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闪烧(超快速)火花等离子体烧结碳化硅。

Flash (Ultra-Rapid) Spark-Plasma Sintering of Silicon Carbide.

机构信息

San Diego State University, San Diego, CA, USA.

出版信息

Sci Rep. 2016 Sep 14;6:33408. doi: 10.1038/srep33408.

Abstract

A new ultra-rapid process of flash spark plasma sintering is developed. The idea of flash spark plasma sintering (or flash hot pressing - FHP) stems from the conducted theoretical analysis of the role of thermal runaway phenomena for material processing by flash sintering. The major purpose of the present study is to theoretically analyze the thermal runaway nature of flash sintering and to experimentally address the challenge of uncontrollable thermal conditions by the stabilization of the flash sintering process through the application of the external pressure. The effectiveness of the developed FHP technique is demonstrated by the few seconds-long consolidation of SiC powder in an industrial spark plasma sintering device. Specially designed sacrificial dies heat the pre-compacted SiC powder specimens to a critical temperature before applying any voltage to the powder volume and allowing the electrode-punches of the SPS device setup to contact the specimens and pass electric current through them under elevated temperatures. The experimental results demonstrate that flash sintering phenomena can be realized using conventional SPS devices. The usage of hybrid heating SPS devices is pointed out as the mainstream direction for the future studies and utilization of the new flash hot pressing (ultra-rapid spark plasma sintering) technique.

摘要

开发了一种新的超快速闪光火花等离子烧结工艺。闪光火花等离子烧结(或闪光热压 - FHP)的理念源于对闪光烧结过程中热失控现象对材料加工作用的理论分析。本研究的主要目的是从理论上分析闪光烧结的热失控特性,并通过施加外部压力稳定闪光烧结过程,从实验上解决不可控热条件的挑战。通过在工业火花等离子烧结设备中对 SiC 粉末进行几秒钟的固结,证明了所开发的 FHP 技术的有效性。专门设计的牺牲模具在对粉末体积施加任何电压之前将预压实的 SiC 粉末样品加热到临界温度,然后允许 SPS 设备设置的电极冲头在高温下接触样品并通过它们传递电流。实验结果表明,使用传统的 SPS 设备可以实现闪光烧结现象。指出使用混合加热 SPS 设备是未来研究和利用新的闪光热压(超快速火花等离子烧结)技术的主流方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4030/5022053/b14c33403628/srep33408-f1.jpg

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