An articulating linkage and fulcrum contact member keep TPMS valve removal perpendicular to the rim, cutting force and damage risk.
A movable fitting tool shifts away from the bead breaker, separating work phases to reduce rim and tire damage during tire changing.
Synchronous hydraulic actuators and rephasing keep tire-changing tools aligned, distributing bead force evenly to prevent wheel and tire damage.
A CPU-controlled upper and lower tire handling setup automates run-flat tire mounting and demounting while reducing labor and rim damage.
A movable wheel holder keeps the sidewall pressing tool aligned with the wheel axis, simplifying tyre mounting while improving precision and ease of use.
Rotating fingers advance tire beads into the wheel seats without touching the rim, preventing damage and sealing leaks.
A hand-operated bead breaker arm enables controlled tyre detachment across wheel sizes, reducing sudden release, damage risk, and cycle time.
A protective member blocks the pressing surface to stop tire bead sticking, improving mounting speed while reducing damage and misoperation risk.
Lockable guide rails and detachable supports let one tire mounting rig handle scooters, motorcycles, and cars without scratching rims.
Detachable supports, lockable running rails, and a centring bar let one tyre changer handle multiple wheel types while protecting rims from scratches.
A vacuum-assisted air chuck and hose speed tire deflation below atmospheric pressure, reducing changer wear during demounting.
Rotating fingers move the tire beads below the bead seats without touching the wheel, reducing rim damage and improving sealing.
Interchangeable robotic tooling automates tire-wheel pickup, bead breaking, lubrication, and separation to cut manual labor and speed disassembly.
A swiveling auxiliary hook follows the tire bead during rim rotation, reducing friction, stretching, and damage in tire removal.
A longitudinal lifting arm and floor-parallel bead breaker cut tyre changer bulk while making wheel loading and handling more ergonomic.
A foldable handle, rim bracer, and bead gripper combine tire removal and installation functions while cutting carry weight and storage space.
An articulating linkage and fulcrum keep TPMS valve stems perpendicular during install and removal, cutting force and rim damage.
Speed-dependent torque limiting protects tyres at high rotation speeds while preserving the high torque needed for rigid wheel service.
A toe-and-shoulder tyre tool guides tight tubeless beads over the rim with less force, reducing damage and tool fly-off.
A rim-channel shoe with toe and shoulder guides tight tyre beads over hooked or hookless rims with less force and less rim damage.
A vertically sliding tool bearing keeps the disassembly tool clear of the wheel, cutting footprint and repeated position adjustment.
By rotating the wheel rim against a fixed mount/demount tool, this case removes bulky support structures for compact mobile tyre changing.
Independent hook and pressing wheel movement helps disassemble large tubed and tubeless tires without inner tube damage.
Asymmetric sidewall pressing lets the opposite sidewall displace, improving bead-seat fit uniformity and reducing force variation.
A freely rotating bead breaker disc uses contact sensing to stop accurately, reducing tyre damage and improving demounting efficiency.
Automated toroid deformation and gripping enable precise wheel insertion and removal while reducing operator risk, damage, and cycle time.
Automatic reference-point positioning keeps TPMS sensors and valves clear of tire tools while monitoring stress and recording the process.
By rotating the wheel rim on a central axle, this tire changer removes bulky support arms and enables compact, portable tire mounting and removal.
A lower bead-breaking assembly supports the upper bead to cut rim friction, ease large-wheel tyre removal, and reduce tyre damage.
Mounted rollers on the lift platform raise and rotate the wheel assembly together, cutting manual handling during tire changes.
A segmented rim-positioning, wheel-support, and tire-pressing setup helps seat tire beads evenly into the rim with less manual effort.
Sensor feedback pivots the tyre-removal tool on contact, improving bead breaking precision while reducing rim, tyre, and tool damage.
Synchronized extensible arms handle different tire diameters and widths with faster mounting and dismounting while reducing tire and tool damage.
An angled frame, removable shaft, and ratchet lever make motorcycle tire changes more stable, upright, and portable.
A guided hook follows a rim-clearing trajectory to remove or mount tire beads with less mechanism complexity and lower rim damage risk.
A pivoting platform and stop help lift, rotate, and align heavy tire assemblies for safer hub removal, installation, and transport.
An integrated bead breaker and pry-bar platform speeds small tire changes and reduces operator strain without extra tools or assistance.
A regulated bypass pressure cushion lets a tire-bead loosener work on inflated tires while reducing recoil, damage risk, and operator injury.
A spring-loaded insert and pusher lock the sliding shaft at indexed heights, enabling faster one-person tire changer setup without oscillation.
A compliant polymeric guide separates the gripping tool from the tyre and rim, easing demounting while reducing damage and maintenance.
Sensor feedback guides the tyre tool trajectory for precise bead breaking and demounting while reducing damage to tyres, rims, and tools.
A single wheel workstation uses levered bead breaking and adjustable tire supports to remove and remount tires with less damage and effort.
Independent tool holders let bead breaking, mounting, and demounting work with precise positioning in a more compact tyre service machine.
A curved wing and flange spread force across the rim, easing tight bicycle tire installation while reducing concentrated rim damage.
Extendable, rotatable toroid deformation and tire gripping cut manual handling, speed wheel service, and reduce tire and toroid damage.
Sensor feedback and actuator control guide the tyre tool path to improve bead separation precision and reduce rim, tyre, and tool damage.
A translating main arm keeps the tyre pressing hinge aligned with the wheel axis, reducing adjustments and operator intervention.
Sensors and actuator control pivot the tyre tool on contact, improving bead separation precision while reducing rim, tyre, and tool damage.
Speed-dependent torque limiting lets a tyre changer handle rigid tyres at low speed while preventing excessive chuck torque at higher speeds.
A rephasing hydraulic circuit keeps multiple tire-changing tools synchronized, balancing force distribution with precise rim-safe positioning.
A movable support surface keeps the tire assembly centered and sealed while transferring it into the inflation bell for more reliable filling.
A tyre mounting device uses automatic position adjustment based on an initial reference to simplify control.