PSI - Issue 47
Mario A. Sánchez Miranda et al. / Procedia Structural Integrity 47 (2023) 310–324 Author name / Structural Integrity Procedia 00 (2019) 000 – 000
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of polymers: Literature review, experimental results and empirical analysis, Mat. and Des . 2014 , 59, 344 351. [17] A. Zafar, M. Awang. S.R. Khan, Friction Stir Welding of Polymers: An Overview. In: Awang M. (eds), 2nd International Conference on Mechanical, Manufacturing and Process Plant Engineering. Lecture Notes in Mechanical Engineering. Springer, Singapore (2017), Doi:10.1007/978-981-10-4232-4_2. [18] S.K. Sahu et al., Friction stir welding of polypropylene sheet Eng. Sci. and Tech. an Int. J. 2018 , 21 (2), 245-254. [19] S. Eslami, P.J. Tavares, P.M.G.P. Moreira, Friction stir welding tooling for polymers: review and prospects Int. J. Adv. Manuf. Technol. 2017 . 89, 1677-1690. [20] Y. Huang et al., Friction stir welding/processing of polymers and polymer matrix composites, Comp. Part A: App. Sci. and Manuf. 2018 , 105, 235-257. [21] N. Mendes et al., Effect of friction stir welding parameters on morphology and strength of acrylonitrile butadiene styrene plate welds , Mat. and Des . 2014 , 58, 457-464. [22] N. Mendes et al., Morphology and strength of acrylonitrile butadiene styrene welds performed by robotic friction stir welding, Mat. and Des. 2014 , 64, 81-90. [23] E. Azarsa and A. Mostafapour, Experimental investigation on flexural behavior of friction stir welded high density polyethylene sheets, J. of Manuf. Proc. 2014 , 16(1), 149-155. [24] M. Moreno-Moreno et al., Mechanical and thermal properties of friction-stir welded joints of high-density polyethylene using a non-rotational shoulder tool, The Int. J. of Adv. Manuf. Tech. 2018 , 97, 2489-2499. [25] M. Aydin, Effects of welding parameters and preheating on the friction stir welding of UHMW polyethylene, Poly-Plast. Tech. and Eng . 2010 , 49, 595-601. [26] M. Hussain et al., Ultra-high-molecular-weight-polyethylene (UHMWPE) as a promising polymer material for biomedical applications: a concise review, Polym. 2020 , 12(2), 323. [27] A. Peacock, Handbook of polyethylene: structures: properties, and applications . Marcel Dekker inc, New York, 2000, ISBN: 0824795466 9780824795467. [28] V. Vijayan, P. Pokharel, Mk. Kang, S. Choi, Thermal and mechanical properties of e-beam irradiated butt fusion joint in high-density polyethylene pipes, Rad-Phys. and Chem . 2016 , 122, 108-116. [29] T. Bindal, R.K. Savena, S. Pandel, Investigating friction spin welding of thermoplastics in shear joint configuration, SN App. Scien. 2021 , 3, 178- [30] S.K. Sahu et al., Friction stir welding of polypropylene sheet, Eng. Sci. and Tech. an Int. J. 2018 , 21(2), 245-254. [31] B. Kusharjanta, R. Soenoko, A. Purnowidodo, Y.S. Irawan, Analysis of tensile strength, crystallinity, crystallite size, and thermal stability of Polypropylene joined by Friction Stir Welding, J. of App. Eng. Sci. 2021 , 1-6 open access [32] J.Y. Sheikh-Ahmad, D.S. Ali, S. Deveci, F. Almaskari, F. Jarrar, Friction stir welding of high-density polyethylene — Carbon black composite, J. of Mat. Proces. Tech. 2019 , 264, 402-413. [33] M. Pirizadeh, T, Azdast, S.R. Ahmadi, S.M. Shishavan, A. Bagheri, Friction stir welding of thermoplastics using a newly designed tool, Mat. and Desi., 2014 , 54, 342-347. [34] S. Eslami, T. Ramos, P.J. Tavares, P.M.G.P. Moreira, Shoulder design developments for FSW lap joints of dissimilar polymers, J. of Manuf. Proc. 2015 , 20(1), 15-23. [35] S. Eslami, T. Ramos, P.J. Tavares, P.M.G.P. Moreira, Effect of friction stir welding parameters with newly
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