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rheological comparison of silicone rubber crosslinking with platinum catalysts and triethylamine, methanol & ethanolamine solvents
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نویسنده
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sharudin rahida wati ,md azmi nik salwani ,mat shayuti muhammad shafiq ,ohshima masahiro
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منبع
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iranian journal of materials science and engineering - 2021 - دوره : 18 - شماره : 2 - صفحه:86 -94
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چکیده
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The control of silicone rubber’s viscoelastic properties such as loss factor, storage and loss moduli atcrosslinking stage is crucial in their malleability. hence, the objective in this study is to investigate the rheologicalbehaviour of silicone rubber cured under different formulation using platinum catalysts and triethylamine, methanol& ethanolamine solvents. measurements were conducted for the silicone rubber to cross-linker ratios of 2.5:7.5,5:5, 7.5:2.5 and 10:1 at different temperatures, as well as for the silicone rubber with triethylamine, methanol andethanolamine at different angular frequencies. the crossover of storage and modulus curve which signifies a gelpoint was not observed at higher ratios of platinum used across the temperature range of 25 – 100°c. however, thecrossover was observed at 89 and 95°c with the formulation ratios of 10:1 and 7.5:2.5, respectively. on the otherhand, the crossover point was observed for silicone rubber at 100 s^-1 for triethylamine, 3 s^-1 and 100 s^-1 for methanol,and 70 s^-1 alongside 290 s^-1 for ethanolamine. the presence of gel point indicates that crosslinking of silicone rubberand this study proves the possibility of controlling the crosslinking behaviour..
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کلیدواژه
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silicone rubber ,storage modulus ,loss modulus ,crosslink ,glass transition temperature ,rheological measurement
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آدرس
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universiti teknologi mara, school of chemical engineering, college of engineering, malaysia, universiti teknologi mara, school of chemical engineering, college of engineering, malaysia, universiti teknologi mara, school of chemical engineering, college of engineering, malaysia, kyoto university, department of chemical engineering, japan
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پست الکترونیکی
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oshima@cheme.kyoto-u.ac.jp
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Authors
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