EP0502391A2

System, method and apparatus for hot fill pet container.

Abstract

An improved PET process, system and container is disclosed which uses an improved single stage process to produce a thermally stable container. The single stage process arrests the cooling of the preform at elevated temperatures followed by equilibriation to a set temperature in a conditioning station at controlled time rates to achieve high crystallinity in the container side wall. Special provisions are made for establishing a transition zone temperature gradient adjacent the container mouth to achieve high crystallization in the transition zone in accordance with the process. The container is especially configured in a number of instances to make it suitable for hot fill applications. One such instance includes rigidizing the body side wall against radial and longitudinal vacuum distortion so that paper labels can be applied to the container.

EP0502391A2, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Projected expiry passed 24 February 2012, 14.6 years ago.

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29 claims: 3 independent, 26 dependent

  1. 1
    A one stage process for forming in the absence of a heat set step, a PET container for use in hot fill applications , characterized in that it comprises the sequential steps of:a) drying said PET material to a dew point substantially less than that of ambient temperature and maintaining said dried material at said dew point in an enclosed space;b) plasticizing said dried material;c) injecting or extruding at an initial temperature of about 520° F to 550° F, said PET material in a plasticized form into a preform mold and rapidly cooling said plasticized material in said preform mold to form a preform at a sufficiently high rate to prevent spherulite growth but sufficiently long in duration to permit adding additional plasticized material to compensate for volumetric PET contraction until the surfaces of said preform reach a temperature of about 230° to 260° F;d) transferring said preform from said preform mold to a conditioning station when the surface temperature of said preform is at about 230° F to 260° F;e) equilibriating the cross-sectional wall temperature of said preform in said conditioning station at a uniform temperature between about 210° F to 230° F over a time period sufficient to develop a crystallite formation of at least about 30%;and f) stretching and blow molding said preform in a blow mold into a desired container shape, said stretching and blowing commencing when said preform is at said temperature of about 210° F to 230° F and completed when the temperature of said container is about 50° F to 150° F whereby a thermally stable container is produced.
  2. 18
    A method for forming a polyester based, thermally stable container suitable for hot fill applications without employing a heat set step, characterized in that it comprises the steps of:a) drying the polyester base material to a dew point substantially less than that of ambient atmosphere;b) plasticizing the dried polyester material within an enclosure by heating to a temperature of about 520° F to 550° F;c) injecting or extruding said plasticized material at said temperature into a chilled preform mold to form a preform having a mouth portion of dimensional size equal to the mouth of the formed container and a body portion in the general shape of a test tube, said body portion having a transition segment extending longitudinally a fixed distance from the intersection of said body and mouth portion;d) cooling said preform in said preform mold at a rate such that the inside and outside surfaces of said neck portion are below the T g temperature of said material while said body portion excluding said transition segment is between 230 to 260° F at the outside surfaces of said body portion;e) transferring said preform when at the temperatures of step (d) to a conditioning station;f) equilibriating the temperature through the cross-section of the preform's body portion walls while inputting heat to the interior and exterior surfaces of said transition zone such that a uniform cross-sectional wall temperature in said body portion excluding said transition zone is between the ranges of 210 to 230° F while a longitudinally extending temperature gradient in the transition zone is maintained within said 210 to 230° F range;g) controlling the time of steps (e) and (f) such that for the stated temperature ranges of said body portion at the completion of step (d), a crystallinity of at least about 30% is produced in said body portion;and h) transferring said preform into a cold blow mold and stretching and distending said body portion of said preform into the shape of said container while cooling said preform to a temperature of about 50° F to 150° F whereby said body portion including said transition zone is thermally stabilized.
  3. 22
    A thermally stable, vacuum compensable PET container suitable for hot fill applications, characterized in that it comprises a generally amorphous threaded mouth portion and a highly crystallite cylindrical body portion extending from said mouth portion, said body portion having a) a generally frusto-conical neck portion extending from said mouth portion;b) a generally cylindrical side wall portion extending from said neck portion;c) a generally circular end wall portion extending from the opposite end of said generally cylindrical side wall;d) vacuum distortion means in said neck portion and said end wall to permit container shrinkage when a vacuum is drawn into said container;and e)rigidizing means in said cylindrical side wall portion preventing radial and longitudinal movement of said side wall when said vacuum is drawn, said rigidizing means including a series of inwardly projecting ring segments longitudinally spaced from one another and contiguously interconnected by a series of cylindrically shaped flat land segments, whereby said land surfaces permit glued application of conventional thickness paper labels to said container while rigidizing said ring segments.