{"id":1067,"date":"2026-09-14T08:59:40","date_gmt":"2026-09-14T08:59:40","guid":{"rendered":"https:\/\/isbmmolding.com\/?p=1067"},"modified":"2026-09-14T08:59:40","modified_gmt":"2026-09-14T08:59:40","slug":"what-causes-common-defects-in-blow-molded-pet-bottles","status":"publish","type":"post","link":"https:\/\/isbmmolding.com\/nn\/what-causes-common-defects-in-blow-molded-pet-bottles\/","title":{"rendered":"What causes common defects in blow molded PET bottles?"},"content":{"rendered":"
Defects in blow-moulded PET bottles produced by one-step ISBM machines are almost always process-related rather than material-related \u2014 meaning they are caused by incorrect parameter settings, worn tooling, or inadequate resin preparation rather than by inherent limitations of PET or the ISBM process. Understanding the cause of each defect and the specific corrective action required allows operators to resolve quality issues at the machine without engineering support for routine deviations. This guide covers the most common ISBM bottle defects, their root causes, and the corrective actions for each.<\/p>\n
Stress whitening appears as a white or milky haze in the bottle\u2019s base zone, lower sidewall, or shoulder, and is caused by exceeding the local stretch ratio \u2014 the PET polymer chains have passed their orientation limit and begun to develop micro-voids rather than continue to orient. Micro-voids scatter light, producing the white appearance. Stress whitening is a structural concern as well as a visual defect: the micro-voided zone is weaker than correctly oriented PET and may fail under drop impact or pressure.<\/p>\n
Causes:<\/strong> axial stretch ratio too high (preform body too short for the bottle height); preform body temperature too low at the base zone when the stretch rod contacts it (inadequate conditioning in the base zone); stretch rod speed too fast relative to the pre-blow onset; or resin IV too low (degraded resin cannot orient to the required ratio).<\/p>\n Corrective actions:<\/strong> increase conditioning heater power at the base zone of the preform (if using a 4-station machine); reduce stretch rod speed; advance the pre-blow onset relative to stretch rod travel; check resin drying conditions and IV of the processed resin. If the defect persists after process adjustment, the preform body may need to be redesigned with a longer body to reduce the axial stretch ratio.<\/p>\n Localised haze in the sidewall of an otherwise clear ISBM bottle \u2014 not the base-zone whitening of stress whitening \u2014 is typically caused by incorrect conditioning temperature in the affected zone. PET must be in the orientation window (90\u2013115\u00a0\u00b0C at the preform surface) for the blow step to produce full biaxial orientation and maximum clarity. If a zone of the preform is too cold when blown, it will not orient fully, producing a hazy band in the corresponding zone of the finished bottle.<\/p>\n Causes:<\/strong> conditioning heater zone setpoint too low in the hazy area; conditioning residence time too short (machine cycle time too fast for the conditioning station to reach the target temperature at full production speed); uneven heater element performance (one or more heater elements failing).<\/p>\n Corrective actions:<\/strong> increase the setpoint of the conditioning heater zone corresponding to the hazy area of the finished bottle; check each heater element for correct operation; reduce machine speed slightly to allow more conditioning residence time per cycle. Monitor preform surface temperature with an infrared thermometer after conditioning to verify the actual temperature profile.<\/p>\n ISBM process optimisation and defect troubleshooting matrix \u2014 most PET bottle defects have specific, correctable root causes in process parameters or tooling condition.<\/p>\n The gate mark is a protrusion or rough area at the centre of the bottle base, corresponding to the injection gate point on the preform mould. A small gate vestige is normal and acceptable; an oversized, protruding, or rough gate vestige is a mould maintenance issue or an injection parameter issue.<\/p>\n Causes:<\/strong> worn or eroded gate tip on the preform mould hot runner; gate tip orifice diameter too large (either from wear or original design); melt temperature too low, causing incomplete gate freeze-off and stringing; or inadequate cooling time in the injection mould causing the gate to remain molten when the mould opens and the preform is ejected.<\/p>\n Corrective actions:<\/strong> inspect and replace the hot runner gate tip; confirm injection melt temperature is within the PET processing window (270\u2013295\u00a0\u00b0C); increase cooling time in the injection mould by 0.5\u20131 second increments until gate vestige is stable. If the gate tip has been replaced and the defect persists, review the gate tip orifice diameter specification with the mould supplier.<\/p>\n Uneven wall thickness \u2014 one side of the bottle significantly thicker or thinner than the opposite side (pearlescence or champagne effect on the thin side, excessive weight on the thick side) \u2014 is caused by asymmetric preform conditioning temperature, misalignment of the stretch rod to the preform\u2019s centreline, or a non-symmetric preform body wall thickness from the injection mould.<\/p>\n Causes:<\/strong> conditioning heater zone imbalance (one side of the preform heats faster than the other due to heater position or output differences); stretch rod bent or misaligned (producing asymmetric axial stretch that drives material preferentially to one side); or uneven preform body wall thickness from a mould cavity with uneven cooling or a worn core.<\/p>\n Corrective actions:<\/strong> measure preform surface temperature at multiple points around the circumference after conditioning to check for asymmetry; check stretch rod straightness and alignment; measure preform wall thickness at multiple circumferential positions to check for injection mould asymmetry. Each of these checks narrows the root cause to either the conditioning station, the stretch rod, or the injection mould.<\/p>\n Flash at the preform parting line (a thin film of PET at the mould parting surface), or neck finish dimensions outside the closure specification, indicate either a mould condition issue or an injection parameter issue.<\/p>\n Flash causes:<\/strong> insufficient injection clamping force (mould opening against injection pressure); worn parting surface on the neck splits or cavity (reducing the contact area that seals the mould); or oversized shot weight forcing melt into the parting gap. Corrective actions: increase injection clamping force if within the machine\u2019s capacity; inspect and reface or replace worn neck split parting surfaces; verify shot weight against the preform specification.<\/p>\n Dimensional non-conformance causes:<\/strong> worn or thermally distorted neck splits (changing the effective neck cavity dimensions); mould cooling imbalance causing the neck to be ejected above the specified temperature and distort on release; or incorrect injection pack pressure causing dimensional variation in the neck finish. Corrective actions: gauge the neck finish with the appropriate thread gauge and support ledge gauge; measure neck split cavity dimensions against the drawing; check injection mould cooling water temperature and flow rate in the neck zone.<\/p>\n Consistent bottle weight is a quality requirement for pharmaceutical and cosmetic containers, where weight is a proxy for wall thickness uniformity. Weight variation above 0.5% of nominal (shot-to-shot) indicates injection process instability.<\/p>\n Causes:<\/strong> inconsistent shot size from the injection unit (screw check valve wear allowing back-leakage); resin feed variation (bridging in the hopper, moisture variation from inadequate drying); or injection speed and pack pressure variation from servo drive instability or hydraulic pressure variation on older machines. Corrective actions: measure shot weight for 30 consecutive cycles to quantify the variation; check screw check valve condition; verify dryer performance (dew point, temperature, residence time); review injection unit calibration. On servo-hydraulic machines, inconsistent shot weight often traces to screw check valve wear, which is a scheduled replacement item.<\/p>\n Experiencing quality issues on your ISBM machine?<\/p>\n Ever-Power\u2019s process support team provides remote and on-site troubleshooting assistance for EP-HGY and EP-BPET machines. Send us your defect description and machine data for a diagnostic response within 24 hours.<\/p>\nDefect 2: Hazy Sidewall (in an Otherwise Clear Bottle)<\/h2>\n
<\/p>\nDefect 3: Gate Mark \/ Gate Vestige<\/h2>\n
Defect 4: Uneven Wall Thickness<\/h2>\n
Defect 5: Neck Finish Flash or Dimensional Non-Conformance<\/h2>\n
Defect 6: Bottle Weight Variation<\/h2>\n