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Original Articles

Reactive friction-stir processing of nanocomposites: effects of thermal history on microstructure–mechanical property relationships

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Pages 1776-1789 | Received 06 Feb 2017, Accepted 03 Apr 2017, Published online: 15 May 2017

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Read on this site (2)

Padmakumar A. Bajakke, Vinayak R. Malik & Anand S. Deshpande. (2019) Particulate metal matrix composites and their fabrication via friction stir processing – a review. Materials and Manufacturing Processes 34:8, pages 833-881.
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F. Khodabakhshi, M. Nosko & A. P. Gerlich. (2018) Dynamic restoration and crystallographic texture of a friction-stir processed Al–Mg–SiC surface nanocomposite. Materials Science and Technology 34:14, pages 1773-1791.
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Articles from other publishers (11)

A. Heidarzadeh, S. Mironov, R. Kaibyshev, G. Çam, A. Simar, A. Gerlich, F. Khodabakhshi, A. Mostafaei, D.P. Field, J.D. Robson, A. Deschamps & P.J. Withers. (2021) Friction stir welding/processing of metals and alloys: A comprehensive review on microstructural evolution. Progress in Materials Science 117, pages 100752.
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Xiaofeng Yu, Hua Wu & Wenbiao Gong. (2021) Evaluating the microstructure evolution and wear behavior of friction stir processed aluminum matrix surface composites with nano-sized SiC particles. Surface Topography: Metrology and Properties 9:1, pages 015028.
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S.S. Mirian Mehrian, M. Rahsepar, F. Khodabakhshi & A.P. Gerlich. (2021) Effects of friction stir processing on the microstructure, mechanical and corrosion behaviors of an aluminum-magnesium alloy. Surface and Coatings Technology 405, pages 126647.
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V.K. Bupesh Raja & Manoj Gupta. 2021. Encyclopedia of Materials: Composites. Encyclopedia of Materials: Composites 247 256 .
Sivanesh Prabhu M, Elaya Perumal A & Arulvel S. (2020) Development of multi-pass processed AA6082/SiCp surface composite using friction stir processing and its mechanical and tribology characterization. Surface and Coatings Technology 394, pages 125900.
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Hamed Aghajani Derazkola & Farzad Khodabakhshi. (2020) Development of fed friction-stir (FFS) process for dissimilar nanocomposite welding between AA2024 aluminum alloy and polycarbonate (PC). Journal of Manufacturing Processes 54, pages 262-273.
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M. Nazari, H. Eskandari & F. Khodabakhshi. (2019) Production and characterization of an advanced AA6061-Graphene-TiB2 hybrid surface nanocomposite by multi-pass friction stir processing. Surface and Coatings Technology 377, pages 124914.
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Amir Azarniya, Abolfazl Azarniya, Amir Abdollah‐zadeh, Hamid Reza Madaah Hosseini & Seeram Ramakrishna. (2019) In Situ Hybrid Aluminum Matrix Composites: A Review of Phase Transformations and Mechanical Aspects. Advanced Engineering Materials 21:7, pages 1801269.
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H. Aghajani Derazkola & F. Khodabakhshi. (2018) Intermetallic compounds (IMCs) formation during dissimilar friction-stir welding of AA5005 aluminum alloy to St-52 steel: numerical modeling and experimental study. The International Journal of Advanced Manufacturing Technology 100:9-12, pages 2401-2422.
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F. Khodabakhshi, B. Marzbanrad, H. Jahed & A.P. Gerlich. (2018) Interfacial bonding mechanisms between aluminum and titanium during cold gas spraying followed by friction-stir modification. Applied Surface Science 462, pages 739-752.
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Manu Srivastava, Sandeep Rathee, Sachin Maheshwari & Arshad Noor Siddiquee. (2018) Influence of multiple-passes on microstructure and mechanical properties of Al-Mg/SiC surface composites fabricated via underwater friction stir processing. Materials Research Express 5:6, pages 066511.
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