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Wear Behavior of Aluminum Matrix Hybrid Composites Fabricated through Friction Stir Welding Process

机译:搅拌摩擦焊接制备的铝基杂化复合材料的磨损行为

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摘要

Effects of friction stir processing (FSP)parameters and reinforcements on the wear behavior of 6061-T6 based hybrid composites were investigated.A mathematical formulation was derived to calculate the wear volume loss of the composites.The experimental results were contrasted with the results of the proposed model.The influ-ences of sliding distance,tool traverse and rotational speeds,as well as graphite (Gr)and titanium carbide (TiC) volume fractions on the wear volume loss of the composites were also investigated using the prepared formulation. The results demonstrated that the wear volume loss of the composites significantly increased with increasing sliding distance,tool traverse speed,and rotational speed;while the wear volume loss decreased with increasing volume fraction of the reinforcements.A minimum wear volume loss for the hybrid composites with complex reinforcements was specified at the inclusion ratio of 50% TiC+50% Al2 O3 because of improved lubricant ability,as well as resist-ance to brittleness and wear.New possibilities to develop wear-resistant aluminum-based composites for different in-dustrial applications were proposed.
机译:研究了摩擦搅拌处理(FSP)参数和增强对6061-T6基杂化复合材料的耐磨行为的影响。得出数学制剂​​以计算复合材料的磨损体积损失。实验结果与结果形成鲜明对比还使用制备的制剂研究了推拉距离,刀具横向和旋转速度,以及石墨(GR)和石墨(GR)和碳化钛(TIC)体积分数的影响。结果表明,复合材料的磨损体积损失随着滑动距离,刀具横向速度和转速而显着增加;虽然磨损体积损失随着增强体积分数的增加而降低。混合复合材料的最小磨损体积损失复合增强剂以50%TiC + 50%AL2 O3的包合物,因为润滑剂能力改善,以及抗抗型和磨损的抗蚀剂。新的可能性,用于开发耐磨铝基复合材料,用于不同的水平提出了申请。

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  • 来源
    《钢铁研究学报(英文版)》 |2016年第10期|1119-1126|共8页
  • 作者单位

    Department of Mechanical and Metal Technologies,Technical Sciences,Gaziantep University,Gaziantep 27310, Gaziantep,Turkey;

    Department of Mechanical and Metal Technologies,Technical Sciences,Gaziantep University,Gaziantep 27310, Gaziantep,Turkey;

    Department of Mechanical Engineering,Wichita State University,Wichita 67260,KS,USA;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2024-01-26 17:06:22
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