首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Role of Voltage and Gas Pressure in Determining the Mean Diameter of Sn-Bi-Ag Intermetallic Compound Nanoparticles Formed by Pulsed Wire Discharge
【24h】

Role of Voltage and Gas Pressure in Determining the Mean Diameter of Sn-Bi-Ag Intermetallic Compound Nanoparticles Formed by Pulsed Wire Discharge

机译:电压和气体压力在确定通过脉冲线排出形成的Sn-Bi-Ag金属间化合物纳米粒子的平均直径

获取原文
获取原文并翻译 | 示例
           

摘要

Nanoscale Sn-Bi-Ag compound powders were successfully synthesized using the pulsed wire discharge (PWD) method. In PWD, when a high current is passed through high-density metal wires, the wires explode because of resistance heating, forming fine particles or metal vapor. In this study, we used Sn-Bi and Ag wires in order to obtain three-component nanopowders. A high current was applied to the wires between the electrodes in a N-2 atmosphere. We discussed the results based on the K factor, which is the ratio of the charging energy of the capacitor to the vaporization energy of the wire. The three-component (Sn-Bi-Ag) nanoparticles were synthesized under a N-2 atmosphere at 4 and 6 kV. From the particle-size distribution curves, it was found that the mean particle diameter (D-1) values of the Sn-Bi and Ag nanopowders were within the range of 16.32-42.37 nm under each condition. The melting point of the Sn-Bi-Ag nanoparticles was found to be within the range of 188.68-214.97 degrees C, which is about 40 degrees C lower than that obtained from the phase diagram and computational thermodynamics of the Sn-Bi-Ag system. In this study, the nanopowders were obtained by subjecting the wires at extreme energies, to improve their solid solubility.
机译:使用脉冲线放电(PWD)方法成功地合成了纳米级Sn-Bi-Ag复合粉末。在PWD中,当高电流通过高密度金属线时,由于电阻加热,形成细颗粒或金属蒸气,导线爆炸。在这项研究中,我们使用SN-BI和AG线以获得三组分纳米粉末。在N-2气氛中将高电流施加到电极之间的电极。我们讨论了基于K因子的结果,这是电容器的充电能量与电线蒸发能的比率。三组分(Sn-Bi-Ag)纳米颗粒在4和6kV的N-2气氛下合成。从粒子尺寸分布曲线,发现SN-BI和Ag纳米油的平均粒径(D-1)值在每种条件下的16.32-42.37nm的范围内。发现Sn-Bi-Ag纳米颗粒的熔点在188.68-214.97℃的范围内,该熔点比SN-BI-AG系统的相图和计算热力学获得的约40℃。 。在该研究中,通过在极端能量处经受电线来获得纳米粉末,以改善它们的固体溶解度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号