TY - JOUR VL - 9 JF - Metals A1 - Wei, H. A1 - Latif, A. A1 - Hussain, G. A1 - Heidarshenas, B. A1 - Altaf, K. UR - https://www.scopus.com/inward/record.uri?eid=2-s2.0-85071360955&doi=10.3390%2fmet9080875&partnerID=40&md5=41572f90cad3cd4a5f08ab50b97a26db PB - MDPI AG SN - 20754701 Y1 - 2019/// ID - scholars11420 TI - Influence of tool material, tool geometry, process parameters, stacking sequence, and heat sink on producing sound Al/cu lap joints through friction stir welding N2 - The present study was focused on establishing guidelines for successful friction stir welding of Al alloys and Cu lap joints. Detailed investigations in respect to tool geometry, tool material, work-piece material, welding parameters, stacking sequence, and heat sink were carried out. The soundness of welded joints was tested through microscopic analysis and the lap shear test. The results revealed that the tungsten carbide (WC) tool with square-pin produced sound joints in terms of minimized defects and high strength. Further, the use of heat sink proved as an important pre-requisite when the stacking sequence was inversed (i.e., Cu-Al), and this stacking configuration in comparison with the Al-Cu stacking yielded weaker joints. The influence of the tool welding speed (F, mm/min) was found to depend upon the tool material. A range of tool welding speed (23.5-37.5 mm/min) worked well for the WC tool. However, only two values of welding speed (30 mm/min and 37 mm/min) were observed to be conducive when the tool material was HSCo (high-speed cobalt)-steel. Finally, it was concluded to employ the WC tool with square-pin, a welding speed of 30 mm/min, the rotational speed (S, rpm) of 1500 mm/min, and Al-Cu stacking sequence to successfully process the Al/Cu lap joints. © 2019 by the authors. Licensee MDPI, Basel, Switzerland. N1 - cited By 11 IS - 8 AV - none ER -