Tạp chí Công nghiệp nông thôn

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Số phát hành: Tạp chí công nghiệp nông thôn số 47/2022

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Tài liệu tham khảo
  1. A. Abdollahzadeh, A. Shokuhfar, J.M.Cabrera, A. P.Zhilyaev, H. Omidvar(2018). In-situ nanocomposite in friction stir welding of 6061-T6 Aluminum alloy to AZ31 magnesium alloy. Journal of Materials Processing Technology. DOI: https://doi.org/10.1016/j.jmatprotec.2018.08. 025.
  2. W.M. Thomas, E.D. Nicholas, J.C. Needham, M.G. Murch, P.T. Smith, C.J. Dawes(1991). Improvements relating to friction welding, Patent WO9310935 (A1).
  3. R. S. Mishra and M. W. Mahoney (2007). Friction Stir Welding and Processing. ASM International.
  4. Güven İpekoğlu, Tevfik Küçükömeroğlu, Semih M Aktarer, D Murat Sekban4 and Gürel Çam (2019). Investigation of microstructure and mechanical properties of friction stir welded dissimilar St37/St52 joints. Materials Research Express. https://doi.org/10.1088/2053-1591/aafb9f.
  5. G. Buffa1, L. Fratini, V. Ruisi (2009). Friction stir welding of tailored joints for industrial applications. Int J Mater Form.DOI 10.1007/s12289-009-0579-5.
  6. L.Fratini, G.Buffa1,F. Micari, R. Shivpuri (2009). On the material flow in FSW of Tjoints: Influence of geometrical and technological parameters, Int J Adv Manuf Technol. DOI 10.1007/s00170-008-1836-3.
  7. T. V. Christy, D. Emmanuel Sam Franklin, R. Nelson and S. Mohanasundaram (2019). A Study on Friction Stir Welding of Al6061-ZrB2 Metal Matrix composites. Advances in Manufacturing Processes.
  8. https://doi.org/10.1007/978-981-13-1724-8_26
  9. T. Yasui, W.B. Tian, A. Hanai, T. Mori, K. Hirosawa, M. Fukumoto, Friction stir girth welding between aluminum and steel rods, Procedia Manufacturing, 15 (2018) 1376- 1381.
  10. Wang Deqing, Liu Shuhua, Cao Zhaoxia (2004). Study of friction stir welding of aluminum. Journal of Materials Science, pp. 1689 – 1693.
  11. L. Dubourg & P. Dacheux (2006). Design and properties of FSW tools: a literature review. 6th International Symposium of Friction Stir Welding From 10/10/2006 To 10/13/2006., St-Sauveur, Quénbec, Canada.
  12. Masaki Okane, Takaaki Shimizu, Toshiaki Yasui, and Masahiro Fukumoto (2018). Mechanistic factors influencing Fatigue Behavior of the A5052/SPC270C joints by fiction stir spot welding.
  13. Trần Văn Địch (2006). Đồ gá. NXB Khoa học và Kỹ thuật, Hà Nội.
  14. Nguyễn Quốc Manh (2021). Đặc điểm vết đứt gãy khi kiểm tra độ bền kéo liên kết hàn giáp mối giữa thép SS400 và hợp kim nhôm A5052 bằng quá trình hàn GMAW. Journal of Science and Technology, vol. 57 – No.3.
  15. Chengyong Wang, Yingxing Xie, Lijuan Zheng, Zhe Qin, Dewen Tang & Yuexian Song (2014). Research on the Chip Formation Mechanism during the high-speed milling of hardened steel. International Journal of Machine Tools & Manufacture 79 (2014) 31–48.
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TS. Nguyễn Chung Thông; PGS. TS. Nguyễn Xuân Thiết - Khoa Cơ - Điện, Học viện Nông nghiệp Việt Nam; PGS.TS. Lê Minh Lư; ThS. Nguyễn Thị Hạnh Nguyên - Khoa Cơ – Điện, Học viện Nông nghiệp Việt Nam

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