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首页> 外文期刊>Journal of the European Ceramic Society >The relationship between microstructure, fracture and abrasive wear in Al_2O_3/SiC nanocomposites and microcomposites containing 5 and 10 percent SiC
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The relationship between microstructure, fracture and abrasive wear in Al_2O_3/SiC nanocomposites and microcomposites containing 5 and 10 percent SiC

机译:Al_2O_3 / SiC纳米复合材料以及SiC含量为5%和10%的微复合材料的组织,断裂和磨料磨损之间的关系

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Alumina/SiC nanocomposites are much more resistant to severe wear than monolithic alumina. In order to clarify the mechanisms responsible for these improvements, alumina and alumina/SiC nanocomposites with 5 and 10 vol. percent SiC and various alumina grain sizes were fabricated. For comparison, a 10 vol. percent SiC "microcomposite" was also fabricated using 3mu m SiC particles. The extent of cracking beneath hardness indentations was examined and the specimens were tested in abrasive wear. Quantitative surface fractography of the worn surfaces was carried out. The wear properties depended strongly on the grain size in pure alumina, but were independent of the alumina grain size in the nanocomposites. This is consistent with the idea that much of the improvement in wear resistance when SiC is added to alumina stems from a reduction in the size of the individual pullouts owing to the accompanying change in fracture mode. In addition, crack initiation by plastic deformation during abrasion and indentation was found to be strongly inhibited when 10 vol. percent nanosized SiC was added to alumina. The addition of 3 mu m "micro-sized" SiC did not have the same effect. The ability of fine SiC particles to suppress cracking is attributed to the blocking of twins and dislocation pileups by intragranular SiC nanoparticles. This reduces the length of the twins or pileups and hence their ability to nucleate microcracks.
机译:氧化铝/ SiC纳米复合材料比整体氧化铝具有更强的耐磨性。为了阐明造成这些改进的机理,氧化铝和氧化铝和氧化铝/ SiC纳米复合材料的体积为5和10。制备了SiC百分数和各种氧化铝晶粒尺寸。为了比较,一个10卷。还使用3μm的SiC颗粒制造了100%的SiC“微复合材料”。检查了硬度压痕下的裂纹程度,并对样品进行了磨料磨损测试。进行磨损表面的定量表面形貌分析。磨损性能在很大程度上取决于纯氧化铝中的晶粒尺寸,但与纳米复合材料中的氧化铝晶粒尺寸无关。这与这样的想法是一致的,即当将SiC添加到氧化铝中时,耐磨性的改善大部分是由于伴随着断裂方式的变化而使单个拉出件的尺寸减小。另外,发现当10vol。%时,在磨损和压痕期间由塑性变形引起的裂纹萌生被强烈抑制。 50%的纳米级SiC被添加到氧化铝中。添加3微米的“微米级” SiC效果不一样。细小的SiC颗粒抑制裂纹的能力归因于颗粒内SiC纳米颗粒对孪晶的阻挡和位错堆积。这减少了孪晶或堆积的长度,从而减小了它们使微裂纹成核的能力。

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