## Abstract The aim of this work was to study the role of effective parameters in the morphology evolution of polymer blends in a twinโscrew extruder with an emphasis on the effects of the melt viscoelastic properties of the blend components, screw speed, and flow field changes along the extruder.
Effect of miscible polymer diluents on the development of lamellar morphology in poly(oxymethylene) blends
โ Scribed by Fengji Yeh; Benjamin S. Hsiao; Benjamin Chu; Bryan B. Sauer; Edmund A. Flexman
- Publisher
- John Wiley and Sons
- Year
- 1999
- Tongue
- English
- Weight
- 215 KB
- Volume
- 37
- Category
- Article
- ISSN
- 0887-6266
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โฆ Synopsis
The development of lamellar morphology in poly(oxymethylene) (POM) and its miscible blends was studied by synchrotron time-resolved small-angle X-ray scattering (SAXS), during primary and secondary crystallization at temperatures near 150ยฐC. The blends contained two different diluents: poly(vinyl 4-hydroxy styrene) [common name poly(vinyl phenol), (PVP)], which had a high glass temperature (T g ฯญ 150ยฐC), and styrene-co-hydroxy styrene oligomer (PhSO), which had a low glass temperature (T g ฯญ ฯช37ยฐC). The SAXS data were analyzed by correlation function analysis to extract several lamellar parameters: long period (L), lamellar crystalline thickness (lc), amorphous layer thickness (la), and invariant (Q). The variation in Q defined the region where spherulites quickly grew and filled the entire space, and was referred to as the primary crystallization dominant regime. A rapid drop in L and lc was observed at early times, and this can be explained by defective lamellar stacks filling in space between primary stacks, as secondary crystals form during the nominal primary crystallization dominant regime. Lamellar thickening with time in the long-time secondary crystallization region was observed in neat POM and the blend with 10 % low T g diluent, while this process was inhibited with the high T g diluent due to the higher T g of the interlamellar species. A decrease in la at long times confirmed the lamellar thickening. We refer to the lamellar thickening process as a type of secondary crystallization. Interlamellar inclusion or trapping was detected to different degrees with the high T g diluent, while exclusion was found for the low T g diluent.
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This article reports on a new phenomenon: The presence of a compatibilizer accelerates the melting/plastification of an immiscible polymer blend during melt blending. The increase in the rate of melting as a result of the addition of a compatibilizer is believed to be one of the important factors re