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Friction and Wear Behavior of Alumina Composites with In-Situ Formation of Aluminum Borate and Boron Nitride

机译:氧化铝复合材料与铝硼酸铝和氮化硼原位形成的摩擦磨损行为

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摘要

Wear and friction properties of Al2O3 composite reinforced with in-situ formed aluminum borate (9Al2O3·2B2O3) and hexa-boron nitride (h-BN) have been investigated. The initial constituents for the composites were Al2O3, AlN, and H3BO3. The H3BO3 was used as a source of B2O3, where B2O3 reacted with AlN and Al2O3 to form in-situ h-BN and 9Al2O3·2B2O3. Based on the thermodynamic calculation and phase transformation, four different compositions were selected. First, the powders were mixed by ball milling followed by compaction at 10 MPa. The compacted pellets were sintered at 1400 °C in vacuum. The composites were characterized using X-ray diffraction followed by hardness measurement and reciprocating sliding test against alumina and steel balls. The X-ray diffraction results revealed the formation of in situ phases of 9Al2O3·2B2O3 and h-BN that improved the tribological properties. By comparing the tribological performance of different composites, it was found that the hard 9Al2O3·2B2O3 phase maintains the wear resistance of composites, whereas the coefficient of friction is highly dependent on the counter ball. Against alumina ball, the lowest coefficient of friction was observed for the composites with maximum h-BN concentration and minimum aluminum borate concentration, whereas the opposite trend was observed against the steel ball.
机译:研究了用原位增强的Al2O3复合材料的磨损和摩擦性能,形成铝硼酸铝(9Al2O3·2b2O3)和六氮氮化物(H-Bn)。复合材料的初始成分是Al 2 O 3,AlN和H3BO 3。 H3BO 3用作B2O3的来源,其中B2O3与AlN和Al 2 O 3反应,形成原位H-Bn和9Al 2 O 3·2B2O3。基于热力学计算和相变,选择四种不同的组合物。首先,通过球磨机混合粉末,然后在10MPa下压实。将压实的粒料在1400℃的真空中烧结。使用X射线衍射进行复合材料,然后进行硬度测量和对氧化铝和钢球的往复滑动测试。 X射线衍射结果表明,在9Al2O3·2B2O3和H-BN的原位相的形成改善了摩擦学特性。通过比较不同复合材料的摩擦学性能,发现硬质9Al2O3·2B2O3相保持复合材料的耐磨性,而摩擦系数高度依赖于柜台球。针对氧化铝球,对于具有最大H-BN浓度和最小铝硼酸铝浓度的复合材料,观察到最低摩擦系数,而对钢球观察到相反的趋势。

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