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Heating Behaviors of Powdered Metal Silicon Compact Under Microwave Irradiation

机译:微波辐射下粉末金属硅块的加热行为

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The use of microwave heating has now been applied to a wide variety of industrial fields. Especially, the use of microwave energy for the firing process of the advanced ceramics has been reportedly found to offer significant advantages compared to the conventional thermal heating. Generally, in the volume production, we use the suscepor, which is the pyrogenetic substance to be heated the specimens externally and to play a very important role in firing ceramics. Recently, we found out that the powdered metal silicon compact is one of the good candidates as susceptor materials. However, its microwave heating mechanism has not been made clear, yet. Then, in this report, we carried out the fundamental studies about the heating behaviors of the powdered metal silicon compact mixed with aluminum oxide powder under the microwave irradiation at a frequency of 2.45GHz in a symmetrical single mode cavity TE01 and the analysis of products after heating by the X-ray diffraction method. From experimental results, it was found out that the attained temperature of the compact specimen under microwave irradiation was higher with increase of voltage along the voltage distribution in the single mode cavity. And it was also found out that the temperature was different with how to set up the compact specimen in the single mode cavity.
机译:微波加热的使用现已应用于各种工业领域。特别是,据报道,与传统的热加热相比,已举报了对先进陶瓷的烧制过程的微波能量的使用提供了显着的优点。通常,在体积的生产中,我们使用Suscepor,这是溶液物质外部加热标本,并在烧制陶瓷中发挥非常重要的作用。最近,我们发现粉末状金属硅结构是基座材料的良好候选物之一。然而,它的微波加热机制尚未明确。然后,在本报告中,我们在对称单模腔TE01中以2.45GHz的频率下,在微波辐射下与氧化铝粉末混合的粉末金属硅结构的加热行为进行了基本研究。通过X射线衍射法加热。从实验结果开始,发现微波辐射下的紧凑型试样的达到温度随着单模腔中的电压分布而增加。还发现,温度与如何在单模腔内设置紧凑型样品不同。

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