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Growing Science » Engineering Solid Mechanics » Optimization of wire type and current welding on the strength of welding connection in two types of material testing via response surface methodology

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Engineering Solid Mechanics

ISSN 2291-8752 (Online) - ISSN 2291-8744 (Print)
Quarterly Publication
Volume 10 Issue 4 pp. 341-350 , 2022

Optimization of wire type and current welding on the strength of welding connection in two types of material testing via response surface methodology Pages 341-350 Right click to download the paper Download PDF

Authors: Hery Riyanto, Sugito Sugito, Abdul Fikri

DOI: 10.5267/j.esm.2022.6.004

Keywords: Hardness, Optimization, RSM, Tensile strength, Welding

Abstract: The number of types of wire welding that circulate on the market and the development of welding technology, especially related to current welding, create a lack of information related to the quality of welding results for several types of materials. This can cause the strength of the welding connection to not be maximized. Therefore, this study aims to optimize the use of three types of wire welding and three current welding on the strength of the welding connection in two types of material testing using the response surface methodology. Box-Behnken, coupled with the RSM and the desirability function, was used to optimize the strength of the welding connection of the wire types (RD-46, LB-52, and RB-26), and current welding (100, 130, and 160 A) against two types of material testing (IWF-150 and ASTM-A517-G70). The strength of the welding connection observed in response included the tensile strength, Charpy impact-absorbed energy, hardness values in the welding metal and the hardness values in the main metal. Optimization of the strength of the welding connection in this study recommends the application of wire types RB-26, current welding of 100 A, and ASTM-A517-G70 material testing with the highest desirability value of 71.6%. Optimization of tensile strength, Charpy impact-absorbed energy, hardness values in welding metal, and hardness values in main metal by applying this parameter are 575.64 MPa, 110.69 J, 216.75 (HV10) and 126.6 (HV10), respectively. The results proved that an appropriate welding connection strength could be achieved using wire welding types and current welding in material testing.

How to cite this paper
Riyanto, H., Sugito, S & Fikri, A. (2022). Optimization of wire type and current welding on the strength of welding connection in two types of material testing via response surface methodology.Engineering Solid Mechanics, 10(4), 341-350.

Refrences
Arifin, A., Reza, M., & Wijaya, A. N. P. (2020, May). Development of aluminum matrix composite with hybrid reinforcement using stir casting route. In IOP Conference Series: Materials Science and Engineering (Vol. 857, No. 1, p. 012007). IOP Publishing.
Aris, A. A., Maupa, H., Muis, M., & Tabba, M. I. (2019). Effects of government policy, quality of human resources and professional institutions on workforce competitiveness using welding technology as mediating variable. Journal of Science and Technology Policy Management, 10(5), 1121-1151.
Arista, B. V., Flores, I. G., González, C. E. C., Vargas, L. R., & Villasana, J. D. P. (2021). On the effect of Qnet on compressive residual stresses and ductile toughness of dissimilar HAZ in robotic GMAW joints between A572-50 and A36 steels. The International Journal of Advanced Manufacturing Technology, 113(5), 1535-1546.
Bakkiyaraj, M., Gnanasekaran, S., Samuel, S. J. C., Murugan, K., Selvamani, S. T., & Waji, Y. A. (2022). Influence of Process Parameters on Tensile Strength of the Friction Welded AA6063-T6 Joints by Box–Behnken Design Approach. Advances in Materials Science and Engineering, 2022.
Balasubramanian, V., Ravisankar, V., & Madhusudhan Reddy, G. (2008). Effect of pulsed current welding on mechanical properties of high strength aluminum alloy. The International Journal of Advanced Manufacturing Technology, 36(3), 254-262.
Cebro, I. S., & Sitorus, A. (2019). Performance evaluation of a hand tractor to climbing sloping land. Int. J. Sci. Technol. Res, 8(7), 781-785.
Chen, L. K., Yuan, R. P., Ji, X. J., Lu, X. Y., Xiao, J., Tao, J. B., ... & Jiang, L. Z. (2021). Modular composite building in urgent emergency engineering projects: A case study of accelerated design and construction of Wuhan Thunder God Mountain/Leishenshan hospital to COVID-19 pandemic. Automation in Construction, 124, 103555.
Familiana, H., Maulana, I., Karyadi, A., Cebro, I. S., & Sitorus, A. (2018). Characterization of aluminum surface using image processing methods and artificial neural network methods. in 3rd International Conference on Computing, Engineering, and Design, ICCED 2017, 2018, pp. 1-6.
Kashaev, N., Ventzke, V., & Çam, G. (2018). Prospects of laser beam welding and friction stir welding processes for aluminum airframe structural applications. Journal of Manufacturing Processes, 36, 571-600.
Kavitha, M., Manickavasagam, V. M., Sathish, T., Gugulothu, B., Sathish Kumar, A., Karthikeyan, S., & Subbiah, R. (2021). Parameters optimization of dissimilar friction stir welding for AA7079 and AA8050 through RSM. Advances in Materials Science and Engineering, 2021.
K Yasari, N. M. L. P., Muhayat, N., Triyono, T., & Saputro, Y. C. N. (2018). Microstructural and Mechanical Properties of Underwater Wet Welded SS400 Steel. Journal of Mechanical Engineering (JMechE), (3), 168-179.
Mehdi, H., & Mishra, R. S. (2020). An experimental analysis and optimization of process parameters of AA6061 and AA7075 welded joint by TIG+ FSP welding using RSM. Advances in Materials and Processing Technologies, 1-23.
Moi, S. C., Rudrapati, R., Bandyopadhyay, A., & Pal, P. K. (2019). Design Optimization of Welding Parameters for Multi-response Optimization in TIG Welding Using RSM-Based Grey Relational Analysis. In Advances in Computational Methods in Manufacturing (pp. 193-203). Springer, Singapore.
Nasir, T., Kalaf, O., Asmael, M., Zeeshan, Q., Safaei, B., Hussain, G., & Motallebzadeh, A. (2021). The experimental study of CFRP interlayer of dissimilar joint AA7075-T651/Ti-6Al-4V alloys by friction stir spot welding on mechanical and microstructural properties. Nanotechnology Reviews, 10(1), 401-413.
Rose, A. R., Manisekar, K., Balasubramanian, V., & Rajakumar, S. (2012). Prediction and optimization of pulsed current tungsten inert gas welding parameters to attain maximum tensile strength in AZ61A magnesium alloy. Materials & Design, 37, 334-348.
Sathish, T., Sevvel, P., Sudharsan, P., & Vijayan, V. (2021). Investigation and optimization of laser welding process parameters for AA7068 aluminium alloy butt joint. Materials Today: Proceedings, 37, 1672-1677.
Sitorus, A., Hermawan, W., & Setiawan, R. P. A. (2017, November). Design and performance of combine corn transplanter powered by hand tractor. In 2017 International Conference on Computing, Engineering, and Design (ICCED) (pp. 1-5). IEEE.
Sudjadi, U., Wibowo, B., & Hermawan, E. (2020, April). Study of The Effect of The Electric Current Strength of The Weld on The Tensile Strength of The Welded Gas Cylinder Material Joint Capacity of 3 Kg. In IOP Conference Series: Materials Science and Engineering (Vol. 839, No. 1, p. 012013). IOP Publishing.
Sugito, S., Alisjahbana, S., & Riyanto, H. (2022). Concrete compressive strength of mix proportioning cockle shell, glass powder and epoxy resin under hot water curing condition through response surface methodology. Engineering Solid Mechanics, 10(3), 263-268.
Tušek, J. (2000). Mathematical modeling of melting rate in twin-wire welding. Journal of materials processing technology, 100(1-3), 250-256.
Wang, B., Hu, S. J., Sun, L., & Freiheit, T. (2020). Intelligent welding system technologies: State-of-the-art review and perspectives. Journal of Manufacturing Systems, 56, 373-391.
Zhang, J., Huang, Y., Fan, D., Zhao, J., Huang, J., Yu, X., & Liu, S. (2020). Microstructure and performances of dissimilar joints between 12Cr2Mo1R steel and 06Cr18Ni11Ti austenitic stainless steel joined by AA-TIG welding. Journal of Manufacturing Processes, 60, 96-106.
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Journal: Engineering Solid Mechanics | Year: 2022 | Volume: 10 | Issue: 4 | Views: 968 | Reviews: 0

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