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Simulating the electromagnetic field in microwave ovens

机译:模拟微波炉中的电磁场

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摘要

Microwave heating has been widely used in the industry to synthesize dielectric materials, in which conventional procedures are slow, expensive and inefficient. In this application, the energy is introduced directly into the volume of the dielectric and as consequence the quality of the process is highly dependent on the uniformity of the electromagnetic field distribution along the material. That is, the non uniformity of the heating is a potential problem with serious consequences. Thermal runaway is the most critical, in materials with temperature dependent dielectric properties. As the material absorbs electromagnetic energy, the temperature increases as does its ability to absorb more energy. To understand this phenomenon, a perceptive of how electromagnetic field propagates and is absorbed by materials is essential, and then we carried out the 3D electromagnetic field simulation in a microwave oven loaded with ceramic samples, changing several parameters, as size, shape and position of the material, magnetron frequency and dielectric properties of the load.
机译:微波加热已在工业中广泛用于合成介电材料,其中常规过程缓慢,昂贵且效率低下。在此应用中,能量直接引入电介质的体积中,因此过程的质量高度依赖于沿材料的电磁场分布的均匀性。即,加热的不均匀性是具有严重后果的潜在问题。在具有随温度变化的介电特性的材料中,热失控是最关键的。随着材料吸收电磁能,温度及其吸收更多能量的能力也会增加。为了理解这种现象,必须了解电磁场如何传播和吸收,然后我们在装有陶瓷样品的微波炉中进行了3D电磁场仿真,更改了诸如尺寸,形状和位置等参数负载的材料,磁控管频率和介电特性。

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