Personal profile
Personal profile
He has won the MIT-Imperial Global Fellow, Imperial CSC Scholarship, ICEPT Best Paper Award and other awards. Mainly engaged in high entropy alloy, solder alloy, metal material solidification and heterogeneous nucleation; Microstructure and properties characterization of new metal materials; Research on EBSD technology development and application. He has published more than 20 papers in journals such as Nat. Commun., Acta Mater., Scripta Mater. He has presided over 8 national scientific research projects such as natural Science Foundation, common technology, domain fund, and National Defense Science and Technology Strategic Pilot Program. Journal reviewers Scripta Mater, J. Alloy Compd. 1 international patent application.
Research Interests
High entropy alloy, solder alloy, solidification and heterogeneous nucleation of metal materials; Microstructure and properties characterization of new metal materials; EBSD technology development and application
Education
Funded by the full scholarship of Imperial CSC, he received his doctorate degree from Imperial London in 2017 and his master degree from Tianjin University in 2013.
Professional Experience
January 2018 joined Beijing Institute of Technology
Research Achievement
1. Z.L. Ma *, S.A. Belyakov, K. Sweatman, T. Nishimura, T. Nishimura, C.M. Gourlay. Harnessing heterogeneous nucleation to control tin orientations in electronic interconnections, Nature Communications, 8 (2017) 1916
2. Z.L. Ma *, J.W. Xian, S.A. Belyakov, C.M. Gourlay. Nucleation and twinning in tin droplet solidification on single-crystal intermetallic compounds, Acta Materialia, 150 (2018) 281-294
3. Z.L. Ma *, C. Li, S.Y, Yang, X.W. Cheng, Controlling βSn grain orientations in electronic interconnects with single-crystal Cobalt substrates, Acta Materialia, 194 (2020) 422-436
4. J.W. Xian, Z.L. Ma, S.A. Belyakov, M. Ollivier, C.M. Gourlay, Nucleation of tin on the Cu6Sn5 layer in electronic interconnections, Acta Materialia, 123 (2017) 404-415
5. Z.Q. Xu, Z.L. Ma *, Y. Tan, X.W. Cheng, Designing TiVNbTaSi refractory high-entropy alloys with ambient tensile ductility, Scripta Materialia, 206(2022) 114230.
6. G.H. Xia, Z.L. Ma *, Z.Q. Xu, M. Wang, X.W. Cheng, H.N. Cai, Novel high-entropy alloys with high-density ε-D019 and abnormal phase transformation, Scripta Materialia, 2199(2021) 113893.
7. M. Wang, Z.L. Ma *, Z.Q. Xu, X.W. Cheng, Designing V NbMoTa refractory high-entropy alloys with improved properties for high-temperature applications, Scripta Materialia, 191(2021) 131-136.
更多论文发表情况请参阅:https://www.researchgate.net/profile/Zhaolong-Ma
2. Z.L. Ma *, J.W. Xian, S.A. Belyakov, C.M. Gourlay. Nucleation and twinning in tin droplet solidification on single-crystal intermetallic compounds, Acta Materialia, 150 (2018) 281-294
3. Z.L. Ma *, C. Li, S.Y, Yang, X.W. Cheng, Controlling βSn grain orientations in electronic interconnects with single-crystal Cobalt substrates, Acta Materialia, 194 (2020) 422-436
4. J.W. Xian, Z.L. Ma, S.A. Belyakov, M. Ollivier, C.M. Gourlay, Nucleation of tin on the Cu6Sn5 layer in electronic interconnections, Acta Materialia, 123 (2017) 404-415
5. Z.Q. Xu, Z.L. Ma *, Y. Tan, X.W. Cheng, Designing TiVNbTaSi refractory high-entropy alloys with ambient tensile ductility, Scripta Materialia, 206(2022) 114230.
6. G.H. Xia, Z.L. Ma *, Z.Q. Xu, M. Wang, X.W. Cheng, H.N. Cai, Novel high-entropy alloys with high-density ε-D019 and abnormal phase transformation, Scripta Materialia, 2199(2021) 113893.
7. M. Wang, Z.L. Ma *, Z.Q. Xu, X.W. Cheng, Designing V NbMoTa refractory high-entropy alloys with improved properties for high-temperature applications, Scripta Materialia, 191(2021) 131-136.
更多论文发表情况请参阅:https://www.researchgate.net/profile/Zhaolong-Ma
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- 1 Similar Profiles
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Anisotropic phase transformation of Cu6Sn5 driven by electromigration in lead-free solder joints
Li, C., Zhang, H. Z., Li, X. Y., Ma, Z. L. & Cheng, X. W., 1 Apr 2026, In: Scripta Materialia. 275, 117154.Research output: Contribution to journal › Article › peer-review
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A two-step high-throughput design strategy of refractory medium-entropy composites with strength-plasticity synergy from room temperature to 2000 °C
Li, X., Ma, Z., Liu, Y., Li, H. & Cheng, X., 10 Sept 2026, In: Journal of Materials Science and Technology. 265, p. 165-176 12 p.Research output: Contribution to journal › Article › peer-review
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Computational-driven design of Ti-based medium entropy alloy for enhanced high-temperature performance above 600 °C
Zhang, R., Ma, Z., Li, X., Li, H. & Cheng, X., Jan 2026, In: Science China Materials. 69, 1, p. 327-338 12 p.Research output: Contribution to journal › Article › peer-review
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Revealing the dynamic property and energy-release characteristic of WxNbTiZr medium entropy alloys
Shen, Z. D., Ma, Z. L., Guo, S. K., Li, C. & Cheng, X. W., 10 Jan 2026, In: Journal of Materials Science and Technology. 241, p. 189-199 11 p.Research output: Contribution to journal › Article › peer-review
2 Citations (Scopus) -
Computational design of castable WTaNb-C eutectic refractory medium-entropy composite with ultrahigh strength at 2000°C
Liu, Y. X., Ma, Z. L. & Cheng, X. W., 2025, In: Materials Research Letters. 13, 9, p. 981-991 11 p.Research output: Contribution to journal › Article › peer-review
Open Access