Al2O3/TiC和SiAlON陶瓷表层缺陷对物理力学特性的影响

IF 2.7 Q1 MATERIALS SCIENCE, CERAMICS
S. Grigoriev, M. Volosova, A. Okunkova, S. Fedorov
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引用次数: 3

摘要

研究了金刚石研磨、研磨和抛光对Al2O3/TiC和SiAlON陶瓷样品表面层和缺陷的影响。提出了缺陷密度和缺陷层厚度(Rt)的乘积缺陷ID指数及其评估方法,以量化陶瓷表面的缺陷。当缺陷密度降低2倍时,研磨将Rt参数降低2.6–2.7倍。抛光后,Al2O3/TiC样品的Rt参数降至0.42μm,SiAlON样品的Rt参数降至0.37μm。抛光后,缺陷密度降低了很多倍:分别高达0.005和0.004。抛光样品的抗裂性提高了5–7%。磨损20分钟后,抛光样品的体积磨损比研磨样品减少了1.5–1.9倍。抛光样品在800°C下的摩擦系数下降,在200 m摩擦距离后的体积磨损分别比研磨样品下降1.5倍和1.3倍。抛光试样在高温滑动摩擦下的体积磨损分别比研磨试样小55%和42%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Defects in Surface Layer of Al2O3/TiC and SiAlON Ceramics on Physical and Mechanical Characteristics
The paper studies the influence of diamond grinding, lapping, and polishing on the surface layer and defectiveness of the Al2O3/TiC and SiAlON ceramic samples. The index of defectiveness ID, which is the product of the defect density and the defective layer’s thickness (Rt), and a method for its evaluation are proposed to quantify the defectiveness of the ceramic surfaces. Lapping reduces the Rt parameter by 2.6–2.7 times when the density of defects was decreased by 2 times. After polishing, the Rt parameter decreases to 0.42 μm for Al2O3/TiC and 0.37 μm for SiAlON samples. The density of defects decreases many times after polishing: up to 0.005 and 0.004, respectively. The crack resistance of the polished samples increased by 5–7%. The volumetric wear of polished samples decreased by 1.5–1.9 times compared to the ground ones after 20 min of abrasion wear. The polished samples show a decrease in the coefficient of friction at 800 °C and a decrease in the volumetric wear by 1.5 and 1.3 times, respectively, compared to the ground ones after 200 m of friction distance. The volumetric wear at high-temperature friction of sliding for polished specimens was 55% and 42% less than for the ground ones, respectively.
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来源期刊
CiteScore
3.00
自引率
7.10%
发文量
66
审稿时长
10 weeks
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