首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Influence of graphite content on the dry sliding and oil impregnated sliding wear behavior of Al 2024-graphite composites produced by in situ powder metallurgy method
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Influence of graphite content on the dry sliding and oil impregnated sliding wear behavior of Al 2024-graphite composites produced by in situ powder metallurgy method

机译:石墨含量对原位粉末冶金法制备的Al 2204石墨复合材料干式滑动和油浸式滑动磨损行为的影响

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The influence of graphite content on the dry sliding and oil impregnated sliding wear characteristics of sintered aluminum 2024 alloy-graphite (Al/Gr) composite materials has been assessed using a pin-on-disc wear test. The composites with 5-20 wt.% flake graphite particles were processed by in situ powder metallurgy technique. For comparison, compacts of the base alloy were made under the same consolidation processing applied for Al/Gr composites. The hardness of the sintered materials was measured using Brinell hardness tester and their bending strength was measured by three-point bending tests. Scanning electron microscopy (SEM) was used to analyze the debris, wear surfaces and fracture surfaces of samples. It was found that an increase in graphite content reduced the coefficient of friction for both dry and oil impregnated sliding, but this effect was more pronounced in dry sliding. Hardness and fracture toughness of composites decreased with increasing graphite content. In dry sliding, a marked transition from mild to severe wear was identified for the base alloy and composites. The transition load increased with graphite content due to the increased amount of released graphite detected on the wear surfaces. The wear rates for both dry and oil impregnated sliding were dependent upon graphite content in the alloy. In both cases, Al/Gr composites containing 5 wt.% graphite exhibited superior wear properties over the base alloy, whereas at higher graphite addition levels a complete reversal in the wear behavior was observed. The wear rate of the oil impregnated Al/Gr composites containing 10 wt.% or more graphite particles were higher than that of the base alloy. These observations were rationalized in terms of the graphite content in the Al/Gr composites which resulted in the variations of the mechanical properties together with formation and retention of the solid lubricating film on the dry and/or oil impregnated sliding surfaces.
机译:使用针盘式磨损试验评估了石墨含量对烧结铝2024合金-石墨(Al / Gr)复合材料的干式滑动和油浸式滑动磨损特性的影响。通过原位粉末冶金技术处理具有5-20重量%的片状石墨颗粒的复合材料。为了进行比较,在与Al / Gr复合材料相同的固结处理过程中制备了基础合金的压坯。使用布氏硬度计测量烧结材料的硬度,并通过三点弯曲试验测量其弯曲强度。使用扫描电子显微镜(SEM)分析样品的碎屑,磨损表面和断裂表面。已经发现,石墨含量的增加降低了干式和油浸式滑动的摩擦系数,但是这种效果在干式滑动中更为明显。随着石墨含量的增加,复合材料的硬度和断裂韧性降低。在干式滑动中,发现母材合金和复合材料从轻度磨损到严重磨损的明显过渡。过渡负荷随石墨含量的增加而增加,这是由于在磨损表面上检测到的释放石墨量增加所致。干式和油浸式滑动的磨损率均取决于合金中的石墨含量。在这两种情况下,含有5 wt。%石墨的Al / Gr复合材料均表现出优于基础合金的耐磨性能,而在较高石墨添加量下,观察到磨损行为完全相反。包含10wt。%或更多石墨颗粒的油浸渍的Al / Gr复合材料的磨损率高于基础合金的磨损率。根据Al / Gr复合材料中的石墨含量合理化了这些观察结果,这导致了机械性能的变化,以及在干燥和/或浸油的滑动表面上形成并保留了固体润滑膜。

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