Characterization of bilayer (FeB/Fe2B) on AISI H13 work tool steel

Q3 Materials Science Koroze a ochrana materialu Pub Date : 2021-09-01 DOI:10.2478/kom-2021-0005
B. Boumaali, Abdellah Z. Nait, M. Keddam
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引用次数: 3

Abstract

Abstract In this work, the borided layers were produced on AISI H13 steel via solid boriding with a powders mixture containing 90 wt.% B4C and 10 wt.% NaBF4 for treatment times of 2-6 h at 900, 950 and 1000 °C. The microscopic observations revealed a less pronounced toothed interface between the borided layer and the transition zone. The XRD studies indicated the presence of a dual phase boride layer (FeB/Fe2B) besides the chromium and vanadium borides as precipitates inside it. The boronizing kinetics of AISI H13 steel was investigated by using the classical parabolic growth law. The obtained value of boron activation energy in the entire boride layer (FeB + + Fe2B) was found to be 236.34 kJ mol-1. Furthermore, this value of energy has been compared to the literature data. Finally, the nanohardness and reduced modulus of elasticity were measured for FeB, Fe2B and transition zone.
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AISI H13工具钢双分子层(FeB/Fe2B)的表征
采用含有90 wt.% B4C和10 wt.% NaBF4的混合粉末,在900、950和1000℃下分别处理2 ~ 6 h,在AISI H13钢表面进行固体渗硼制备渗硼层。显微观察显示,在硼化层和过渡区之间有一个不太明显的齿状界面。XRD分析表明,除铬、钒硼化物析出外,还存在双相硼化物层(FeB/Fe2B)。采用经典抛物线生长规律研究了AISI H13钢的渗硼动力学。得到了整个硼化物层(FeB + + Fe2B)的硼活化能为236.34 kJ mol-1。此外,还将该能量值与文献数据进行了比较。最后,测量了合金中FeB、Fe2B和过渡区的纳米硬度和还原弹性模量。
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来源期刊
Koroze a ochrana materialu
Koroze a ochrana materialu Materials Science-Materials Science (all)
CiteScore
3.00
自引率
0.00%
发文量
8
审稿时长
14 weeks
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