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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Evolution of elastic and thermal properties during TMOS-gel formation determined by ringing bottle acoustic resonance spectroscopy, impulsive stimulated scattering, photopyroelectric spectroscopy and the hot ball method
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Evolution of elastic and thermal properties during TMOS-gel formation determined by ringing bottle acoustic resonance spectroscopy, impulsive stimulated scattering, photopyroelectric spectroscopy and the hot ball method

机译:TMOS凝胶形成过程中的弹性和热性质的演变通过振铃声共振光谱,脉冲激发散射,光热电光谱和热球法确定

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摘要

The evolution of the elastic and thermal properties of a tetramethylorthosilicate (TMOS)-based gel that exhibits an extraordinary ringing effect when enclosed in a bottle is investigated during the sol-gel transition. The results demonstrate the feasibility of three proposed experimental methods for monitoring of gels during their formation. The shear stiffening evolution during gelation is monitored by ringing bottle, resonant acoustic spectroscopy and by an ultrasonic technique using piezo electric excitation and detection. The evolution of the longitudinal modulus and the thermal diffusivity of the gel during stiffening are simultaneously determined by a combined photoacoustic and photothermal method based on heterodyne diffraction detection of impulsive stimulated scattering by, respectively, a propagating acoustic wave grating and a decaying thermal expansion grating that were both thermo elastically generated using a pulsed laser. Also, the feasibility of an inverse photopyroelectric method and a hot ball technique to monitor the thermal transport efficiency and thermal impedance of a forming gel by tracking the thermal conductivity, the thermal diffusivity, and the thermal effusivity is demonstrated. The network polymerization and stiffening during the sol-gel transition in TMOS-gel corresponds with substantial changes in the shear acoustic velocity and in all thermal properties, while the longitudinal acoustic velocity is only weakly affected.
机译:在溶胶-凝胶转变过程中,研究了基于四甲基原硅酸酯(TMOS)的凝胶的弹性和热性能的演变,该凝胶在瓶中封闭时表现出非凡的振铃效果。结果证明了三种建议的实验方法在凝胶形成过程中进行监测的可行性。凝胶化过程中的剪切刚度变化通过振铃瓶,共振声波谱以及使用压电激励和检测的超声技术进行监测。分别通过传播的声波光栅和衰减的热膨胀光栅,分别基于外差衍射检测脉冲受激散射的外差衍射检测,通过组合的光声和光热方法,同时确定凝胶在硬化过程中的纵向模量和热扩散率。它们都是使用脉冲激光热弹性产生的。此外,还证明了通过跟踪热导率,热扩散率和热发射率来监测逆向热释电法和热球技术来监测成型凝胶的热传输效率和热阻抗的可行性。在TMOS凝胶中,溶胶-凝胶转变过程中的网络聚合和硬化与剪切声速和所有热特性的实质性变化相对应,而纵向声速仅受到很小的影响。

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