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首页> 外文期刊>Tribology International >Development of an interactive friction model to predict aluminum transfer in a pin-on-disc sliding system
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Development of an interactive friction model to predict aluminum transfer in a pin-on-disc sliding system

机译:交互式摩擦模型的发展,以预测焊盘盘滑动系统中的铝传动

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摘要

In aluminum forming processes, it is observed that the coefficient of friction increases and a transfer layer is formed on the tool surfaces. In the current paper, this phenomenon is studied via pin-on-disc dry sliding tests with aluminum alloy 6082 sliding against cast iron G3500. The results showed that the aluminum transfer layers generated at the sliding interface were identified as the origin of this behaviour that affects both friction and wear. To model this phenomenon, an interactive friction model was developed enabling the prediction of friction and the evolution of the transfer layer from the running in to the steady state. This mechanism based model can be used for representing friction variations and material transfer in sliding systems.
机译:在铝形成过程中,观察到摩擦系数增加,并且在工具表面上形成转印层。 在目前的纸张中,通过用铝合金6082滑动铸铁G3500的铝合金6082研究这种现象。 结果表明,在滑动界面处产生的铝转移层被识别为影响摩擦和磨损的这种行为的起源。 为了模拟这种现象,开发了一种交互式摩擦模型,使得能够从运行到稳定状态的转移层的预测和转移层的演变。 该机构基于机构的模型可用于表示滑动系统中的摩擦变化和材料转移。

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