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Temperature dependence of friction coefficient and transfer film formation in organic friction materials containing different abrasive components

机译:摩擦系数和转移膜形成在含有不同磨料组分的有机摩擦材料中的温度依赖性

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Purpose This paper aims to investigate the temperature dependence of transfer film formation and friction coefficients in NAO friction materials with four different abrasive components, ZrO2, ZrSiO4, Al2O3 and Fe3O4. Design/methodology/approach 8.5% SnS2 was added as a lubricating component to friction materials. Friction tests comprised 100 times of consecutive braking application for each friction material under constant temperature of 300 degrees C, 400 degrees C, 500 degrees C and 600 degrees C. After the friction tests, the friction surfaces of the counterpart disks were examined by scanning electron microscope to access the formation of transfer film. Findings Coefficients of friction depended on not only friction temperature but also friction history which is related to development of transfer film. The effect of the transfer film formation was to reduce the friction coefficients for most friction materials. Quantities of the transfer film formation varied with friction materials; at low temperature below 400 degrees the transfer film formation was most active in the Fe3O4 materials, while at 600 degrees it was the most active in the Al2O3 material. The effect of the lubricating component SnS2 was to suppress the formation of transfer film, thus enhancing friction coefficients. Originality/value Temperature was the controlling parameter in the present test. Under these test modes, transfer film could be fully developed to access the role of the transfer film. Peer review The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-10-2019-0427/
机译:目的,本文旨在研究与四种不同磨料组分,ZrO2,ZrsiO4,Al2O3和Fe3O4中的Nao摩擦材料中转移膜形成和摩擦系数的温度依赖性。将8.5%SNS2加入8.5%SNS2作为摩擦材料的润滑组分。摩擦试验包括在恒定温度为300℃,400℃,500摄氏度和600℃的恒定温度下为每个摩擦材料进行连续制动施加100倍。在摩擦试验之后,通过扫描电子检查对应盘的摩擦表面显微镜进入转移膜的形成。发现摩擦系数依赖于摩擦温度,而且涉及与转移膜的发育有关的摩擦史。转移膜形成的效果是减少大多数摩擦材料的摩擦系数。转移膜形成的量随摩擦材料而变化;在低温下,低于400度的转移膜形成在Fe 3 O 4材料中最活跃,而在600度下,它是Al 2 O 3材料中最活跃的。润滑组分SNS2的效果是抑制转移膜的形成,从而增强摩擦系数。原创性/值温度是本试验中的控制参数。在这些测试模式下,可以完全开发转移膜以获得转移膜的作用。同行评审本文的对等审查历史记录可在:https://publons.com/publon/10.1108/ Ilt-10-2019-0427/

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