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Microwave heating of metals

机译:微波加热金属

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摘要

Modelling of industrial microwave furnaces is a multi-physics, non-linear, temperature-dependent, complicated process given that the computational domain could become exceptionally large, and many of the utilised furnace material properties are functions of temperature that remain unknown or unpublished. This research details the authors' efforts for accurate modelling of the industrial microwave furnace operation including extensive material characterisation at elevated temperatures. The research further develops the coupled electromagnetic and transient thermal model to represent the furnace's dynamic heating phenomenon which is presented as a non-linear time-variant multi-physics process. Results will be shown for heating copper, as an example, to temperatures above 1000'C based on the authors' experiments and from their modelling efforts. Comparison of data will be made to examine how representative of the experimental process is the modelling effort. Conclusions for development of such models and their support for further optimisation studies of the microwave metal heating process will be discussed.
机译:工业微波炉的建模是一个多物理场,非线性的,与温度有关的复杂过程,因为计算域可能会变得异常大,并且所使用的许多炉子材料特性都是温度的函数,而这些函数仍然未知或未公开。这项研究详细介绍了作者为精确建模工业微波炉操作所做的努力,包括在高温下对材料进行广泛的表征。该研究进一步开发了耦合电磁和瞬态热模型,以表示熔炉的动态加热现象,该现象以非线性时变多物理过程表示。例如,根据作者的实验和他们的建模工作,将显示出将铜加热到1000'C以上的温度的结果。将对数据进行比较,以检查实验过程如何代表建模工作。将讨论开发此类模型的结论及其对微波金属加热过程的进一步优化研究的支持。

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