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Tribological Properties of Sintered Graphite-Steel Composites Containing Lignite Bottom Ash

机译:含褐煤底灰的烧结石墨钢复合材料的摩擦学性质

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Lignite bottom ash is an industrial byproduct from the combustion of lignite coal in electric power plants. The ash is composed of various hard metal oxides, and therefore may be suitable for use as a low cost friction modifier in friction materials. This research studied the effect of lignite bottom ash additions (up to 20 weight percent) on the tribological properties of a graphite-steel composite (5 weight percent graphite and 95 weight percent high carbon steel). The powder compositions were uniaxially pressed with 300 MPa applied pressure to produce disc shaped samples. The samples were sintered at 1,100 °C for 30 minutes in a reducing atmosphere of 90 percent nitrogen and 10 percent hydrogen. The friction coefficients were measured using a ball-on-disc tribometer. It was found that the addition of bottom ash increased the friction coefficients of the samples due to the increased abrasiveness provided by the bottom ash. The density of the samples was reduced due to the lower theoretical density of the bottom ash compared to the steel that it replaced. The hardness of the samples were found to be independent of the amount of lignite bottom ash, possibly as a result of a hard particle reinforcement effect.
机译:褐煤底灰是一种工业副产品,来自电力厂的褐煤煤的燃烧。灰分由各种硬质金属氧化物组成,因此可以适用于摩擦材料中的低成本摩擦改性剂。本研究研究了褐煤底灰添加(高达20重量%)对石墨钢复合物(5重量%石墨和95重量%的高碳钢)的摩擦性质的影响。用300MPa施加的压力单轴压制粉末组合物以产生盘形样品。将样品在1,100℃下烧结30分钟,在90%氮气和10%氢气的还原气氛中烧结30分钟。使用球形盘摩擦计测量摩擦系数。发现由于底灰提供的磨削性增加,底灰的添加增加了样品的摩擦系数。由于底灰的理论密度与其更换的钢相比,样品的密度降低。发现样品的硬度与褐煤底灰量无关,可能是由于硬颗粒增强效果的结果。

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