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Wear Resistance Mechanism of Alumina Ceramics Containing Gd2O3

机译:含Gd2O3的氧化铝陶瓷的耐磨机理

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摘要

Excellent wear resistance of alumina ceramics is a desirable quality for many products. The purpose of this work was to improve the wear resistance of 99% alumina ceramics in an Al2O3–Gd2O3–SiO2–CaO–MgO (AGSCM) system. The content of Gd2O3 varied from 0.01% to 1%. A test of wear rate was performed in a ball milling apparatus in a water environment according to the Chinese industry standard. The compositions and microstructure of this material, as well as the effect of bulk density on wear rate, were studied. The effect of Gd2O3 on phases, grain growth mode, and grain boundary cohesion was investigated. It was found that Gd2O3 could refine grain size, form compressive stress of the grain boundary, and promote the crystallization of CaAl12O19. The wear rate of this material was as low as 0.00052‰ (the Chinese industry standard wear rate is ≤0.15‰). The mechanisms for wear resistance of AGSCM ceramics were also determined.
机译:氧化铝陶瓷优异的耐磨性是许多产品的理想品质。这项工作的目的是提高在Al2O3–Gd2O3–SiO2–CaO–MgO(AGSCM)系统中99%氧化铝陶瓷的耐磨性。 Gd2O3的含量从0.01%到1%不等。根据中国行业标准,在水环境中的球磨设备中进行了磨损率测试。研究了这种材料的组成和微观结构,以及堆积密度对磨损率的影响。研究了Gd2O3对相,晶粒生长方式和晶界内聚力的影响。发现Gd2O3可以细化晶粒尺寸,形成晶界的压应力,并促进CaAl12O19的结晶。该材料的磨损率低至0.00052‰(中国工业标准磨损率≤0.15‰)。还确定了AGSCM陶瓷的耐磨机理。

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