Sidhu Ramandeep Singh, Kumar Raman, Kumar Ranvijay, Goel Pankaj, Singh Sehijpal, Pimenov Danil Yurievich, Giasin Khaled, Adamczuk Krzysztof
Department of Mechanical and Production Engineering, Guru Nanak Dev Engineering College, Ludhiana 141006, Punjab, India.
Department of Mechanical Engineering, University Center for Research and Development, Chandigarh University, Ludhiana 140413, Punjab, India.
Materials (Basel). 2022 Aug 26;15(17):5901. doi: 10.3390/ma15175901.
In engineering applications, such as automobile, marine, aerospace, and railway, lightweight alloys of aluminum (Al) and magnesium (Mg) ensure design fitness for fuel economy, better efficiency, and overall cost reduction. Friction stir welding (FSW) for joining dissimilar materials has been considered better than the conventional fusion welding process because of metallurgical concerns. In this study, dissimilar joints were made between the AA6061 (A), AZ31B (B), and AZ91D (C) combinations based on the varying advancing side (AS) and retreating side (RS). The dissimilar joints prepared by the FSW process were further characterized by tensile testing, impact testing, corrosion testing, fracture, and statistical and cost analysis. The results revealed a maximum tensile strength of 192.39 MPa in AZ91 and AZ31B, maximum yield strength of 134.38 MPa in a combination of AA6061 and AZ91, maximum hardness of 114 Hv in AA6061 and AZ31B, and lowest corrosion rate of 7.03 mV/A in AA6061 and AZ31B. The results of the properties were supported by photomicrographic fracture analysis by scanning electron microscopy (SEM) observations. Further, the performance of dissimilar joints was statistically analyzed and prioritized for preference by similarity to the ideal solution (TOPSIS) method.
在汽车、船舶、航空航天和铁路等工程应用中,铝(Al)和镁(Mg)的轻质合金确保了设计符合燃油经济性、更高效率以及总体成本降低的要求。由于冶金方面的考虑,用于连接异种材料的搅拌摩擦焊(FSW)被认为优于传统的熔焊工艺。在本研究中,基于不同的前进侧(AS)和后退侧(RS),在AA6061(A)、AZ31B(B)和AZ91D(C)组合之间制作了异种接头。通过搅拌摩擦焊工艺制备的异种接头进一步通过拉伸试验、冲击试验、腐蚀试验、断裂以及统计和成本分析进行了表征。结果显示,AZ91和AZ31B组合的最大抗拉强度为192.39MPa,AA6061和AZ91组合的最大屈服强度为134.38MPa,AA6061和AZ31B组合的最大硬度为114Hv,AA6061和AZ31B组合的最低腐蚀速率为7.03mV/A。这些性能结果得到了扫描电子显微镜(SEM)观察的金相断裂分析的支持。此外,通过与理想解相似性排序法(TOPSIS)对异种接头的性能进行了统计分析并确定了优先顺序。