The 67th JSAP Spring Meeting 2020

Presentation information

Poster presentation

9 Applied Materials Science » 9.2 Nanoparticles, Nanowires and Nanosheets

[14a-PA2-1~18] 9.2 Nanoparticles, Nanowires and Nanosheets

Sat. Mar 14, 2020 9:30 AM - 11:30 AM PA2 (PA)

9:30 AM - 11:30 AM

[14a-PA2-6] Pulsed discharging of compacted B powder for ZrB2 nanoparticle preparation

〇(D)HIEU DUY NGUYEN1, CHU MINH NGO1, YOSHINORI TOKOI2, THI-MAI-DUNG DO1, TADACHIKA NAKAYAMA1, HISAYUKI SUEMATSU1, KOICHI NIIHARA1 (1.Nagaoka Univ.Tech., 2.National Inst. Tech., Oyama College)

Keywords:Boride nanoparticle, Pulsed wire discharge, Zirconium boride

Pulsed wire discharge (PWD) is a physical vapor method for preparing nanoparticles. In this method, a thin metallic wire is vaporized by a large pulsed current and rapidly quenched in ambient gas/liquid to form nanoparticles. Basing on PWD, pulsed discharging of powder was proposed to prepare nanoparticles of boron which is difficult to draw wire[1]. In this research, pulsed discharging of powder was utilized to prepare nanoparticles of zirconium boride (ZrB2). ZrB2 is a refractory ceramic material. It has relatively low density, good high temperature strength, high hardness and high electrical conductivity so it is promised to be applied in high temperature applications as well as aerospace industry. Nanosized ZrB2 is expected to improve the strength of material by Hall-Petch strengthening. In this experiment, micro-sized crystalline B powder was compressed in a heat-shrinkable tube with a pair of Zr rods and discharged by a large pulsed current. To discharge, three banks of capacitors (each 10 µF) were charged to 6.2 kV and the discharging were done inside a chamber filled with Ar gas at 100 kPa. Experimental apparatus is shown in Fig. 1. From XRD pattern in Fig. 2, beside minor phases of oxide of Zr and compounds of Zr and B were be formed, nanosized ZrB2 is considered to be successfully prepared.
References:
[1] D.H. Nguyen et al., Japanese Journal of Applied Physics, 2019 (in press)