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Measurement of glass transition temperature by mechanical (DMTA), thermal (DSC and MDSC), water diffusion and density methods: A comparison study

机译:通过机械(DMTA),热(DSC和MDSC),水扩散和密度法测量玻璃化转变温度:对比研究

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Glass transition measured by DMTA from the change in slope in storage modulus was 55 degrees C, which was 10.5 degrees C lower than the value measured by tan peak. Initial glass transition measured by DSC, increased exponentially and reached. a constant value of 55 degrees C at or higher heating rate of 30 degrees C/min. Transition temperature, measured by MDSC, remained constant up to heating rate 15 degrees C/min and then decreased. The glass transition values determined from reversible heat flow was 60 degrees C. The break in diffusivity and density (i.e. volume) was observed at 50 degrees C below the glass transition temperature measured by thermal and mechanical methods. (c) 2007 Elsevier B.V. All rights reserved.
机译:由储能模量的斜率变化通过DMTA测量的玻璃化转变为55℃,比通过tan峰测量的值低10.5℃。 DSC测量的初始玻璃化转变呈指数增长并达到。在30℃/ min或更高的加热速率下为55℃的恒定值。通过MDSC测量的转变温度在直至15℃/ min的加热速率下保持恒定,然后降低。由可逆热流确定的玻璃化转变值为60℃。在比通过热和机械方法测得的玻璃化转变温度低50℃的温度下观察到扩散率和密度(即体积)的破坏。 (c)2007 Elsevier B.V.保留所有权利。

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