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STUDY ON PATCH ARRAY IN MULTIMODE CAVITY FOR HEATING THIN MATERIAL

机译:加热薄材料多模腔中贴片阵列的研究

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In order to heat low loss materials by microwave, it is necessary to converge the energy on the material. In this study, to heat low loss thin materials such as thin film or sheet by microwave in a multimode cavity resonator, circular polarizing patch array is developed. The patch array is set in the multimode cavity with the major axis of patch is set as 45 degree to the orientation of the fed electric field. This arrangement generates circular polarized electric field in the cavity resonator. The metallic patch array set in the cavity becomes the secondary radiator of microwave, and the distribution of electric field becomes increased on the surface of the patch array radiators. The heating medium is set and moved on the surface of the patch array and by the high electric field on the patch, the low loss thin material can be heated effectively. Also, the patch array is useful to make the electric field distribution uniform inside the cavity. By optimizing the shape and the arrangement of patch, the heating pattern of thin material becomes uniform and strong electric field can be irradiated at the frequency of 2.45 GHz. By using this method, uniform heating for low loss thin material can be performed by microwave.
机译:为了通过微波加热低损耗材料,有必要会聚材料上的能量。在本研究中,通过微波在多模腔谐振器中加热低损耗薄材料,例如薄膜或片材,开发圆偏振贴片阵列。贴片阵列设置在多​​模腔中,贴片的主轴设定为馈电电场的方向为45度。这种布置在腔谐振器中产生圆形偏振电场。在腔中设置的金属贴片阵列成为微波的次级散热器,并且电场的分布在贴片阵列辐射器的表面上变得增加。将加热介质设置在贴片阵列的表面上并由贴片上的高电场移动,可以有效地加热低损耗薄材料。而且,贴片阵列可用于使电场分布在腔内制成均匀。通过优化贴片的形状和布置,薄材料的加热图案变得均匀,并且可以以2.45GHz的频率照射强电场。通过使用该方法,可以通过微波进行低损耗薄材料的均匀加热。

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