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Microwave heating and joining of ceramic cylinders: A mathematical model

机译:陶瓷缸的微波加热和连接:数学模型

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摘要

A thin cylindrical ceramic sample is placed in a single mode microwave applicator in such a way that the electric field strength is allowed to vary along its axis. The sample can either be a single rod or two rods butted together. We present a simple mathematical model which describes the microwave heating process. It is built on the assumption that the Biot number of the material is small, and that the electric field is known and uniform throughout the cylinder's cross-section. The model takes the form of a nonlinear parabolic equation of reaction-diffusion type, with a spatially varying reaction term that corresponds to the spatial variation of the electromagnetic field strength in the waveguide. The equation is analyzed and a solution is found which develops a hot spot near the center of the cylindrical sample and which then propagates outwards until it stabilizes. The propagation and stabilization phenomenon concentrates the microwave energy in a localized region about the center where elevated temperatures may be desirable.
机译:将薄的圆柱形陶瓷样品以允许电场强度沿其轴变化的方式放置在单模微波施加器中。样品可以是单个杆或两个对接在一起的杆。我们提供了一个描述微波加热过程的简单数学模型。它基于以下假设:材料的比奥数小,并且在整个圆柱体的横截面中电场均已知且均匀。该模型采用反应扩散型非线性抛物线方程的形式,其空间变化的反应项与波导中电磁场强度的空间变化相对应。对方程进行了分析,找到了一个解决方案,该解决方案在圆柱状样品的中心附近产生了一个热点,然后向外传播直至稳定。传播和稳定现象将微波能量集中在可能需要提高温度的中心附近的局部区域中。

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