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首页> 外文期刊>Journal of Materials Science >EVIDENCE FOR A NON-THERMAL MICROWAVE EFFECT IN THE SINTERING OF PARTIALLY STABILIZED ZIRCONIA
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EVIDENCE FOR A NON-THERMAL MICROWAVE EFFECT IN THE SINTERING OF PARTIALLY STABILIZED ZIRCONIA

机译:局部稳定氧化锆烧结中非热微波效应的证据

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A hybrid furnace, which allows the simultaneous application of microwave and radiant energy, has been used to investigate the sintering of partially stabilized zirconia (doped with 3 mol % yttria). Microwave-enhanced sintering is clearly demonstrated with densification occurring at a lower temperature when a high-frequency electric field is applied. By considering the variation of electric field strength with furnace temperature, this enhancement is shown to be non-thermal in nature, being dependent on the electric field strength and not the power density (heating) of the microwaves. This dependence on electric field is consistent with an additional driving force term in the equation which describes the diffusion of vacancies through the material during sintering. [References: 17]
机译:允许同时施加微波和辐射能的混合炉已用于研究部分稳定的氧化锆(掺杂3摩尔%氧化钇)的烧结。清楚地证明了微波增强的烧结,当施加高频电场时,在较低的温度下发生了致密化。通过考虑电场强度随炉温的变化,这种增强本质上是非热的,取决于电场强度而不是微波的功率密度(加热)。这种对电场的依赖性与方程中的一个附加驱动力项一致,该方程描述了烧结过程中空位通过材料的扩散。 [参考:17]

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