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International Journal of Engineering Technology and Construction, 2021, 2(2); doi: 10.38007/IJETC.2021.020204.

Practical Teaching Reform of Metallic Materials Engineering Based on the Cultivation of Undergraduates' Ability of Innovation and Entrepreneurship

Author(s)

Salvatore Gaglio

Corresponding Author:
Salvatore Gaglio
Affiliation(s)

Free University of Berlin, Germany

Abstract

Innovation and entrepreneurship education is an important part of the current reform of higher education. In the higher education system, practical teaching and innovation and entrepreneurship education have similarities. Practical education contains innovation and entrepreneurship education, and innovation and entrepreneurship education can’t be separated from practical teaching. By building and improving the practical teaching system, enriching the content of practical teaching and reforming practical teaching methods, the students can broaden the horizon of practical learning. It improves the effectiveness and interest of practical learning, and finally realizes the education of cultivating and enhancing college students' innovative and entrepreneurial abilities.

Keywords

Practice Teaching Reform, Metal Materials Engineering, Practical Teaching Methods, Innovation and Entrepreneurship

Cite This Paper

Salvatore Gaglio. Practical Teaching Reform of Metallic Materials Engineering Based on the Cultivation of Undergraduates' Ability of Innovation and Entrepreneurship. International Journal of Engineering Technology and Construction (2021), Vol. 2, Issue 2: 44-51. https://doi.org/10.38007/IJETC.2021.020204.

References

[1] Bechtle S, Kumar M, Somerday B P, et al. Grain-boundary engineering markedly reduces susceptibility to intergranular hydrogen embrittlement in metallic materials. Acta Materialia, 2009, 57(14):4148-4157. https://doi.org/10.1016/j.actamat.2009.05.012

[2] Pan Q. Composite Flame Retardant, Flame Retardant Resin Composition, Composite Metal Substrate, Flame Retardant Electronic Material and Flame Retardant Engineering Plastic:, US20180072883. 2018.

[3] Shyam A, Allison J E, Szczepanski C J, et al. Small fatigue crack growth in metallic materials: A model and its application to engineering alloys. Acta Materialia, 2007, 55(19):6606-6616. https://doi.org/10.1016/j.actamat.2007.08.022

[4] Liu G, Zhou L. Surface Nanocrystallization Technique of the Engineering Metallic Materials. Nanoscience & Nanotechnology, 2006.

[5] Zhu X M, Lei M K. Surface engineering of biomedical metallic materials by plasma-based low-energy ion implantation. Current Applied Physics, 2005, 5(5):522-525. https://doi.org/10.1016/j.cap.2005.01.018

[6] Wang Y F, Wang Q, Zhao L P, et al. Study on Experimental Teaching Reform of Metal Material in the Background of Engineering Professional Certification. Guangzhou Chemical Industry, 2018.

[7] Guan Y, Luan J, Zhi-Hui L I, et al. Experimental Teaching System of Inorganic Non-metallic Materials Engineering Research and Practice. Education Teaching Forum, 2017.

[8] Jin-Long G E, Jiao Y H, Wang C H. Construction of Inorganic Non-metallic Materials Engineering in Local Application-oriented Universities. Yinshan Academic Journal, 2018.

[9] Dai C, Nie B, Zhang X. Construction of Undergraduate Application Talents:Yingkou Institute of Inorganic Non-metallic Materials Engineering Case. China Educational Technology & Equipment, 2016.

[10] Nakamura Y. Key Points on The Reliability Engineering:III: JSMS Database on Fatigue Strength of Metallic Materials and Effective Utilization. Journal of the Society of Materials Science Japan, 2016, 65(4):331-336. https://doi.org/10.2472/jsms.65.331

[11] Lahiri A K. Classification of Metallic Engineering Materials. 2017. https://doi.org/10.1007/978-981-10-4684-1_2

[12] Hashentuya M, Hashentuya M, Hashentuya M. Experimental study of tensile testing of metallic Materials in engineering mechanics// International Forum on Mechanical, Control and Automation. 2017. https://doi.org/10.2991/ifmca-16.2017.128

[13] Dong S, Wang Z, Wang Y, et al. Roll-to-Roll Manufacturing of Robust Superhydrophobic Coating on Metallic Engineering Materials.. Acs Appl Mater Interfaces, 2018, 10(2):2174. https://doi.org/10.1021/acsami.7b16251

[14] Lahiri A K. Classification of Metallic Engineering Materials// Applied Metallurgy and Corrosion Control. 2017. https://doi.org/10.1007/978-981-10-4684-1_2