Dr. Axinte Eugen
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Dr. Axinte Eugen

Professor
Gheorghe Asachi Technical University of Iasi, Romania


Highest Degree
Ph.D. in Industrial Engineering from Gheorghe Asachi Technical University of Iasi, Romania

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Biography

Eugen Axinte got his PhD in 1998 from “Gheorghe Asachi” Technical University of Iasi-Romania . He is now a full Professor of Machine Manufacturing Department , Director of Doctoral School of Machine Manufacturing and Industrial Management Faculty and member of The Senate of Gheorghe Asachi Technical University of Iasi, Romania.

His research interests include the applications of new materials (metallic glasses, glass , glass composites, ceramics ) in industrial practice . He has published more than 100 papers in journals, books and conference proceedings, including papers in journals indexed in the Web of Science – Journal Citation Reports such as Materials and Design , Journal of Non Crystalline Solids , Journal of Applied Physics, Zeitschrift fÊr Angewandte Mathematik und Physik (ZAMP). He has also published 12 scientific books and faculty courses.

In the year 2012 he was also organizer of a International Scientific Exploratory Workshop entitled Opportunities ,challenges and perspectives of using of the new materials ( graphen, glasses, metallic glasses, fullerenes) in industry.

He is on the editorial board of several journals including Materials & Design by Elsevier, Recent Patents on Materials Science by Bentham Science Publishers , Modern Mechanical Engineering by Scientific Research Publishing - SCIRP .

He has participated in the scientific committee of several conferences and serves as a reviewer in some high impact factor journals : Materials & Design, Materials Science and Engineering B, Journal of Alloys and Compounds , Solar Energy , International Journal of Thermal Sciences., Journal of Materials Processing Technology, Sensors .

In the years 2010, 2011 ,2012 , 2013 and 2014 he also got Awards for results of scientific research of Executive Agency for Higher Education, Research, Development and Innovation Funding (UEFISCDI)-Romania.

Area of Interest:

Physical Science Engineering
100%
Manufacturing
62%
Novel Materials
90%
Mechanical Engineering
75%
Industrial Engineering
55%

Research Publications in Numbers

Books
0
Chapters
1
Articles
38
Abstracts
4

Selected Publications

  1. Niu, Z., Y. Xie, E. Axinte, J. Xu and Y. Wang, 2020. Development and characterization of novel Ni-rich high-entropy alloys. J. Alloys Compd., Vol. 846. 10.1016/J.JALLCOM.2020.156342.
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  2. Fu, W.J., W. Zheng, E. Axinte, Y.J. Huang and T.L. Lee et al., 2020. Tensile deformation mechanism of a bulk metallic glass matrix composite using in situ neutron diffraction. J. Non-Cryst. Solids, Vol. 546. 10.1016/J.JNONCRYSOL.2020.120267.
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  3. Aliyu, A.A., A.M. Abdul-Rani, T.V.V.L.N. Rao, E. Axinte and S. Hastuty et al., 2019. Characterization, adhesion strength and in-vitro cytotoxicity investigation of hydroxyapatite coating synthesized on Zr-based BMG by electro discharge process. Surf. Coat. Technol., 370: 213-226.
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  4. Aliyu, A.A., A.M. Abdul-Rani, T.L. Ginta, C. Prakash, T.V.V.L.N. Rao, E. Axinte and S. Ali, 2019. Synthesis and Characterization of Bioceramic Oxide Coating on Zr-Ti-Cu-Ni-Be BMG by Electro Discharge Process. In: Advances in Manufacturing II. MANUFACTURING 2019. Lecture Notes in Mechanical Engineering, Diering, M., M. Wieczorowski, M. Harugade and A. Pereira (Eds.), Springer International Publishing, Cham, ISBN: 978-3-030-16942-8, pp: 518-531.
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  5. Zhai, S., E. Axinte, S. Wang, W. Wang, Q. Xing and Y. Wang, 2018. Effects of pre-compression on the microstructure, mechanical properties and corrosion resistance of Cu47.5 Zr47.5Al5 bulk metallic glasses. J. Non-Cryst. Solids, 481: 383-390.
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  6. Axinte, E., Y. Wang, A.M. Abdul-Rani, A.A.A. Aliyu, O. Andronic, C. Stegaru and A. Bofu, 2018. An environmental friendly model for materials substitution in a fiberglass reinforced polyester composite. MATEC Web Conf., Vol. 178. 10.1051/MATECCONF/201817804013.
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  7. Shang, C., E. Axinte, W. Ge, Z. Zhang and Y. Wang, 2017. High-entropy alloy coatings with excellent mechanical, corrosion resistance and magnetic properties prepared by mechanical alloying and hot pressing sintering. Surf. Interfaces, 9: 36-43.
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  8. Shang, C., E. Axinte, J. Sun, X. Li and P. Li et al., 2017. CoCrFeNi(W1−xMox) high-entropy alloy coatings with excellent mechanical properties and corrosion resistance prepared by mechanical alloying and hot pressing sintering. Mater. Des., 117: 193-202.
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  9. Ge, W., B. Li, E. Axinte, Z. Zhang, C. Shang and Y. Wang, 2017. Crystallization and corrosion resistance in different aqueous solutions of Zr50.7Ni28Cu9Al12.3 amorphous alloy and its crystallization counterparts. JOM, 69: 776-783.
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  10. Axinte, E., A. Bofu, Y. Wang, A.M. Abdul-Rani and A.A.A. Aliyu, 2017. An overview on the conventional and nonconventional methods for manufacturing the metallic glasses. MATEC Web Conf., Vol. 112. 10.1051/MATECCONF/201711203003.
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  11. Aliyu, A.A.A., A.M. Abdul-Rani, T.L. Ginta, C. Prakash, E. Axinte and R. Fua-Nizan, 2017. Investigation of nanoporosities fabricated on metallic glass surface by hydroxyapatite mixed EDM for orthopedic application. Mal. J. Fund. Appl. Sci., 13: 523-528.
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  12. Aliyu, A.A., A.M. Abdul-Rani, T.L. Ginta, C. Prakash, E. Axinte, M.A. Razak and S. Ali, 2017. A review of additive mixed-electric discharge machining: Current status and future perspectives for surface modification of biomedical implants. Adv. Mater. Sci. Eng., Vol. 2017. 10.1155/2017/8723239.
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  13. Zhang, Z., E. Axinte, W. Ge, C. Shang and Y. Wang, 2016. Microstructure, mechanical properties and corrosion resistance of CuZrY/Al, Ti, Hf series high-entropy alloys. Mater. Des., 108: 106-113.
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  14. Xu, J., E. Axinte, Z. Zhao and Y. Wang, 2016. Effect of C and Ce addition on the microstructure and magnetic property of the mechanically alloyed FeSiBAlNi high entropy alloys. J. Magn. Magn. Mater., 414: 59-68.
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  15. Tabacaru, L.L., E. Axinte and G. Musca, 2016. Experimental research on the elastic deformation mode of S235JR rolled steel fastened between the centers of a universal lathe. IOP Conf. Ser.: Mater. Sci. Eng., Vol. 161. 10.1088/1757-899X/161/1/012050.
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  16. Axinte, E.M., Y. Wang, L.L. Tabacaru and N. Radwan, 2016. Shear banding in metallic glasses: Major weakness or potential advantage? Recent Pat. Mater. Sci., 9: 2-19.
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  17. Sun, Z., Q. Xing, E. Axinte, W. Ge, J. Leng and Y. Wang, 2015. Formation of highly thermal stable Al88Ni6Y6 amorphous composite by graphene addition design. Mater. Des., 81: 59-64.
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  18. Zhao, L.Z., R.J. Xue, Z.G. Zhu, Z. Lu, E. Axinte, W.H. Wang and H.Y. Bai, 2014. Evaluation of flow units and free volumes in metallic glasses. J. Appl. Phys., Vol. 116. 10.1063/1.4895586.
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  19. Cao, C.R., D.W. Ding, D.Q. Zhao, E. Axinte, H.Y. Bai and W.H. Wang, 2014. Correlation between glass transition temperature and melting temperature in metallic glasses. Mater. Des., 60: 576-579.
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  20. Ioan, C.M., U. Marius, A. Eugen and A. Dragos, 2013. Researches about the influence of surfaces roughness on resistance spot welding (RSW) results. Int. J. Manag., Eng., 3: 567-574.
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  21. Huo, J.T., D.Q. Zhao, H.Y. Bai, E. Axinte and W.H. Wang, 2013. Giant magnetocaloric effect in tm-based bulk metallic glasses. J. Non-Cryst. Solids, 359: 1-4.
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  22. Edwards, K.L., E. Axinte and L.L. Tabacaru, 2013. A critical study of the emergence of glass and glassy metals as “green” materials. Mater. Des., 50: 713-723.
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  23. Chirileanu, M., N. Georgiana and E. Axinte, 2013. Researches on the failure modes under tensile forces of the resistance spot welding (rsw) joints. Stainless Steel, 3: 396-400.
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  24. Axinte, E.M and P.I.M. Chirileanu, 2012. Recent progress in the industrialization of metallic glasses. Recent Pat. Mater. Sci., 5: 213-221.
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  25. Axinte, E., 2012. Metallic glasses from alchemy to pure science: present and future of design, processing and applications of glassy metals. Mater. Des., 35: 518-556.
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  26. Axinte, E., 2011. Glasses as engineering materials: a review. Mater. Des., 32: 1717-1732.
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  27. Fetecau, C., M.A. Imran, E. Axinte and C. Fetecau, 2010. On the energetic balance for the flow of an oldroyd-b fluid induced by a constantly accelerating plate. Z. Angew. Math. Phys., 61: 1085-1095.
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  28. Negoescu, F., E. Axinte, G. Nagit and A. Iosub, 2009. Innovative solutions creates environmental advantages. Environ. Eng. Manag. J., 8: 1191-1197.
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