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Visco-elastic properties related to the phase morphology of 60/40 PC/SAN blend

✍ Scribed by D. Quintens; G. Groeninckx; M. Guest; L. Aerts


Publisher
Society for Plastic Engineers
Year
1991
Tongue
English
Weight
842 KB
Volume
31
Category
Article
ISSN
0032-3888

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✦ Synopsis


Abstract

Stress relaxation and dynamic mechanical measurements have been performed on a 60/40 blend of polycarbonate of bisphenol A (PC) and poly (styrene‐co‐acrylonitrile) (SAN). This paper clearly demonstrates that the phase morphology of an immiscible co‐continuous polymer blend is an important parameter in determining visco‐elastic behavior. The dynamic mechanical properties are discussed in terms of the visco‐elastic form of a Kerner equation as a function of the reciprocal Chalkey parameter, which has been used to quantify the co‐continuous phase morphology. The effective volume fraction of the SAN phase has been found to decrease as the phase structure coarsens during annealing above T~g~ of both SAN and PC. This is probably the result of phase break‐up and subsequent inclusion of SAN domains in the PC matrix during the coarsening process, which modifies the structure produced during melt compounding and injection molding.


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✍ D. Quintens; G. Groeninckx; M. Guest; L. Aerts 📂 Article 📅 1991 🏛 Society for Plastic Engineers 🌐 English ⚖ 759 KB

## Abstract The tensile stress‐strain properties of blends having a 60/40 weight ratio of polycarbonate of bisphenol‐A (PC) and styrene‐acrylonitrile copolymers (SAN) have been investigated for a range of SAN copolymers with different AN levels. It is clearly demonstrated that the phase morphology

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## Abstract A 60/40 polymer blend of polycarbonate of bisphenol A (PC) with a styrene‐co‐acrylonitrile (SAN) copolymer was prepared by melt compounding. Injection molded sheets of this, blend were annealed at 200°C as a function of time. The phase morphology of these sheets, studied using transmiss