pressure.
A tire mounting apparatus uses a vertically adjustable pressure roller to guide tire beads into rims.
Threaded adjustment elements enable precise jaw positioning to reduce manual operation time.
Plunger oil injector selectively lubricates pneumatic mechanisms, preventing unnecessary tire inflation air contamination.
A tyre changing machine uses a single actuator to drive an operating head along a curvilinear path for precise bead engagement.
Radial tool movement replaces complex wheel rotation mechanisms, eliminating expensive hardware while maintaining precise positioning.
Automated bead pressing devices with feedback sensors resolve positioning complexity trade-offs while reducing operator effort and damage risk.
A tyre-changing operating head uses a hook-shaped removal tool to extract beads from rims.