Electrophoretic deposition of ZrB2 coatings in NaCl‐KCl‐AlF3 melt containing synthesized ZrB2 nanoparticles

Author:

Pang Jie1,Kou Qian1,Ge Chuntao1,Xie Lingling1,Jin Weiliang2,Qi Wenjuan1,Zhang Jun1,Zhu Hongmin23,Xiao Saijun1

Affiliation:

1. Department of Non‐ferrous Metallurgy School of Metallurgy Engineering Anhui University of Technology Maanshan China

2. Department of Metallurgy Graduate School of Engineering Tohoku University Sendai Japan

3. State Key Laboratory of Advanced Metallurgy University of Science and Technology Beijing Beijing China

Abstract

AbstractA novel method for preparation of ZrB2 coatings has been proposed by combination of molten salt synthesis of ZrB2 nanoparticles and subsequent electrophoretic deposition of the as‐synthesized ZrB2 nanoparticles in the same molten system in this paper. Nanoscale ZrB2 particles have been produced by borothermal reduction of ZrO2 in NaCl‐KCl‐AlF3 melt at 980°C. Then electrophoretic deposition of the as‐synthesized ZrB2 nanoparticles has been achieved in the resulting molten suspension at a reduced temperature of 900°C, yielding relatively dense ZrB2 coatings on graphite substrates with a thickness of around 25 μm. Moreover, the effect of different cell voltages ranging from 0.8 V to 1.4 V (i.e., electric field 0.4–0.7 V/cm) on the prepared ZrB2 coatings has been investigated. Finally, during the tests at 600°C–800°C in air, ZrB2 coatings deposited at a cell voltage of 1.2 V have exhibited good high‐temperature oxidation resistance.

Publisher

Wiley

Subject

Materials Chemistry,Ceramics and Composites

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