Integrated Taguchi-PCA-GRA based multi objective optimization of tube projection and radial clearance for friction stir welded heat exchanger tube-to-tube sheet joints

dc.contributor.authorDinu Thomas Thekkuden
dc.contributor.authorMuhammad M. Sherif
dc.contributor.authorMohammad Alkhedher
dc.contributor.authorSyed Haris Iftikhar
dc.contributor.authorAbdel-Hamid Ismail Mourad
dc.date.accessioned2024-09-21T07:21:07Z
dc.date.available2024-09-21T07:21:07Z
dc.date.issued2024-06-04
dc.descriptionThe shell and tube heat exchanger (STHE) market size is anticipated to expand at a 7.5% compound annual growth rate (CAGR) from 2022 to 2029, rising from USD 16.64 billion to USD 27.55 billion. In comparison to various types of heat exchangers such as plate-fin heat exchanger, air coolers, cooling towers and others, the STHEs are dominated with 33% of reliability and use. Industries dealing with chemicals, petrochemicals, food and beverages, HVAC and refrigeration, pulp and paper, power generation heavily use the STHEs. Due to the high market demand and wide-scale applicability of STHEs, manufacturers and researchers have gained interest to understand and optimize their manufacturing processes, maintenance and operation conditions
dc.description.abstractLeak proof tube-to-tube sheet joints are mandatory for the optimal operation and longevity of the shell and tube heat exchanger. Tube-to-tube sheet joints play a crucial role as fluid barriers, ensuring effective separation between the tube and shell side fluids within shell and tube heat exchangers. Nonconventional friction stir welding, known for imparting less residual stresses, is not commercially used for the fabrication of tube-to-tube sheet joints due to complex joint configuration and geometrical limitations. An extensive study on friction stir welding considering the geometrical parameters of tubeto-tube sheet arrangement is highly demanded. This research examined the mutual influence of radial clearance ranging from 0 mm to 0.5 mm and tube projection lying from 1 mm to 2 mm in friction stir welding of tube to tube sheet configuration on the pull-out strength, extension and, hardness at the stirring and fusion zones. Optimum radial clearance and tube projection for achieving high mechanical weld properties was estimated using multi-objective integrated Taguchi-PCA-GRA optimization. The result proves that the friction stir welded joint is capable of achieving joint strength close to the tungsten inert gas welded joint. The optimum parameters are 2 mm for tube projection and 0 mm for radial clearance to achieve maximum strength and weld penetration, while minimizing hardness at both stir zone and fusion zone. The findings of this research proved the adaptability of friction stir welding for the fabrication of tube-to-tube sheet joints with the right choice of tube projection and radial clearance. Keywords Heat exchanger ,Leak path , Pull-out strength , Friction stir welding, Tungsten inert gas welding
dc.identifier.citationThekkuden, D. T., Sherif, M. M., Alkhedher, M., Iftikhar, S. H., & Mourad, A. H. I. (2024). Integrated Taguchi-PCA-GRA based multi objective optimization of tube projection and radial clearance for friction stir welded heat exchanger tube-to-tube sheet joints. International Journal of Lightweight Materials and Manufacture.
dc.identifier.doihttps://doi.org/10.1016/j.ijlmm.2024.05.010
dc.identifier.urihttps://repository.adu.ac.ae/handle/1/6498
dc.language.isoen
dc.publisherElsevier
dc.titleIntegrated Taguchi-PCA-GRA based multi objective optimization of tube projection and radial clearance for friction stir welded heat exchanger tube-to-tube sheet joints
dc.typeArticle

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