El-Fahhar Hossam Hemdan, Gadallah Elshafey Ahmed, Habba Mohamed I A, Seleman Mohamed M El-Sayed, Ahmed Mohamed M Z, Mohamed Abdelkarim Yousif, Fouad Ramy A
Mechanical Production Department, Faculty of Technology and Education, Suez University, Suez, 43221, Egypt.
Metallurgical and Materials Engineering Department, Faculty of Petroleum and Mining Engineering, Suez University, Suez, 43221, Egypt.
Sci Rep. 2024 Feb 22;14(1):4380. doi: 10.1038/s41598-024-53795-6.
Post-weld heat treatment (PWHT) and solid-state thermomechanical treatment (TMT) via friction stir processing (FSP) have been shown to enhance the mechanical properties of aluminum alloys. The current work investigates the effects of PWHT and TMT on the microstructure and mechanical performance of AA6082-T6 welded butt joints welded using the MIG process. The 5 mm thick AA 6082-T6 plates were joined in butt configuration using MIG welding with ER 5356 filler wire, 120 A current, 0.3 mm/s weld speed, and argon shielding gas at 15 L/min flow rate. PWHT was performed on the MIG welds per the T6 temper procedure. TMT was implemented via FSP using a pinless tool rotating at 800 rpm and traversing speed at 200 mm/min with a 3° tilt angle. Microstructural analysis, hardness mapping, tensile testing, and fracture surface evaluation were utilized to characterize the as-welded, PWHT, and TMT samples. The results demonstrate that both PWHT and TMT significantly refine and homogenize the microstructures of the welded joints. However, the TMT samples displayed superior hardness and tensile strength compared to the as-welded and PWHT conditions. The TMT-processed welds achieved approximately 99% joint efficiency versus only 69% and 85% for the as-welded and PWHT samples. In summary, PWHT and especially TMT via FSP are effective at enhancing the mechanical properties of MIG welded AA6082-T6.
焊后热处理(PWHT)以及通过搅拌摩擦加工(FSP)进行的固态热机械处理(TMT)已被证明可提高铝合金的力学性能。当前的工作研究了PWHT和TMT对采用熔化极惰性气体保护焊(MIG)工艺焊接的AA6082-T6对接接头的微观结构和力学性能的影响。采用ER 5356填充焊丝、120 A电流、0.3 mm/s焊接速度以及流量为15 L/min的氩气保护气体,对5 mm厚的AA 6082-T6板材进行对接MIG焊接。按照T6回火工艺对MIG焊缝进行PWHT。通过FSP实施TMT,使用无销工具,转速为800 rpm,横移速度为200 mm/min,倾斜角度为3°。利用微观结构分析、硬度映射、拉伸试验和断口表面评估来表征焊态、PWHT和TMT试样。结果表明,PWHT和TMT均能显著细化并均匀化焊接接头的微观结构。然而,与焊态和PWHT状态相比,TMT试样显示出更高的硬度和拉伸强度。经TMT处理的焊缝接头效率约为99%,而焊态和PWHT试样的接头效率分别仅为69%和85%。总之,PWHT,尤其是通过FSP进行的TMT,对于提高MIG焊接的AA6082-T6的力学性能是有效的。