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Banerjee, Satadru
- Application of The Ahp For Optimization of Weld Strength of Al-8%Sic Composite Using Pctig Welding
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Authors
Affiliations
1 1Research Scholar, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani-741235, West Bengal and Assistant Professor, JIS College of Engineering, Kalyani, Nadia., IN
2 UG Student, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani-741235, West Bengal., IN
3 Professor, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani-741235, West Bengal., IN
1 1Research Scholar, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani-741235, West Bengal and Assistant Professor, JIS College of Engineering, Kalyani, Nadia., IN
2 UG Student, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani-741235, West Bengal., IN
3 Professor, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani-741235, West Bengal., IN
Source
Indian Science Cruiser, Vol 36, No 4 (2022), Pagination: 19 - 25Abstract
Here Analytical Hierarchical Process (AHP) was used for optimization of weld strength of Al-8%SiC composite using Pulsed Current Tungsten Inert Gas (PCTIG) welding. The experiment was designed using Taguchi L9 OA. The parameters used as criteria were pulse on time, pulse frequency, peak current, base current, peak temperature and cooling rate. The optimum condition were at peak current of 160A, base current of 60A, pulse on time of 50%, pulse frequency of 5Hz and optimum values of peak temperature and cooling rate were 446°C/s and 20°C/s respectively.Keywords
Welding, PCTIG, AHP, Optimization, Weld Strength.References
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- Application of the AHP for Optimization of Mechanical Properties Of Al-Mg-Si Alloy Using PCTIG Welding
Abstract Views :201 |
PDF Views:100
Authors
Affiliations
1 Research Scholar, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani- 741235, West Bengal and Assistant Professor, JIS College of Engineering, Kalyani., IN
2 B.Tech Graduate, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani- 741235, West Bengal., IN
3 B.Tech Graduate, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani- 741235, West Bengal.
4 Professor, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani- 741235, West Bengal., IN
1 Research Scholar, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani- 741235, West Bengal and Assistant Professor, JIS College of Engineering, Kalyani., IN
2 B.Tech Graduate, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani- 741235, West Bengal., IN
3 B.Tech Graduate, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani- 741235, West Bengal.
4 Professor, Department of Mechanical Engineering, Kalyani Govt. Engineering College, Kalyani- 741235, West Bengal., IN
Source
Reason-A Technical Journal (Formerly Reason-A Technical Magazine), Vol 21 (2022), Pagination: 29-38Abstract
This paper makes an attempt to investigate the influence of pulsed Tungsten Inert Gas (PCTIG) welding variables on the mechanical attributes like Impact Toughness, Hardness, Dilution as well as Notch Tensile Strength of welded specimen. The specimen used was Al-Mg-Si alloy. This alloy is extensively used in automotive manufacturing sector owing to its light weight which also helps to bring down the vehicular C02 emission. The addition of metalloid such as silicon in aluminum parent metal imparts high fluidity, good feeding characteristics and good hot cracking sensitivity to it. As opposed to normal Tungsten Inert Gas (TIG) welding, PCTIG welding applies variable current during operation. Peak current being higher in value facilitates sufficient penetration while base current helps in stabilizing the arc. However, owing to the development of inter-dendritic micro-structural features, PCTIG welding exhibits lower impact toughness and notch tensile strength compared to the parent metal. The Analytic Hierarchy Process (AHP) has been used in this work to maximize the mechanical properties and the related PCTIG welding parameters.Keywords
Impact Toughness, Notch Tensile Strength, TIG, Inter-dendritic, Analytic Hierarchy ProcessReferences
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