Microstructural, mechanical and tribological characterization of Co–20 wt% WC composite elaborated by solid-phase sintering of Co–W–C powders mixture

IF 1.6 Q4 MATERIALS SCIENCE, COATINGS & FILMS Tribology - Materials, Surfaces & Interfaces Pub Date : 2021-08-25 DOI:10.1080/17515831.2021.1964877
Lylia Aouchiche, A. Alhussein, M. Nechiche, D. Retraint, S. Amirouche, S. Azem
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Abstract

ABSTRACT In this paper, we present the synthesis of a Co–WC compound with 80% of cobalt in a single step by sintering powders compacted and previously milled for 10 h. The purpose of this work is to obtain a fine structure avoiding the formation of mixed carbides and reducing the WC/WC interfaces. The original powder mixture contained 80 wt% Co, 13 wt% W and 7 wt% C. The Co–20% WC metal matrix composite was successfully synthesized with a very fine and homogeneous structure. It presented a good wear resistance and showed that increasing the applied load from 5 to 10 N led to decrease the friction coefficient from 0.52 to 0.35 (sample speed = 10 cm/s) and from 0.90 to 0.61 (sample speed = 20 cm/s). The hardness and Young’s modulus of Co phase and WC grains, measured by nanoindentation technique, were 0.78/79.9 and 5.78/164.6 GPa, respectively. GRAPHICAL ABSTRACT
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固相烧结Co-W-C粉末混合物制备co - 20wt % WC复合材料的显微组织、力学和摩擦学特性
摘要:在本文中,我们提出了一种Co-WC化合物的合成与80%的钴在一步烧结粉末压实和预先研磨10小时。本工作的目的是获得避免混合碳化物形成和减少WC/WC界面的精细结构。原始粉末混合物含有80 wt% Co, 13 wt% W和7 wt% c,成功合成了Co - 20% WC金属基复合材料,其结构精细均匀。结果表明,当施加载荷从5 N增加到10 N时,摩擦系数从0.52降低到0.35(试样速度= 10 cm/s),从0.90降低到0.61(试样速度= 20 cm/s)。纳米压痕法测得Co相和WC晶粒的硬度和杨氏模量分别为0.78/79.9和5.78/164.6 GPa。图形抽象
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来源期刊
Tribology - Materials, Surfaces & Interfaces
Tribology - Materials, Surfaces & Interfaces MATERIALS SCIENCE, COATINGS & FILMS-
CiteScore
2.80
自引率
0.00%
发文量
15
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