KMID : 1059520140580030251
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Journal of the Korean Chemical Society 2014 Volume.58 No. 3 p.251 ~ p.257
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Thermodynamic Properties and Self Diffusions from Rheological Parameters of Eyring-Halsey Model
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Kim Nam-Jeong
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Abstract
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The stress relaxation of poly(methyl acrylate)-poly(acrylonitrile) copolymer samples were carried out in air and distilled water at various temperatures using the tensile tester with the solvent chamber. The rheological parameters were obtained by applying the experimental stress relaxation curves to the theoretical equation of the Eyring-Halsey non-Newtonian model. The self diffusion, hole volume, viscosities, and thermodynamic parameters of copolymer samples were calculated from rheological parameters and crystallite size in order to study of flow segments in amorphous region. It was observed that the rheological parameters of these copolymer samples are directly related to the self diffusion, hole volume, viscosities, and thermodynamic parameters of flow segments.
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KEYWORD
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Self diffusion, Hole volume, Thermodynamic parameters, Stress relaxation, Rheological parameters
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