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Slow dynamics of supercooled m-toluidine investigated by mechanical spectroscopy

机译:机械光谱研究过冷间甲苯胺的慢动力学

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Dynamics of supercooled m-toluidine close to the glass transition have been investigated by dynamic shear modulus measurements and stress relaxation experiments. The viscoelastic response of this material follows time-temperature-superposition in the temperature range investigated. Comparison with results at ultrasonic frequencies suggests the existence of a secondary relaxation. A change of the temperature dependent viscosity from a Vogel-Fulcher-Tammann behavior to another regime at low temperatures is also found. Compared to most. inorganic glass formers, the viscosity of m-toluidine at the glass transition is approximately two orders of magnitude lower. The shear relaxation times are characterized by the same temperature dependence as the viscosity. They are in reasonable agreement with the results of previous ultrasonic measurements. The conclusions of the present work agree with recent results obtained by high resolution dielectric spectroscopy. (c) 2005 American Institute of Physics.
机译:通过动态剪切模量测量和应力松弛实验研究了接近玻璃化转变的过冷间甲苯胺的动力学。在研究的温度范围内,这种材料的粘弹性响应遵循时间-温度叠加。与超声频率下的结果进行比较表明存在二次弛豫。还发现在低温下温度依赖性粘度从Vogel-Fulcher-Tammann行为改变为另一种状态。相比大多数。在无机玻璃形成剂中,间甲苯胺在玻璃化转变时的粘度大约低两个数量级。剪切松弛时间的特征在于与粘度相同的温度依赖性。它们与先前的超声波测量结果合理地吻合。本工作的结论与高分辨率介电光谱法获得的最新结果一致。 (c)2005年美国物理研究所。

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