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Development of a novel instrument for microwave dielectric thermal analysis

机译:一种新型微波介质热分析仪器的研制

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摘要

The advantages of microwave heating in industrial processing are becoming more widely appreciated and the technique is of increasing commercial significance. However, knowledge of a material's dielectric properties as a function of temperature is of considerable importance as they determine the efficiency with which the material converts microwave energy into heat. This article describes the development of a novel instrument for a new form of thermal analysis, microwave dielectric thermal analysis (MDTA) in which the sample is heated not conventionally but by microwaves, while its dielectric properties at microwave frequencies are determined quasisimultaneously using a network analyzer. A plot of the dielectric properties against temperature then gives the MDTA curve. The fundamental principle underlying the use of MDTA is that not only do a material's dielectric properties (both the real and imaginary parts of the complex permittivity) alter (generally smoothly) as a function of temperature but dramatic differences can be found when chemical or physical changes occur. MDTA measures the sample's dielectric properties as a function of temperature before, during, and after the chemical and/or physical changes occurring as it is heated in the microwave field and thus provides a unique way of studying them. Furthermore, due to the quasisimultaneous nature of the measurements, MDTA can also make a valuable contribution to the investigation of the so-called "microwave effect" anomalies that occur when certain materials are heated in a microwave field. We show that the technique can be used to study a wide range of thermal transformations, including solid-solid phase changes, melting, and chemical reactions, e.g., dehydration, via the complex permittivity-temperature profiles generated in MDTA
机译:微波加热在工业加工中的优点变得越来越广泛,并且该技术具有越来越大的商业意义。但是,了解材料随温度变化的介电特性非常重要,因为它们决定了材料将微波能量转化为热量的效率。本文介绍了一种用于新型热分析方法的新型仪器的开发,即微波介电热分析(MDTA),该方法不通过常规方式而是通过微波加热样品,而使用网络分析仪可同时确定微波频率下的介电性能。 。然后,将介电性能与温度作图,得出MDTA曲线。使用MDTA的基本原理是,不仅材料的介电特性(复介电常数的实部和虚部)都随温度变化(通常平滑),而且在化学或物理变化时也会发现巨大的差异发生。 MDTA在微波场中加热之前,期间和之后,根据化学和/或物理变化,测量样品的介电性能随温度的变化,从而提供了一种独特的研究方法。此外,由于测量的准同时性质,MDTA还可以为研究某些材料在微波场中加热时发生的所谓“微波效应”异常做出有价值的贡献。我们表明,该技术可用于通过MDTA中生成的复杂的介电常数-温度曲线来研究广泛的热转化,包括固-固相变,熔融和化学反应(例如脱水)

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