Improved Friction and Wear Properties of Al6061-Matrix Composites Reinforced by Cu-Ni Double-Layer-Coated Carbon Fibers

The friction and wear properties of an Al6061 alloy reinforced with carbon fibers (CF) modified with Cu-Ni bimetallic layers were researched. Cu-Ni double layers were applied to the CF by electroless plating and Al6061-matrix composites were prepared by powder metallurgy technology. The metal-CF/Al...

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Main Authors: Shuhan Dong, Huiyong Yuan, Xiaochao Cheng, Xue Zhao, Mingxu Yang, Yongzhe Fan, Xiaoming Cao
Format: Article
Language:English
Published: MDPI AG 2020-11-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/10/11/1542
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spelling doaj-037cbcd622504453bd012c9b5c7caa6f2020-11-25T04:01:29ZengMDPI AGMetals2075-47012020-11-01101542154210.3390/met10111542Improved Friction and Wear Properties of Al6061-Matrix Composites Reinforced by Cu-Ni Double-Layer-Coated Carbon FibersShuhan Dong0Huiyong Yuan1Xiaochao Cheng2Xue Zhao3Mingxu Yang4Yongzhe Fan5Xiaoming Cao6School of Materials Science and Engineering, Hebei University of Technology, 29 Guangrong Road, Tianjin 300132, ChinaBeijing Sunwise Intelligent Technology Co. Ltd., 16 Nansan Street, Zhongguancun, Beijing 100080, ChinaSchool of Materials Science and Engineering, Hebei University of Technology, 29 Guangrong Road, Tianjin 300132, ChinaSchool of Materials Science and Engineering, Hebei University of Technology, 29 Guangrong Road, Tianjin 300132, ChinaSchool of Materials Science and Engineering, Hebei University of Technology, 29 Guangrong Road, Tianjin 300132, ChinaSchool of Materials Science and Engineering, Hebei University of Technology, 29 Guangrong Road, Tianjin 300132, ChinaSchool of Materials Science and Engineering, Hebei University of Technology, 29 Guangrong Road, Tianjin 300132, ChinaThe friction and wear properties of an Al6061 alloy reinforced with carbon fibers (CF) modified with Cu-Ni bimetallic layers were researched. Cu-Ni double layers were applied to the CF by electroless plating and Al6061-matrix composites were prepared by powder metallurgy technology. The metal-CF/Al interfaces and post-dry-wear-testing wear loss weights, friction coefficients, worn surfaces, and wear debris were characterized. After T6 heat treatment, the interfacial bonding mechanism of Cu-Ni-CF changed from mechanical bonding to diffusion bonding and showed improved interfacial bonding strength because the Cu transition layer reduced the fiber damage caused by Ni diffusion. The metal–CF interfacial bonding strongly influenced the composite’s tribological properties. Compared to the Ni-CF/Al and Cu-CF/Al composites, the Cu-Ni-CF/Al composite showed the highest hardness, the lowest friction coefficient and wear rate, and the best load-carrying capacity. The wear mechanisms of Cu-Ni-CF/Al composite are mainly slight abrasive wear and adhesive wear.https://www.mdpi.com/2075-4701/10/11/1542friction and wear propertiesAl6061-matrix compositesCu-Ni bimetallic layerscarbon fibersdiffusion bonding
collection DOAJ
language English
format Article
sources DOAJ
author Shuhan Dong
Huiyong Yuan
Xiaochao Cheng
Xue Zhao
Mingxu Yang
Yongzhe Fan
Xiaoming Cao
spellingShingle Shuhan Dong
Huiyong Yuan
Xiaochao Cheng
Xue Zhao
Mingxu Yang
Yongzhe Fan
Xiaoming Cao
Improved Friction and Wear Properties of Al6061-Matrix Composites Reinforced by Cu-Ni Double-Layer-Coated Carbon Fibers
Metals
friction and wear properties
Al6061-matrix composites
Cu-Ni bimetallic layers
carbon fibers
diffusion bonding
author_facet Shuhan Dong
Huiyong Yuan
Xiaochao Cheng
Xue Zhao
Mingxu Yang
Yongzhe Fan
Xiaoming Cao
author_sort Shuhan Dong
title Improved Friction and Wear Properties of Al6061-Matrix Composites Reinforced by Cu-Ni Double-Layer-Coated Carbon Fibers
title_short Improved Friction and Wear Properties of Al6061-Matrix Composites Reinforced by Cu-Ni Double-Layer-Coated Carbon Fibers
title_full Improved Friction and Wear Properties of Al6061-Matrix Composites Reinforced by Cu-Ni Double-Layer-Coated Carbon Fibers
title_fullStr Improved Friction and Wear Properties of Al6061-Matrix Composites Reinforced by Cu-Ni Double-Layer-Coated Carbon Fibers
title_full_unstemmed Improved Friction and Wear Properties of Al6061-Matrix Composites Reinforced by Cu-Ni Double-Layer-Coated Carbon Fibers
title_sort improved friction and wear properties of al6061-matrix composites reinforced by cu-ni double-layer-coated carbon fibers
publisher MDPI AG
series Metals
issn 2075-4701
publishDate 2020-11-01
description The friction and wear properties of an Al6061 alloy reinforced with carbon fibers (CF) modified with Cu-Ni bimetallic layers were researched. Cu-Ni double layers were applied to the CF by electroless plating and Al6061-matrix composites were prepared by powder metallurgy technology. The metal-CF/Al interfaces and post-dry-wear-testing wear loss weights, friction coefficients, worn surfaces, and wear debris were characterized. After T6 heat treatment, the interfacial bonding mechanism of Cu-Ni-CF changed from mechanical bonding to diffusion bonding and showed improved interfacial bonding strength because the Cu transition layer reduced the fiber damage caused by Ni diffusion. The metal–CF interfacial bonding strongly influenced the composite’s tribological properties. Compared to the Ni-CF/Al and Cu-CF/Al composites, the Cu-Ni-CF/Al composite showed the highest hardness, the lowest friction coefficient and wear rate, and the best load-carrying capacity. The wear mechanisms of Cu-Ni-CF/Al composite are mainly slight abrasive wear and adhesive wear.
topic friction and wear properties
Al6061-matrix composites
Cu-Ni bimetallic layers
carbon fibers
diffusion bonding
url https://www.mdpi.com/2075-4701/10/11/1542
work_keys_str_mv AT shuhandong improvedfrictionandwearpropertiesofal6061matrixcompositesreinforcedbycunidoublelayercoatedcarbonfibers
AT huiyongyuan improvedfrictionandwearpropertiesofal6061matrixcompositesreinforcedbycunidoublelayercoatedcarbonfibers
AT xiaochaocheng improvedfrictionandwearpropertiesofal6061matrixcompositesreinforcedbycunidoublelayercoatedcarbonfibers
AT xuezhao improvedfrictionandwearpropertiesofal6061matrixcompositesreinforcedbycunidoublelayercoatedcarbonfibers
AT mingxuyang improvedfrictionandwearpropertiesofal6061matrixcompositesreinforcedbycunidoublelayercoatedcarbonfibers
AT yongzhefan improvedfrictionandwearpropertiesofal6061matrixcompositesreinforcedbycunidoublelayercoatedcarbonfibers
AT xiaomingcao improvedfrictionandwearpropertiesofal6061matrixcompositesreinforcedbycunidoublelayercoatedcarbonfibers
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