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Mechanical, Thermal, and Rheological Properties of Phlogopite-Incorporated Polycarbonate and PolystyreneMechanical, Thermal, and Rheological Properties of Phlogopite- Incorporated Polycarbonate and Polystyrene

Other Titles
Mechanical, Thermal, and Rheological Properties of Phlogopite- Incorporated Polycarbonate and Polystyrene
Authors
Yoon, Sang-SeokLee, Sung-HunHwang, Gyu-ChulChoi, Min-KyuKang, Beom-GooKim, HyungsuJang, Keon-Soo
Issue Date
Jun-2022
Publisher
POLYMER SOC KOREA
Keywords
phlogopite; polycarbonate; polystyrene; mechanical properties; thermal properties
Citation
MACROMOLECULAR RESEARCH, v.30, no.6, pp.365 - 374
Journal Title
MACROMOLECULAR RESEARCH
Volume
30
Number
6
Start Page
365
End Page
374
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/42469
DOI
10.1007/s13233-022-0045-5
ISSN
1598-5032
Abstract
Polymer/phlogopite composites have been rarely investigated despite their potential applications. We examined the effects of phlogopite on the mechanical, thermal, and rheological properties of two amorphous polymers, namely, ductile polycarbonate (PC) and brittle polystyrene (PS). The mechanical and thermal properties of PS/phlogopite composites improved with increasing phlogopite content The modulus of PC/phlogopite composites showed a greater increase as a function of phlogopite concentration probably due to the good interfacial attraction between the phlogopite and PC, compared with the other filler-embedded PC composites. The mechanical and thermal properties (except for the modulus of PC/phlogopite composites) decreased owing to the PC chain scission (reduction in molecular weight) during extrusion, which was caused by the phlogopite infiltration into the PC matrix. The phlogopite's effects on the abovementioned polymers were compared with those on other fillers such as kaolin and silica.
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