Microstructure, hardness, and wear resistance of AA5083/Ti3SiC2 composites fabricated via friction stir processing

被引:1
|
作者
Benamor, Abdessabour [1 ,2 ]
Chiker, Nabil [1 ]
Salhi, Merouane [3 ]
Haddad, Adel [1 ]
Hadji, Youcef [1 ]
Benamor, Hiba [4 ]
Hamzaoui, Billel [1 ]
Badji, Riad [2 ]
Hadji, Mohamed [1 ,2 ]
机构
[1] Univ Saad Dahlab Blida 1, Lab Etud & Rech Technol Industrielle LERTI, Soumaa Rd,BP 270, Blida, Algeria
[2] Res Ctr Ind Technol CRTI, POB 64, Algiers, Algeria
[3] Univ Saad Dahlab Blida1, Lab Energet Proc & Nanotechnol LPEN, Blida, Algeria
[4] Univ Medea, Fac Technol, Dept Proc Engn & Environm, Mat & Environm Lab, Medea, Algeria
关键词
Friction stir processing; Aluminum matrix composites; Wear; Tribology; MAX phases; Ti3SiC2; MECHANICAL-PROPERTIES; SURFACE COMPOSITE; MATRIX COMPOSITES; SLIDING WEAR; TRIBOLOGICAL PROPERTIES; REINFORCED ALUMINUM; DAMAGE MECHANISMS; TEMPERATURE-RANGE; MAX PHASES; BEHAVIOR;
D O I
10.1007/s00170-024-13051-7
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Herein, aluminum matrix composites were successfully fabricated with friction stir processing using the Al alloy 5083 as the matrix, and Ti3SiC2 MAX phase as the reinforcing particulates. The composites were fabricated using different tool rotational speeds and multi-pass approach. The microhardness and wear resistance of the AA5083/Ti3SiC2 composites were highly related to the processing parameters. The mechanical performance was directly related to the processing defects and particle distribution. Microstructural analysis using optical and scanning electron microscopy revealed that increasing the number of passes results in a more uniform distribution of Ti3SiC2 particles. The composites showed a wear rate reduction by one order of magnitude and a hardness increase from 80 to 140 Hv mean value. The wear mechanism of the AA5083 changed from severe adhesive to predominantly abrasive wear for the AA5083/Ti3SiC2 composites. Ti3SiC2 particles promoted the material transfer from the sliding counterpart; coupled with tribo-oxidation, anti-wear tribo layers were formed.
引用
收藏
页码:5979 / 5998
页数:20
相关论文
共 50 条
  • [41] Microstructure investigation, mechanical properties and wear behavior of Al 1050/SiC composites fabricated by friction stir processing (FSP)
    El-Mahallawy, Nahed A.
    Zoalfakar, Said H.
    Maboud, Ahmed Abdel Ghaffar Abdel
    MATERIALS RESEARCH EXPRESS, 2019, 6 (09)
  • [42] Microstructure, corrosion, and tribological performance of multilayered cylindrical AA5083 parts fabricated by modified friction stir deposition - Additive manufacturing
    Razmjoo, Hossein
    Mirsalehi, Seyyed Ehsan
    Abbasi-Nahr, Milad
    Navidi-Helan, Mohammad
    MATERIALS CHARACTERIZATION, 2025, 221
  • [43] Investigation on the wear resistance and mechanical properties of Al/Ti3SiC2 composites fabricated by the spark plasma sintering
    Zhou, Chaolan
    Ngai, Tungwai L.
    Kong, Lingbing
    MATERIALS TODAY COMMUNICATIONS, 2021, 27 (27):
  • [44] Development and characterization of Al5083-CNTs/SiC composites via friction stir processing
    Jain, Vikram Kumar S.
    Yazar, K. U.
    Muthukumaran, S.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2019, 798 : 82 - 92
  • [45] Microstructure and sliding wear characterization of Cu/TiB2 copper matrix composites fabricated via friction stir processing
    Dinaharan, I.
    Saravanakumar, S.
    Kalaiselvan, K.
    Gopalakrishnan, S.
    JOURNAL OF ASIAN CERAMIC SOCIETIES, 2017, 5 (03): : 295 - 303
  • [46] Friction and wear behavior of NiAl-10 wt%Ti3SiC2 composites
    Shi, Xiaoliang
    Wang, Mang
    Zhai, Wenzheng
    Zhu, Zhiwei
    Xu, Zengshi
    Zhang, Qiaoxin
    Song, Siyuan
    Yao, Jie
    ud Din, Abid Qamar
    WEAR, 2013, 303 (1-2) : 9 - 20
  • [47] Microstructure and wear behavior of spark plasma sintered Ti3SiC2 and Ti3SiC2-TiC composites
    Ghosh, Nidul C.
    Harimkar, Sandip P.
    CERAMICS INTERNATIONAL, 2013, 39 (04) : 4597 - 4607
  • [48] A STUDY ON THE INFLUENCE OF REINFORCEMENT VOLUME ON AA5083/(SiC-Gr) HYBRID SURFACE COMPOSITE DEVELOPED BY FRICTION STIR PROCESSING
    Bharti, Shalok
    Ghetiya, Nilesh D.
    Patel, Kaushik M.
    Saxena, Kuldeep K.
    ARCHIVES OF METALLURGY AND MATERIALS, 2023, 68 (02) : 625 - 629
  • [49] Processing and microstructure of Ti3SiC2/M(M=Ni or Co) composites
    Li, H
    Peng, LM
    Gong, M
    He, LH
    Zhao, JH
    Zhang, YF
    MATERIALS LETTERS, 2005, 59 (21) : 2647 - 2649
  • [50] Friction and wear properties of in situ (TiB2 + TiC)/Ti3SiC2 composites
    Yang, J.
    Gu, W.
    Pan, L. M.
    Song, K.
    Chen, X.
    Qiu, T.
    WEAR, 2011, 271 (11-12) : 2940 - 2946