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Effect of Carbonaceous Components on Tribological Properties of Copper-Free NAO Friction Material

机译:含碳成分对无铜NAO摩擦材料摩擦学性能的影响

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摘要

Copper helps to accelerate heat transfer during the braking process, allowing the brake materials to produce a stable coefficient of friction (COF), which in turn reduces wear loss and braking noise. However, its properties are also quite harmful to aquatic organisms. Finding a suitable replacement that fits all functions of copper for brake materials is not an easy feat. In this paper, six different carbonaceous components (coke, carbon black, carbon fiber, artificial graphite, natural graphite and expanded graphite) were substituted for copper in non-asbestos organic (NAO) friction materials. The hardness, thermal conductivity and tribological behaviors of these copper-free NAO friction materials were examined. Experimental results indicate that carbonaceous components improve lubrication and assist the friction composites with generating friction layers on the worn surface. Specimens containing coke, carbon black or carbon fiber exhibit broken friction layers, whereas specimens containing artificial graphite, natural graphite or expanded graphite exhibit quite adherent and smooth friction layers. Among all the copper-free carbon containing specimens, the specimen containing expanded graphite appears to be the best choice. It has the highest thermal conductivity, a relatively low wear loss and a relatively high and stable COF.
机译:铜有助于在制动过程中加快热量传递,使制动材料产生稳定的摩擦系数(COF),从而减少磨损损失和制动噪音。但是,其性质也对水生生物非常有害。寻找合适的替代材料以适合制动材料的铜的所有功能并非易事。在本文中,用六种不同的碳质成分(焦炭,炭黑,碳纤维,人造石墨,天然石墨和膨胀石墨)代替了非石棉有机(NAO)摩擦材料中的铜。检查了这些无铜NAO摩擦材料的硬度,导热率和摩擦学行为。实验结果表明,含碳成分可改善润滑,并有助于摩擦复合材料在磨损的表面上产生摩擦层。包含焦炭,炭黑或碳纤维的样品显示出破裂的摩擦层,而包含人造石墨,天然石墨或膨胀石墨的样品显示出非常粘而光滑的摩擦层。在所有的无铜含碳样品中,含膨胀石墨的样品似乎是最佳选择。它具有最高的热导率,相对较低的磨损损耗和相对较高且稳定的COF。

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