Pre-formed channel locators and axial access let glass blank molds be retuned on-site, cutting cooling modifications from weeks to hours.
Rotating and reorienting heated glass with pressurized blowing enables reproducible large hollow bodies with slim necks and low reject rates.
Pre-formed locators and axial access openings let glass blank molds be retuned on-site for heat transfer and coolant flow in hours, not weeks.
A secondary controller adjusts mold cooling air pressure from cooling time ranges to cut energy use without reprogramming the primary unit.
Segmented pneumatic control adjusts airflow per nozzle to counter centrifugal forces, ensuring reliable grip and accurate release of hollow glass articles.
Electric motor driven articulated arms replace mechanical transmissions to reduce inertial loads and vibrations during high-speed article transfer.
A bi-metallic neck ring embeds wear-resistant inserts in a heat-conductive body to mold glass container neck finishes.
Mechanical stop referencing replaces fragile sensors in hot glass packaging extractors, ensuring reliable positioning without sensor failure.
Liquid-tight coolant channels in a rotary table stabilize temperature during glass container hot-forming.
A finish cooling unit supplies a separate cooling medium to the glass container neck via plunger cylinder cover channels.
An articulated, slidable cooling channel compensates for mold movement while keeping valves inside the station housing to prevent abrasive wear.
A reciprocating piston drive moves rotatable finger holders through a curved slot mechanism to grip fragile glass containers.
A rotary drive system generates an exponential transfer curve for hollow glass articles using superposed rotational movements.
A gap-sealed rotor-stator channel system guides laminar gas flow into glass containers to ensure uniform bottom support.