Friction stir spot welding of recycled scrap thermoplastics

被引:0
作者
Iftikhar, Syed Haris [1 ]
Cherupurakal, Nizamudeen [1 ]
R., Krishnapriya [1 ]
Mourad, Abdel-Hamid Ismail [1 ,2 ,3 ]
机构
[1] Mechanical and Aerospace Engineering Department, College of Engineering, United Arab Emirates University, Al-Ain, P.O. Box
[2] National Water and Energy Center, United Arab Emirates University, Al Ain, P.O. Box
[3] On Leave from Mechanical Design Department, Faculty of Engineering, El Mataria, Helwan University, Cairo
关键词
Friction stir spot welding; Recycling; Scrap; Thermoplastics;
D O I
10.1016/j.ijlmm.2024.06.003
中图分类号
学科分类号
摘要
There is a real demand for sustainable lightweight structures because of the growing environmental concerns. One important solution is developing structures through recycled scrap/waste thermoplastic materials. The current work studies the friction stir spot weldability of recycled thermoplastics, which will help to analyze the potential of friction stir-based welding techniques towards developing these sustainable structures. The combined behavior of recycling-welding procedures is investigated, as they may cause degradations; to ensure that the base thermoplastic polymer's chemical, thermal, and mechanical properties are retained. Scrapped milk bottles made from HDPE material are used as a case study. The highest lap-shear load of 1528 N was achieved at the optimum welding conditions of 1600 rpm rotational speed, 1 mm plunge depth, and 60 s dwell time. Fractographic studies (macroscopic and SEM-based) suggested four types of fracture morphologies depending on welding conditions used. The DSC results showed no significant differences in melting temperature and crystalline content of the polymeric material. The TGA tests showed no significant thermal degradations. The FTIR analysis of all the samples (bottle, recycled sheet, weld material) exhibited characteristic HDPE peaks. All these results suggest combined-welding recycling had a minimal impact on the polymeric structure. Thus, friction stir spot welding (FSSW) technique joins recycled thermoplastic scrap/waste materials with high lap-shear load and without any significant polymer degradations. © 2024 The Authors
引用
收藏
页码:838 / 848
页数:10
相关论文
共 45 条
  • [11] Afrin N., Chen D.L., Cao X., Jahazi M., Microstructure and tensile properties of friction stir welded AZ31B magnesium alloy, Mater. Sci. Eng., A, 472, pp. 179-186, (2008)
  • [12] Chen G., Li H., Wang G., Guo Z., Zhang S., Dai Q., Wang X., Zhang G., Shi Q., Effects of pin thread on the in-process material flow behavior during friction stir welding: a computational fluid dynamics study, Int. J. Mach. Tool Manufact., 124, pp. 12-21, (2018)
  • [13] Yin Y.H., Sun N., North T.H., Hu S.S., Influence of tool design on mechanical properties of AZ31 friction stir spot welds, Sci. Technol. Weld. Join., 15, pp. 81-86, (2010)
  • [14] Iftikhar S.H., Mourad A.-H.I., Sheikh-Ahmad J., Almaskari F., Vincent S., A comprehensive review on optimal welding conditions for friction stir welding of thermoplastic polymers and their composites, Polymers, 13, (2021)
  • [15] Iftikhar S.H., Mourad A.-H.I., Sheikh-Ahmad J., An overview of friction stir welding of high-density polyethylene, 2020 Adv. Sci. Eng. Technol. Int, (2020)
  • [16] Iftikhar S.H., Mourad A.-H.I., Guessoum M., Numerical modeling of friction stir welding of thermoplastic materials - an overview, 2022 Adv. Sci. Eng. Technol. Int. Conf. ASET 2022, (2022)
  • [17] Yan Y., Shen Y., Zhang W., Guan W., Effects of friction stir spot welding parameters on morphology and mechanical property of modified cast nylon 6 joints produced by double-pin tool, Int. J. Adv. Manuf. Technol., 92, pp. 2511-2523, (2017)
  • [18] Iftikhar S.H., Abu Qudeiri J., Mourad A.-H.I., Adhesive reinforced friction stir welded thermoplastic tube-to-tubesheet hybrid joints, Polym. Test., 129, (2023)
  • [19] Singh R., Kumar V., Feo L., Fraternali F., Experimental investigations for mechanical and metallurgical properties of friction stir welded recycled dissimilar polymer materials with metal powder reinforcement, Composites, Part B, 103, pp. 90-97, (2016)
  • [20] Al-Bayaty S.A., Al-Uqaily R.A.H., Hameed S., Study of thermal degradation kinetics of high density polyethlyene (HDPE) by using TGA technique, AIP Conf. Proc., (2020)