首页> 外文期刊>Journal of the European Ceramic Society >Mechanical properties and sliding wear behaviour of Al2O3-SiC nanocomposites with 3-20 vol% SiC
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Mechanical properties and sliding wear behaviour of Al2O3-SiC nanocomposites with 3-20 vol% SiC

机译:Al2O3-SiC纳米复合材料的机械性能和滑动磨损行为用3-20体积%SiC

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摘要

Al2O3/SiC composites containing different volume fractions (3, 5, 10, 15, and 20 vol%) of SiC particles were produced by conventional mixing of alumina and silicon carbide powders, followed by hot pressing at 1740 degrees C for 1 h under the pressure of 30 MPa in the atmosphere of Ar. The influence of the volume fraction and size of SiC particles (two different powders with the mean size of SiC particles 40 and 200 nm were used), and final microstructure on mechanical properties and dry sliding wear behaviour in ball-on disc arrangement were evaluated. The properties of the composites were related to a monolithic Al2O3 reference. Microstructure of the composites was significantly affected by the volume fraction of added SiC, with the mean size of alumina matrix grains decreasing with increasing content of SiC particles. The addition of SiC moderately improved the Vickers hardness. Fracture toughness was lower with respect to monolithic Al2O3, irrespective of the volume fraction and size of SiC particles. Al2O3/SiC nanocomposites conferred significant benefits in terms of wear behaviour under the conditions of mild dry sliding wear. Wear resistance of the alumina reference was poor, especially at the applied load of 50 N. The wear rates of composites markedly decreased with increasing volume fraction of SiC. Wear of the composites was also influenced by the material of counterparts, especially their hardness, with softer counterparts resulting in lower wear rates. All composites wore by a combination of grain pull-out with plastic deformation associated with grooving and small contribution of mechanical wear (micro-fracture). No influence of SiC particle size on wear rate or mechanism of wear was observed in the materials with identical volume fractions of SiC. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过常规混合氧化铝和碳化硅粉末制备含有不同体积级分(3,5,10,15和20体积)的SiC颗粒的Al 2O3 / SiC复合材料,然后在1740℃下热压1小时。 AR气氛中30MPa的压力。评价体积分数和尺寸的SiC颗粒的影响(使用具有SiC颗粒40和200nm的平均尺寸的两种不同的粉末),并评估了在球上的机械性能和干式滑动磨损行为上的最终微观结构。复合材料的性质与整体式Al2O3参考有关。复合材料的微观结构受到添加SiC的体积分数的显着影响,氧化铝基质晶粒的平均尺寸随着SiC颗粒的增加而降低。添加SiC适度提高了维氏硬度。对于单片Al 2 O 3,裂缝韧性较低,而不管SiC颗粒的体积分数和大小。 Al2O3 / SiC纳米复合材料在温和的干燥滑动磨损条件下赋予磨损行为显着的益处。氧化铝参考的耐磨性差,特别是在施加的载荷为50n。随着SiC的体积分数增加,复合材料的磨损率显着降低。复合材料的磨损也受到对应物材料的影响,特别是它们的硬度,具有较低的磨损率。所有复合材料都通过谷物拉出的组合而穿着塑性变形,与机械磨损(微骨折)的凹槽和小贡献相关。在具有相同体积分数的SiC的材料中没有观察到SiC粒径对磨损率或磨损机制的影响。 (c)2017 Elsevier Ltd.保留所有权利。

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