论文标题
全材料 - 包括闪光的闪电等离子体烧结
All-Materials-Inclusive Flash Spark Plasma Sintering
论文作者
论文摘要
开发了一种适用于各种材料系统的新型闪光(超高)火花等离子体烧结方法,无论其电阻率如何。从金属到电气绝缘陶瓷的许多粉末已成功地致密,导致在8-35 s的烧结时间内产生均匀的微观结构。有限的元素模拟表明,开发的方法提供了集中在样品体积和打孔中的非凡快速和均匀的加热,适用于所有测试的不同样品。使用的独特可控闪光现象是通过样品周围电流浓度的组合以及通过侧向热接触性电阻组合在该区域产生的热量的。提出的新方法允许:将闪光烧结扩展到几乎所有材料,通过添加的石墨模具控制样品形状,以及小型和中间大小对象的能源有效的质量产生。这种方法也代表了未来研究复杂形状闪光烧结的潜在场所。
A new flash (ultra-rapid) spark plasma sintering method applicable to various materials systems, regardless of their electrical resistivity, is developed. A number of powders ranging from metals to electrically insulative ceramics have been successfully densified resulting in homogeneous microstructures within sintering times of 8-35 s. A finite element simulation reveals that the developed method, providing an extraordinary fast and homogeneous heating concentrated in the sample's volume and punches, is applicable to all the different samples tested. The utilized uniquely controllable flash phenomenon is enabled by the combination of the electric current concentration around the sample and the confinement of the heat generated in this area by the lateral thermal contact resistance. The presented new method allows: extending flash sintering to nearly all materials, controlling sample shape by an added graphite die, and an energy efficient mass production of small and intermediate size objects. This approach represents also a potential venue for future investigations of flash sintering of complex shapes.