Title of article
Effect of complex flow kinematics on the molecular orientation distribution in injection molding of liquid crystalline copolyesters
Author/Authors
Rendon، نويسنده , , Stanley and Burghardt، نويسنده , , Wesley R. and New، نويسنده , , Anthony and Bubeck، نويسنده , , Robert A. and Thomas، نويسنده , , Lowell S.، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2004
Pages
12
From page
5341
To page
5352
Abstract
Wide-angle X-ray scattering (WAXS) is used to probe the molecular orientation in steady isothermal complex channel flows (in situ) and in injection molded plaques (ex situ) of a new, low-cost aromatic copolyester based on the mesogen 4,4′-dihydroxy-α-methylstilbene (DHαMS). Complex orientation states arise from the competition of inhomogeneous mixed shear and extension in isothermal flows. Slit-contraction flows lead to a significant but temporary increase in the average degree of molecular orientation, suggesting that this polymer is of the ‘shear-tumbling’ type. Conversely, bimodal orientation states are observed in slit-expansion flows, where transverse extension leads to a strong reduction in the average degree of molecular orientation along the flow direction. Similar bimodal orientation states are observed in injection molded plaques, suggesting that these kinematic concepts translate rather directly to the more complex transient non-isothermal case of injection molding. Variations in orientation state induced by changes in plaque thickness may be rationalized by systematic changes in the relative importance of shear and extension. These results suggest a complementary perspective on ‘skin-core’ morphologies in liquid crystalline polymer moldings, and provide a clear conceptual link between more fundamental studies in isothermal flows and structure development during processing.
Keywords
liquid crystalline polymer , Channel flows , Injection molding
Journal title
Polymer
Serial Year
2004
Journal title
Polymer
Record number
1722070
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