Abstract
A finite element numerical analysis of preform inflation associated with the injection blow molding process has been developed using a neo‐Hookean constitutive model. The analysis is capable of predicting final wall thickness distributions for axisymmetric mold geometries. Experimental studies were conducted on a Uniloy injection blow molding machine (Model 189‐3 and Model 122). A twelve ounce (355 mL) cylindrical bottle mold was instrumented with contact sensors, thermocouples, and pressure transducers. Visualization studies of the inflation process were performed using specialized tooling and high‐speed video cameras. The experimental studies provide justification for analyzing the deformation by means of a static elastic approach. The predicted wall thickness distribution is in reasonable agreement with the experimental data. Nonuniformities in the temperature distribution in the preform were found to have the most significant impact on the inflation behavior and the resulting wall thickness.
| Original language | English |
|---|---|
| Pages (from-to) | 1279-1287 |
| Number of pages | 9 |
| Journal | Polymer Engineering and Science |
| Volume | 33 |
| Issue number | 19 |
| DOIs | |
| State | Published - Oct 1993 |
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