微波放电加工陶瓷的研究

S. P. Kozyrev, V. A. Nevrovsky, L. L. Sukhikh, V. A. Vasin, Y. Yashnov
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引用次数: 5

摘要

研究了微波电场和聚焦激光在介质上的联合作用,目的是开发一种加工某些介质(如陶瓷)的放电技术。加工的思想是基于电介质对微波的吸收增强的现象,通过一些额外的热源局部预热。理论分析表明,由于这种影响,介质表面的破坏区比预热区窄。这个想法在微波腔中的粉色氧化铝样品上进行了测试,使用波长/spl λ /=12.5 cm的电场。激光加热介质与微波辐照同时进行的实验表明,激光加热介质具有明显的材料去除协同效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On microwave discharge machining of ceramics
The combined action of a microwave electric field and focused laser radiation on dielectrics is studied with the purpose of developing a discharge technique for the machining of certain kinds of dielectrics, e.g. ceramics. The idea of the machining is based on the phenomenon of enhanced absorption of microwaves by dielectrics preheated locally by some additional heat source. Theoretical analysis shows that, due to this effect, the destroyed zone at the dielectric surface can be more narrow than the preheated region. The idea was tested on samples of pink alumina in a microwave cavity using an electric field with wavelength /spl Lambda/=12.5 cm. Experiments on laser beam heating of dielectrics simultaneously with microwave irradiation revealed a pronounced cooperative effect of material removal.
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