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Original Articles

Influence of Current and Shielding Gas in TiO2 Flux Activated TIG Welding on Different Graded Steels

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Pages 1115-1123 | Received 07 Jul 2014, Accepted 11 Sep 2014, Published online: 11 Feb 2015

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Ashish W. Fande & Ravindra V. Taiwade. (2023) Welding of Super Duplex Stainless Steel and Austenitic Stainless Steel:#xd; Influence and Role of Bicomponent Fluxes. Materials and Manufacturing Processes 38:4, pages 434-448.
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Hemant Kumar, Gulshad Nawaz Ahmad & N. K. Singh. (2019) Activated flux TIG welding of Inconel 718 super alloy in presence of tri-component flux. Materials and Manufacturing Processes 34:2, pages 216-223.
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Ravi Shanker Vidyarthy, Dheerendra Kumar Dwivedi & Vasudevan Muthukumaran. (2018) Optimization of A-TIG process parameters using response surface methodology. Materials and Manufacturing Processes 33:7, pages 709-717.
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Xin Ji, Lin Jun Wang, Chao Min Zhang & Yi Ming Mi. (2016) Heating and Time Processes on Growth and Adhesive Property of Ta-Mo Coatings. Materials and Manufacturing Processes 31:9, pages 1269-1273.
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Anirban Bhattacharya. (2016) Revisiting Arc, Metal Flow Behavior in Flux Activated Tungsten Inert Gas Welding. Materials and Manufacturing Processes 31:3, pages 343-351.
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Vishwa Bhanu, Ankur Gupta & Chandan Pandey. (2022) Role of A-TIG process in joining of martensitic and austenitic steels for ultra-supercritical power plants -a state of the art review. Nuclear Engineering and Technology 54:8, pages 2755-2770.
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N Rakesh & K. Rameshkumar. (2022) Activated flux induced Tungsten inert gas welding of Ferrous alloys - A Review. Journal of Physics: Conference Series 2272:1, pages 012020.
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J. Sivakumar, Karthik Babu N.B, M.P. Mohanraj, E. Hariharan & M. Ranjithkumar. (2022) A New Perception of Activated Flux Tungsten Inert Gas (A-TIG) Welding Techniques for Various Materials. International Journal of Recent Technology and Engineering (IJRTE) 10:5, pages 92-105.
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Anand Baghel, Chaitanaya Sharma, Sandeep Rathee & Manu Srivastava. (2021) Activated flux TIG welding of dissimilar SS202 and SS304 alloys: Effect of oxide and chloride fluxes on microstructure and mechanical properties of joints. Materials Today: Proceedings 47, pages 7189-7195.
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Dipali Pandya, Amarish Badgujar & Nilesh Ghetiya. (2021) Effect of hydrogen additions to shielding gas on activated TIG austenitic stainless steel weld. Materials Today: Proceedings 47, pages 1025-1029.
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Memduh Kurtulmuş. (2020) Activated flux TIG welding of austenitic stainless steels. Emerging Materials Research 9:4, pages 1041-1055.
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Naseer M Abbas, Ayad Khudhair Al-Nadawi & Kharia S Hassan. (2020) Microstructural characterization and mechanical properties development with Ti, Cr, or Ni addition for low carbon steel butt joints. IOP Conference Series: Materials Science and Engineering 881:1, pages 012061.
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E. Ahmadi, A. R. Ebrahimi & A. Hoseinzadeh. (2020) Microstructure Evolution and Mechanical Properties of 2219 Aluminum Alloy A–TIG Welds. Physics of Metals and Metallography 121:5, pages 483-488.
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Dhananjay S. Satelkar, Bhagwan F. Jogi & Shrikant B. Thorat. 2020. Advances in Additive Manufacturing and Joining. Advances in Additive Manufacturing and Joining 619 629 .
Dhananjay S. Satelkar, Bhagwan F. Jogi, Shrikant B. Thorat & Ajay A. Chavan. 2020. Techno-Societal 2018. Techno-Societal 2018 511 521 .
Atul Babbar, Akhilesh Kumar, Vivek Jain & Dheeraj Gupta. (2019) Enhancement of activated tungsten inert gas (A-TIG) welding using multi-component TiO2-SiO2-Al2O3 hybrid flux. Measurement 148, pages 106912.
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Himanshu Garg, Karan Sehgal, Rahul Lamba & Gianender Kajal. 2019. Advances in Industrial and Production Engineering. Advances in Industrial and Production Engineering 375 385 .
H. Li, J. S. Zou, J. S. Yao & H. P. Peng. (2017) Uniform design and optimization of active agent and technology research for A-TIG welding of 2219 aluminum alloy. The International Journal of Advanced Manufacturing Technology 92:9-12, pages 3435-3446.
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Mengbing Zhou, Jun Shen, Dan Hu, Runhua Gao & Shizeng Li. (2017) Effects of heat treatment on the activated flux TIG-welded AZ31 magnesium alloy joints. The International Journal of Advanced Manufacturing Technology 92:9-12, pages 3983-3990.
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G. Venkatesan, V. Muthupandi & J. Justine. (2016) Activated TIG welding of AISI 304L using mono- and tri-component fluxes. The International Journal of Advanced Manufacturing Technology 93:1-4, pages 329-336.
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Xiaogang Gao, Junhui Dong & Xu Han. (2016) Effect of RE2O3 (RE = La, Ce) fluxes on A-TIG welding of Ti6Al4V. The International Journal of Advanced Manufacturing Technology 91:1-4, pages 1181-1188.
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Anirban Bhattacharya & Sanchit Singla. (2016) Mechanical Properties and Metallurgical Characterization of Dissimilar Welded Joints between AISI 316 and AISI 4340. Transactions of the Indian Institute of Metals 70:4, pages 893-901.
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G. Chandrasekar, C. Kailasanathan, Dhanesh Kant Verma & K. Nandagopal. (2017) Optimization of Welding Parameters, Influence of Activating Flux and Investigation on the Mechanical and Metallurgical Properties of Activated TIG Weldments of AISI 316 L Stainless Steel. Transactions of the Indian Institute of Metals 70:3, pages 671-684.
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Jay J. Vora & Vishvesh J. Badheka. (2017) Experimental investigation on microstructure and mechanical properties of activated TIG welded reduced activation ferritic/martensitic steel joints. Journal of Manufacturing Processes 25, pages 85-93.
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R.S. Vidyarthy & D.K. Dwivedi. (2016) Activating flux tungsten inert gas welding for enhanced weld penetration. Journal of Manufacturing Processes 22, pages 211-228.
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Kuang-Hung Tseng & Ya-Jie Shiu. (2015) Effect of thermal stability of powdered oxide on joint penetration and metallurgical feature of AISI 4130 steel TIG weldment. Powder Technology 286, pages 31-38.
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Jay J. Vora & Vishvesh J. Badheka. (2015) Experimental investigation on mechanism and weld morphology of activated TIG welded bead-on-plate weldments of reduced activation ferritic/martensitic steel using oxide fluxes. Journal of Manufacturing Processes 20, pages 224-233.
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