Injection molding of semicrystalline polymers. I. Material characterization
β Scribed by A. I. Isayev; T. W. Chan; K. Shimojo; M. Gmerek
- Publisher
- John Wiley and Sons
- Year
- 1995
- Tongue
- English
- Weight
- 1007 KB
- Volume
- 55
- Category
- Article
- ISSN
- 0021-8995
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β¦ Synopsis
Various material data for a n isotactic polypropylene were acquired for the simulation of the injection molding of this material. Viscosity as a function of shear rate and temperature was measured using a capillary rheometer at high shear rates and a cone-and-plate rheometer a t low shear rates. Heat-flow properties, characterizing kinetics and induction time of quiescent crystallization, were obtained from DSC measurements. Material data characterizing shear-induced crystallization were obtained from extrusion experiments through a slit die with subsequent quenching of the material in the die after various rest times. The thickness of the shear-induced crystallization layer was measured along with the birefringence in this layer. A model of shear-induced crystallization developed by Janeschitz-Kriegl and co-workers was used to fit the kinetic data. Thus, kinetic parameters such as the limiting shear rate below which no shear-induced crystallization can occur and the characteristic time for the relaxation of birefringence were obtained.
π SIMILAR VOLUMES
## Abstract This paper describes new techniques for evaluating orientation in polymer moldings. Injection moldings of isotactic polypropylene, a semicrystalline polymer, have been used to demonstrate the analytical procedures.
## Abstract **Summary:** An inβline method for monitoring the solidification process during injection molding of semicrystalline polymers (demonstrated previously in __J. Appl. Polym. Sci.__ **2003**, __89__, 3713) is based on a simple device, where an additional ejector pin is pushed on the inject