eprintid: 19321 rev_number: 2 eprint_status: archive userid: 1 dir: disk0/00/01/93/21 datestamp: 2024-06-04 14:11:47 lastmod: 2024-06-04 14:11:47 status_changed: 2024-06-04 14:05:26 type: article metadata_visibility: show creators_name: Baharudin, B.A. creators_name: Mustapha, M. creators_name: Ismail, A. creators_name: Zulkipli, F.N. creators_name: Ayob, F. creators_name: Ahmad, A. title: Microhardness and Process Parameter Optimization of Friction Stir Welding on an AA5052 Thin Plate ispublished: pub note: cited By 1 abstract: The most important advancement in metal joining technique is FSW, which is utilized to weld high strength aluminium alloys. The joining process parameters, including tool rotational speed, travel speed, and axial force, must be tuned in order to increase the dependability and quality of the products produced by the FSW process. The process parameters for the FSW are optimized in this work using the Taguchi design of experiment (DOE) approach. The findings of the study and determination of the optimal condition using L9 orthogonal arrays of Taguchi were subjected to S/N analysis and analysis of variance (ANOVA) to identify the major welding factors impacting the weld quality. The relevant parameters for each welding performance criterion, such as the microhardness, were identified using ANOVA. According to the results, the optimum settings are tool rotation speed of 350 rpm, welding speed of 550 mm/min, and axial load of 900 kg. © 2023, The Author(s), under exclusive license to Springer Nature Switzerland AG. date: 2023 official_url: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85153072918&doi=10.1007%2f978-3-031-21959-7_9&partnerID=40&md5=ee77a50870a2751cfbb98b38beaa4070 id_number: 10.1007/978-3-031-21959-7₉ full_text_status: none publication: Advanced Structured Materials volume: 165 pagerange: 133-141 refereed: TRUE citation: Baharudin, B.A. and Mustapha, M. and Ismail, A. and Zulkipli, F.N. and Ayob, F. and Ahmad, A. (2023) Microhardness and Process Parameter Optimization of Friction Stir Welding on an AA5052 Thin Plate. Advanced Structured Materials, 165. pp. 133-141.