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Development of a microwave calorimeter for simultaneous thermal analysis, infrared spectroscopy and dielectric measurements

机译:微波量热仪的开发,用于同时进行热分析,红外光谱和介电测量

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An instrument has been developed for monitoring cure processes under microwave heating conditions. The main function of the instrument was a calorimeter for performing microwave thermal analysis. A single mode resonant cavity was used as the heating cell in the microwave calorimeter. Thermal analysis measurements were obtained by monitoring the variation in the microwave power that was required to maintain controlled heating of the sample. The microwave thermal analysis data were analogous to conventional differential scanning calorimetry measurements. The dielectric properties of the sample, as a function of the extent of cure, have been obtained using perturbation theory from the changes in resonant frequency and quality factor of the microwave cavity during heating. Additionally, remote sensing fibre-optic probes have been employed to measure real time in situ infrared spectra of the sample during the cure reaction. In this paper, we describe the design and operation of the microwave calorimeter. Examples of experimental results are also presented.
机译:已经开发了一种用于监测微波加热条件下的固化过程的仪器。该仪器的主要功能是用于进行微波热分析的量热仪。单模谐振腔被用作微波量热仪中的加热单元。通过监测维持样品受控加热所需的微波功率变化来获得热分析测量值。微波热分析数据类似于常规差示扫描量热法测量。样品的介电性能是固化程度的函数,它是根据摄动理论从加热过程中微波腔的谐振频率和品质因数的变化得出的。另外,在固化反应过程中,已采用遥感光纤探头来测量样品的实时原位红外光谱。在本文中,我们描述了微波量热仪的设计和操作。还提供了实验结果的示例。

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