Effect of titanium content on the microstructure and wear behavior of Fe(13-x)TixB7 (x=0-5) hardfacing alloy

IF 0.9 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING Journal of Mining and Metallurgy Section B-Metallurgy Pub Date : 2021-01-01 DOI:10.2298/jmmb210430047k
B. Kılınç, E. Kocaman, Ş. Şen, U. Şen
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Abstract

In this study, the effects of titanium addition on microstructure, hardness and wear rate of Fe(13-x)TixB7 (x = 0, 1, 2, 3 and 5) based hard surface alloy layers formed by gas tungsten arc (GTA) welding method were investigated. As a result of the microstructure studies and phase analysis, it was determined that the structures of the coating layers consisted of ?-Fe, ?Fe+Fe2B eutectic, ?-Fe+Fe2Ti eutectic and hard TiB2 phases. In the hard surface alloy layer, as the amount of titanium was increased, the TiB2 phase density formed in the system increased and it was observed that rod-like and long sharp-edged phases formed from the equiaxed structure. As a result of wear tests performed at different loads, it was determined that the addition of titanium reduces the wear rates in the coating layers. In addition, scanning electron microscopy (SEM) images of the worn surfaces showed that the wear mechanisms were adhesive and oxidative.
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钛含量对Fe(13-x)TixB7 (x=0-5)堆焊合金组织和磨损性能的影响
研究了添加钛对气钨弧焊(GTA)法制备Fe(13-x)TixB7 (x = 0、1、2、3和5)基硬质表面合金层显微组织、硬度和磨损率的影响。显微组织研究和物相分析表明,涂层组织由-Fe、-Fe+ Fe2B共晶、-Fe+Fe2Ti共晶和硬TiB2相组成。在硬表面合金层中,随着钛用量的增加,体系中形成的TiB2相密度增加,由等轴组织形成棒状、长而锋利的相。在不同载荷下进行的磨损试验结果表明,钛的加入降低了涂层的磨损率。此外,磨损表面的扫描电镜(SEM)图像表明,磨损机制为粘附和氧化。
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来源期刊
CiteScore
2.00
自引率
40.00%
发文量
19
审稿时长
2 months
期刊介绍: University of Belgrade, Technical Faculty in Bor, has been publishing the journal called Journal of Mining and Metallurgy since 1965 and in 1997 it was divided in two independent journals dealing with mining and metallurgy separately. Since 2009 Journal of Mining and Metallurgy, Section B: Metallurgy has been accepted in Science Citation Index Expanded. Journal of Mining and Metallurgy, Section B: Metallurgy presents an international medium for the publication of contributions on original research which reflect the new progresses in theory and practice of metallurgy. The Journal covers the latest research in all aspects of metallurgy including hydrometallurgy, pyrometallurgy, electrometallurgy, transport phenomena, process control, solidification, mechanical working, solid state reactions, materials processing, surface treatment and relationships among processing, structure, and properties of materials.
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