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首页> 外文期刊>Journal of Engineering, Design and Technology >Dry sliding wear performance on self-healing Al6061 composites
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Dry sliding wear performance on self-healing Al6061 composites

机译:自愈合AL6061复合材料的干式滑动磨损性能

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Purpose - The purpose of this study is to investigate the tribological performance of the developed self-healing Al6061 composite and to optimize the operating conditions for enhanced tribo-performance of the developed material. Design/methodology/approach - A unique procedure has been adopted to convert the sand casted Al6061 into self-healing material by piercing a low melting point solder material with and without MoS2. Taguchi-based L9 orthogonal array has been used to optimize the number of experiments and analyze the influence of operating parameters such as speed, sliding distance and load onmaterial wear. Findings - The results reveal that the paper shows the self-healing and self-repair is possible in metal through piercing low melting point alloy. Then, the load has a significant influence over other input parameters in predicting the wear behavior of developed material. Moreover, addition of MoS_2 does not affect the tribo-performance of the developed material. The study concludes that the developed self-healing Al6061 has huge potential to be used in mechanical industry. Research limitations/implications - The concept of self-healing in metals are very challenging task due to very slow diffusion rate of atoms at room temperature. Therefore, researchers are encouraged to explore the other new techniques to create self-healing in metals. Practical implications - The self-healing materials had shown huge potential to be used in mechanical industry. The current investigation established a structural fabrication and testing procedure to understand the effects of various parameters on wear. The conclusion from the experimentation and optimization helps researchers to developed and create self-healing in metals. Originality/value - The previous research works were not focused on the study of tribological property of self-healing metal composite. With the best of author's knowledge, no one has reported tribological study, as well as optimization of parameters such as speed, load and sliding distance on wear in self-healing metals composite.
机译:目的 - 本研究的目的是调查开发的自我愈合AL6061复合材料的摩擦学性能,并优化了发达材料的增强摩擦性能的操作条件。设计/方法/方法 - 已经采用独特的步骤来通过刺穿具有和没有MOS2的低熔点焊料材料将砂浇铸的AL6061转换为自愈材料。基于Taguchi的L9正交阵列用于优化实验的数量,并分析操作参数的影响,例如速度,滑动距离和负载载荷。结果表明,通过刺穿低熔点合金,纸张显示了金属中的自愈和自修复。然后,负载对其他输入参数具有显着影响,以预测发达材料的磨损行为。此外,添加MOS_2不会影响开发材料的摩擦性能。该研究的结论是,发达的自我愈合AL6061具有巨大的机械工业潜力。研究限制/含义 - 由于室温下的原子较慢扩散速率非常慢,金属中自我愈合的概念是非常具有挑战性的。因此,鼓励研究人员探索其他新技术,以在金属中创造自我愈合。实际意义 - 自我愈合材料表明了在机械工业中使用的巨大潜力。目前的调查建立了结构制造和测试程序,以了解各种参数对磨损的影响。实验和优化的结论有助于研究人员在金属中开发和创造自我愈合。原创性/价值 - 以前的研究作品未侧重于自我愈合金属复合材料的摩擦学性质研究。凭借作者的知识,没有人报告了摩擦学研究,以及在自我愈合金属复合材料中磨损的速度,负荷和滑动距离等参数的优化。

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