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Developing Magnesium Alloys with a Combination of Strength and Ductility Based on Friction Stir-Based Technologies

Developing Magnesium Alloys with a Combination of Strength and Ductility Based on Friction Stir-Based Technologies
Developing Magnesium Alloys with a Combination of Strength and Ductility Based on Friction Stir-Based Technologies
Some of the key data for the thesis "Developing Magnesium Alloys with a Combination of Strength and Ductility Based on Friction Stir-Based Technologies", including SEM/EDS/EBSD, and TEM data. They are stored in the .oipx format which can be opened by Aztec, .cpr which can be opened by AztecCrystal, and .csv and . tiff as spreadsheets and images. Part of the data is associated with the following publications: [1] X. Zhao, X. Zeng, L. Yuan, J. Gandra, Q. Hayat, M. Bai, W.M. Rainforth, D. Guan, A novel approach for producing Mg-3Al-1Zn-0.2 Mn alloy wire with a promising combination of strength and ductility using CoreFlowTM, Scripta Materialia 227 (2023) 115301. [2] X. Zhao, Y. Xie, J. Gandra, M. Murphy, W.M. Rainforth, D. Guan, A Succinct Method to Recycle WE43 Mg Alloys—From Wasted Chips to Consolidated Billets, TMS Annual Meeting & Exhibition, Springer, (2024), 151-153. [3] X. Zhao, D. Olden, B. Williams, A. Pariyar, D. Zhang, M. Murphy, P. Reed, P. Allison, B. Jordon, J. Qi, W. M. Rainforth, D. Guan, Grain growth stagnation at 525° C by nanoparticles in a solid-state additively manufactured Mg-4Y-3RE alloy, Journal of Magnesium and Alloys (2024), 4976-4987.
University of Southampton
Zhao, Xingjian
58a8bb85-92c9-4e89-b4af-43d57fbe865f
Guan, Dikai
d20c4acc-342a-43fa-a204-7283f0cc33bf
Rainforth, W. Mark
7226983c-4ca1-4f0a-8191-02e3424dc98f
Reed, Philippa
8b79d87f-3288-4167-bcfc-c1de4b93ce17
Zhao, Xingjian
58a8bb85-92c9-4e89-b4af-43d57fbe865f
Guan, Dikai
d20c4acc-342a-43fa-a204-7283f0cc33bf
Rainforth, W. Mark
7226983c-4ca1-4f0a-8191-02e3424dc98f
Reed, Philippa
8b79d87f-3288-4167-bcfc-c1de4b93ce17

Zhao, Xingjian (2025) Developing Magnesium Alloys with a Combination of Strength and Ductility Based on Friction Stir-Based Technologies. University of Southampton doi:10.5258/SOTON/D3682 [Dataset]

Record type: Dataset

Abstract

Some of the key data for the thesis "Developing Magnesium Alloys with a Combination of Strength and Ductility Based on Friction Stir-Based Technologies", including SEM/EDS/EBSD, and TEM data. They are stored in the .oipx format which can be opened by Aztec, .cpr which can be opened by AztecCrystal, and .csv and . tiff as spreadsheets and images. Part of the data is associated with the following publications: [1] X. Zhao, X. Zeng, L. Yuan, J. Gandra, Q. Hayat, M. Bai, W.M. Rainforth, D. Guan, A novel approach for producing Mg-3Al-1Zn-0.2 Mn alloy wire with a promising combination of strength and ductility using CoreFlowTM, Scripta Materialia 227 (2023) 115301. [2] X. Zhao, Y. Xie, J. Gandra, M. Murphy, W.M. Rainforth, D. Guan, A Succinct Method to Recycle WE43 Mg Alloys—From Wasted Chips to Consolidated Billets, TMS Annual Meeting & Exhibition, Springer, (2024), 151-153. [3] X. Zhao, D. Olden, B. Williams, A. Pariyar, D. Zhang, M. Murphy, P. Reed, P. Allison, B. Jordon, J. Qi, W. M. Rainforth, D. Guan, Grain growth stagnation at 525° C by nanoparticles in a solid-state additively manufactured Mg-4Y-3RE alloy, Journal of Magnesium and Alloys (2024), 4976-4987.

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Published date: 2025

Identifiers

Local EPrints ID: 505102
URI: http://eprints.soton.ac.uk/id/eprint/505102
PURE UUID: b2313a33-f18a-424e-839c-1803591dcf82
ORCID for Xingjian Zhao: ORCID iD orcid.org/0000-0001-5909-3043
ORCID for Dikai Guan: ORCID iD orcid.org/0000-0002-3953-2878
ORCID for Philippa Reed: ORCID iD orcid.org/0000-0002-2258-0347

Catalogue record

Date deposited: 29 Sep 2025 16:58
Last modified: 30 Sep 2025 02:15

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Contributors

Creator: Xingjian Zhao ORCID iD
Research team head: Dikai Guan ORCID iD
Research team head: W. Mark Rainforth
Research team head: Philippa Reed ORCID iD

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