covid
Buscar en
Ciência & Tecnologia dos Materiais
Toda la web
Inicio Ciência & Tecnologia dos Materiais Investigations on the structure – property relationships of PCGTA welds involv...
Journal Information
Vol. 29. Issue 2.
Pages 28-38 (May - August 2017)
Share
Share
Download PDF
More article options
Vol. 29. Issue 2.
Pages 28-38 (May - August 2017)
Full text access
Investigations on the structure – property relationships of PCGTA welds involving Inconel 718 and AISI 430
Visits
1949
K. Devendranath Ramkumar
Corresponding author
ramdevendranath@gmail.com

Corresponding author.
, T. Harsha Mohan, Rachit Pandey, Vimal Saxena, S. Aravind, Shubham Singh
School of Mechanical Engineering, VIT University, Vellore - 632014, India
This item has received
Article information
Abstract
Bibliography
Download PDF
Statistics
Abstract

The present investigation deals with the weldability, structure – property relationship of dissimilar metallurgical joints involving Nickel based superalloy Inconel 718 and ferritic stainless steel AISI 430 using pulsed current gas tungsten welding (PCGTAW) process employing ER2553 and ERNiCrMo-4 filler wires. NDT analysis and macrostructure examination corroborated for defect free weldments. Microstructure studies revealed the presence of unmixed zone at the weld interface of Inconel 718 whereas grain coarsening effect was observed at the heat effected zone (HAZ) of AISI 430. Both cellular and equiaxed dendrites were dominated at the fusion zone of ERNiCrMo-4 weldment; whereas different types of ferrite morphologies such as delta and widmanstätten ferrite were observed at the cap and middle zones of ER2553 fusion zone respectively. It was opined that the tensile failures occurred at the parent metal of AISI 430 for both the fillers. Charpy V-notch studies showed that ERNiCrMo-4 weldment exhibited better impact toughness than ER2553 weldment. Similarly the bend test also recommended the use of ERNiCrMo-4 filler due to the acquaintance of excellent bending strength and soundness. This study also addressed the structure – property relationships of these weldments. The outcomes of the study would be highly beneficial to the nuclear, aerospace and petrochemical industries.

Keywords:
nickel based super-alloy
ferritic stainless steel
pulsed current gas tungsten arc welding
structure – property relationship
Full text is only aviable in PDF
References
[1]
International Stainless Steel forum. The ferritic solution. ISSF; 2007. http://www.worldstainless.org/news/show/34 dated 07.05.2015.
[2]
J.C. Lippold, D.J. Kotecki.
Welding metallurgy and weldability of stainless steels.
Wiley-Interscience, (2005),
[3]
R. Castro, J.J. De Cadenet.
Welding Metallurgy of Stainless and Heat Resisting Steels.
Cambridge University Press, (1974),
[4]
H.W. Hayden, S. Floreen.
Metall. Trans, 1 (1972), pp. 1950
[5]
R.N. Wright, J.R. Wood.
Metall. Trans, 8A (1977), pp. 1977
[6]
S. Antilla, H.-P. Heikkinen.
Structural Applications of Ferritic Stainless Steels.
Outokumpu Stainless Oy Tornio Research Centre, (2014),
[7]
J. Sedriks.
Corrosion of Stainless Steels.
Wiley-Interscience, (1996),
[8]
J.N. DuPont, J.C. Lippold, S.D. Kiser.
Welding metallurgy and Weldability of Nickel base alloys.
John Wiley & Sons Inc., (2009),
[9]
A. Odabasi, N. Unlu, G. Goller, M.N. Eruslu, The Minerals, Metals & Materials Society, 2010.
[10]
G.D.J. Ram, A.V. Reddy, K.P. Rao, G.M. Reddy.
Sci. Technol. Weld. Joining, 9 (2004), pp. 390
[11]
S.G.K. Manikandan, D. Sivakumar, K. Prasad Rao, M. Kamaraj.
Mater. Charact, 100 (2015), pp. 192
[12]
K.D. Ramkumar, S.D. Patel, S.S. Praveen, D.J. Choudhury, P. Prabaharan, N. Arivazhagan, M.A. Xavior.
Mater. Des, 62 (2014), pp. 175
[13]
C. Radhakrishna, K.P. Rao.
J. Mater. Sci, 32 (1997), pp. 1977
[14]
K.D. Ramkumar, V. Joshi, S. Pandit, M. Agrawal, O.S. Kumar, S. Periwal, M. Manikandan, N. Arivazhagan.
Mater. Des, 64 (2014), pp. 775
[15]
K.D. Ramkumar, P. Mithilesh, D. Varun, A. Reddy, N. Arivazhagan, S. Narayanan, K.G. Kumar.
ISIJ International, 54 (2013), pp. 900
[16]
E. Farahani, M. Shamanian, F. Ashrafizadeh.
Int. J. Manuf. Mater. Sci, 02 (2012), pp. 1
[17]
F.B. Pickering, American Society for Metals; 1979.
[18]
S. Kou.
Welding Metallurgy.
Wiley Publication, (1987),
[19]
M. Alizadeh, S.P.H. Marashi, M. Pouranvari.
Mater. Des, 56 (2013), pp. 258
[20]
V.V. Satyanarayana, G.M. Reddy, T. Mohandas.
J. Mat. Proc. Tech, 160 (2005), pp. 128
[21]
M. Shamanian, A. Mortezaie.
Int. J. Pressure Vessels Piping, 116 (2014), pp. 37
[22]
M. Sireesha, S. Albert, V. Shankar, S. Sundaresan.
J. Nucl. Mater, 279 (2000), pp. 65
[23]
C.-C. Hsieh, D.-Y. Lin, W. Wu.
Met. Mater. Int, 13 (2008), pp. 643
[24]
R.L. Bodnar, S.S. Hansen.
Metall. Mater. Trans. A, 25A (1994), pp. 665
[25]
S. Kou, Y. Le.
Weld. Res, Suppl (1986), pp. 305
[26]
C.-C. Hsieh, D.-Y. Lin, M.-C. Chen, W. Wu.
Mater. Trans, 18 (2007), pp. 2898
Copyright © 2017. Portuguese Society of Materials (SPM)
Article options
es en pt

¿Es usted profesional sanitario apto para prescribir o dispensar medicamentos?

Are you a health professional able to prescribe or dispense drugs?

Você é um profissional de saúde habilitado a prescrever ou dispensar medicamentos