Crucial effects of plasma gas on the weld and microstructural characteristics of plasma arc welded aero engine Ti6Al4V alloy joints

被引:0
作者
Pragatheswaran, T. [1 ]
Rajakumar, S. [1 ]
Balasubramanian, V [1 ]
机构
[1] Annamalai Univ, Dept Mfg Engn, Annamalainagar, India
关键词
Titanium; plasma; microstructure; hardness; porosity; TITANIUM-ALLOYS; POROSITY;
D O I
10.1080/09507116.2024.2392665
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
This study explores the influence of plasma gas flow rate (PGFR) on the defects, microstructure evolution and mechanical properties during plasma arc welding of Ti6Al4V titanium alloy thin sheets using microscopic analysis, spectroscopic analysis, tensile and microhardness tests. The variation in PGFR affects the welding arc in terms of its stability, pressure and constriction which results in transformation of arc from conduction mode to keyhole mode and changes in microstructure as well. All the other welding process parameters were kept constant except for PGFR which was varied to investigate its significance. Excess weld metal was observed under the weld bead is an attribute of keyhole formation. Macrographs exhibits increments in weld geometry measurements whereas weld defects such as lack of penetration and porosity decreased with increased PGFR. The microstructural examination showed a variety of phase formations that includes majorly with acicular alpha and Widmanst & auml;tten alpha morphologies. Tensile strength and hardness at the weld region of the welded joints increases with increase in PGFR. An oxygen rich brittle subsurface layer called alpha-case morphology was observed at the weld region of 1 L/min joint causes significant reduction in ductility.
引用
收藏
页码:164 / 174
页数:11
相关论文
共 21 条
[1]   Wire arc additive manufacturing Ti6Al4V aeronautical parts using plasma arc welding: Analysis of heat-treatment processes in different atmospheres [J].
Artaza, Teresa ;
Suarez, Alfredo ;
Veiga, Fernando ;
Braceras, Inigo ;
Tabernero, Ivan ;
Larranaga, Oihane ;
Lamikiz, Aitzol .
JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2020, 9 (06) :15454-15466
[2]  
Balasubramanian M., 2007, International Journal of Manufacturing Research, V2, P403, DOI 10.1504/IJMR.2007.015085
[3]   Correlation between Microstructural Features and Tensile Properties in Near-α Titanium Alloy IMI 834 Processed in the α [J].
Balasundar, I ;
Raghu, T. ;
Kashyap, B. P. .
MATERIALS PERFORMANCE AND CHARACTERIZATION, 2019, 8 (05) :932-945
[4]   Study of alpha-case depth in Ti-6Al-2Sn-4Zr-2Mo and Ti-6Al-4V [J].
Gaddam, R. ;
Sefer, B. ;
Pederson, R. ;
Antti, M-L .
7TH EEIGM INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS RESEARCH, 2013, 48
[5]   Hydrogen Transport and Rationalization of Porosity Formation during Welding of Titanium Alloys [J].
Huang, Jianglin ;
Warnken, Nils ;
Gebelin, Jean-Christophe ;
Strangwood, Martin ;
Reed, Roger C. .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2012, 43A (02) :582-591
[6]   Understanding Flow Behavior and Microstructure Evolution during Thermomechanical Processing of Mill-Annealed Ti-6Al-4V Titanium Alloy [J].
Jha, Jyoti S. ;
Toppo, Suraj P. ;
Singh, Rajkumar ;
Tewari, Asim ;
Mishra, Sushil K. .
MATERIALS PERFORMANCE AND CHARACTERIZATION, 2019, 8 (05) :916-931
[7]   Effect of heat input in pulsed Nd:YAG laser welding of titanium alloy (Ti6Al4V) on microstructure and mechanical properties [J].
Kumar, Pramod ;
Sinha, Amar Nath .
WELDING IN THE WORLD, 2019, 63 (03) :673-689
[8]  
Kumpfert J., 2005, TITANIUM TITANIUM AL, P333, DOI 10.1002/3527602119.ch13
[9]   Formation of pores in the weld metal in automatic argon-shielded arc welding of titanium alloys [J].
Lukoyanov, A.V. .
Welding International, 2014, 28 (04) :301-303
[10]   Effect of Heat Treatment on the Structure and Properties of Laser Welded Joints of Aluminum Alloy AA2024 [J].
Mallieshwaran, K. ;
Rajendran, C. ;
Aravindhan, N. ;
Arunkumar, D. ;
Haswanth, K. ;
Abishek, M. .
METAL SCIENCE AND HEAT TREATMENT, 2023, 64 (9-10) :564-572