{"id":1048,"date":"2026-09-14T08:48:09","date_gmt":"2026-09-14T08:48:09","guid":{"rendered":"https:\/\/isbmmolding.com\/?p=1048"},"modified":"2026-09-14T08:48:09","modified_gmt":"2026-09-14T08:48:09","slug":"what-is-a-pet-preform-and-how-is-it-made","status":"publish","type":"post","link":"https:\/\/isbmmolding.com\/id\/what-is-a-pet-preform-and-how-is-it-made\/","title":{"rendered":"What is a PET preform and how is it made?"},"content":{"rendered":"
A PET preform is the thick-walled injection-moulded intermediate from which a finished PET bottle is produced by stretch blow moulding. It resembles a thick-walled test tube: closed at one end, with the finished bottle\u2019s neck thread already formed at the open end. The preform contains all the material that will form the final bottle, and its dimensions, weight, and wall thickness distribution are the primary determinants of the finished bottle\u2019s performance. Understanding what a preform is and how it is made is fundamental to understanding ISBM bottle production.<\/p>\n
A PET preform has three distinct zones: the neck finish (the threaded area above the support ledge), the body (the thick-walled tube below the neck), and the base (the closed dome at the bottom). Each zone plays a different role in the finished bottle:<\/p>\n
In a one-step ISBM machine, the preform is made at the injection station, which is the first station on the machine\u2019s rotary table. Dried PET resin is fed from the hopper into the barrel, where the reciprocating screw melts it at 270\u2013295\u00a0\u00b0C and accumulates a measured shot. The screw then advances axially, injecting the melt through the hot runner nozzle into the closed preform mould cavity at 800\u20131,500 bar. The melt fills the cavity from gate (at the base of the preform) to neck, forming the complete preform geometry including the thread.<\/p>\n
The preform then cools in the mould for 2\u20138 seconds, reducing its surface temperature to approximately 60\u201375\u00a0\u00b0C \u2014 cool enough to eject without distortion but still retaining substantial internal heat. The mould opens and the preform is transferred, still on its mandrel (neck insert), to the conditioning station where infrared heaters adjust its temperature profile. This transfer happens while the next shot is already being injected at the injection station \u2014 all stations operate simultaneously in every machine cycle.<\/p>\n
The key feature of one-step ISBM preform manufacture is that the preform is never cooled to ambient temperature. It retains its injection heat through conditioning and into the blow step, which is the source of one-step\u2019s thermal efficiency advantage over two-step processes.<\/p>\n
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4-station ISBM process on the EP-HGY150-V4-EV \u2014 the preform is injection-moulded at station 1, conditioned at station 2, stretch-blown at station 3, and ejected as a finished bottle at station 4.<\/p>\n
In two-step PET bottle production, preforms are made in a dedicated preform injection moulding machine \u2014 a high-cavity hot runner injection machine from suppliers such as Husky, Sipa, or Netstal. These machines produce preforms in large quantities (typically 8\u201396 cavities per machine) that are fully cooled, inspected, and packaged for storage and subsequent transport to the blow moulding step. Preforms made in the two-step process are identical in geometry to those made in one-step machines, but they have been cooled to ambient temperature and must be fully reheated in the infrared oven of the reheat blow moulding machine before they can be stretched and blown.<\/p>\n
The preform design determines many critical properties of the finished bottle before any blow parameters are set. The key design parameters are:<\/p>\n