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Tribological properties of PM Cu-based dry friction clutch

机译:PM基于Cu的干摩擦离合器的摩擦学性质

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Sintered Cu-based frictional materials were developed by using powder metallurgy (PM) method. The materials are aimed for application in a passenger car as a dry friction clutch. Effects of sintering temperature and composition on mechanical and tribological properties were determined. It was found that improper frictional material formulations caused inferior properties, particularly when the sintering temperatures were increased. Admixing of high Sn content (8 wt. %) resulted in decreases of sintered density and hardness with increasing sintering temperature. High Sn contents caused swelling of the sintered materials. Tribological properties (friction coefficient and wear rate) of the sintered specimens of the investigated materials were insensitive to sintering temperatures in the range of 800-950 °C but they were strongly influenced by chemical compositions. Addition of 3 wt. % graphite lowered the friction coefficient, which subsequently lowered the wear rate of the sintered material. To increase friction coefficient, one of the crucial properties of the dry friction clutch, of the sintered Cu-based frictional materials, two approaches were employed. In the first approach, substitution of graphite by SiO_2 powders could improve the material friction coefficient. In the second approach, decreases of graphite content from 3 to 1 wt. % and of Sn content from 8 to 2 wt. % were conducted. The latter approach not only improved friction coefficient but also improved sintered density and hardness of the Cu-based frictional materials.
机译:通过使用粉末冶金(PM)方法开发烧结的Cu基摩擦材料。这些材料旨在应用于乘用车作为干摩擦离合器。测定了烧结温度和组成对机械和摩擦学性质的影响。发现不当摩擦材料制剂引起较差的性质,特别是当烧结温度增加时。将高Sn含量(8重量%)混合导致烧结密度和硬度随着烧结温度的增加而降低。高Sn内容物引起烧结材料的膨胀。调查材料的烧结标本的摩擦特性(摩擦系数和磨损率)对烧结温度不敏感在800-950℃的范围内,但它们受到化学组成的强烈影响。添加3重量%。 %石墨降低了摩擦系数,随后降低了烧结材料的磨损率。为了提高摩擦系数,采用烧结Cu基摩擦材料的干摩擦离合器的关键特性之一,采用两种方法。在第一种方法中,SiO_2粉末替代石墨可以改善材料摩擦系数。在第二种方法中,将石墨含量从3〜1重量减少。 %和Sn含量为8到2重量%。 % 进行了。后一种方法不仅改善了摩擦系数,而且改善了Cu基摩擦材料的烧结密度和硬度。

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