论文标题
锆石的闪光微波压力
Flash microwave pressing of zirconia
论文作者
论文摘要
微波按压是降低微波烧结温度并稳定微波粉末材料加工的一种有希望的方法。进行了多物理模拟,对受调节的压力辅助微波腔进行了模拟。该模拟考虑了共振现象和氧化锆的非线性温度依赖性材料参数。微波系统和氧化锆的固有行为使微波压的调节变得困难。但是,可以使用相同的现象来激活闪光烧结。 Flash微波烧结使用谐振微波曲线的高电场,氧化锆电阻率的负温度行为(NTC)以及通过模具压实构型施加到粉末的机械压力。所得的闪光微波压力仍然需要改善处理的材料结构均匀性,但是它具有成为最快的烧结处理的能力,因为它允许室温激活总过程时间仅需几秒钟。此外,这种10-20S处理技术显示出良好的潜力,可以提高氧化铝预插图标本的透明度。
Microwave Pressing is a promising way to reduce microwave sintering temperatures and stabilize microwave powder materials processing. A multi-physics simulation was conducted of the regulated pressure-assisted microwave cavity. This simulation took into consideration resonance phenomena and the nonlinear temperature-dependent material parameters of zirconia. The intrinsic behaviors of microwave systems and zirconia make the regulation of the microwave pressing difficult. However, the same phenomena can be used to activate flash sintering. Flash microwave sintering uses high electric fields of the resonant microwave profile, the Negative Temperature Behavior (NTC) of zirconia resistivity, and the mechanical pressure applied to the powder via a die compaction configuration. The resulting flash microwave pressing still needs improvement in terms of the processed material structure homogeneity, but it has the capacity to become the fastest sintering treatment as it allows room temperature activation where the total process time only takes a few seconds. In addition, this 10-20s processing technique has shown good potential for improving the transparency of alumina pre-sintered specimens.