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Published in: Journal of Materials Science 22/2006

01-11-2006

The influence of porosity on the fatigue crack growth behavior of Ti–6Al–4V laser welds

Authors: L. W. Tsay, Y.-P. Shan, Y.-H. Chao, W. Y. Shu

Published in: Journal of Materials Science | Issue 22/2006

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Abstract

The effect of porosity––a common welding defect––on the fatigue crack growth rate (FCGR) in Ti–6Al–4V laser welds was investigated. The experimental results reveal that porosity was present in partial penetration welds over a narrow fusion zone (FZ) with martensite structure. The FCGR of the FZ was lower than that of the base plate. The fracture surface morphology of weld metal was much rougher as compared to that of the base plate. Randomly oriented martensite in the FZ led to local cleavage fracture along a preferred plane, thus, altering the crack growth direction significantly out of the primary crack plane. The zigzag crack path in the FZ resulted in a reduced FCGR at a given ΔK compared to the base plate. Besides, the porous weld showed a serration on the crack growth curve, and behaved the similar crack growth characteristics as the defect free one. SEM fractography revealed that the deflection of crack path around porosity together with local notch blunting as the crack tip pierced into porosity, balanced the increased FCGR for the occurrence of instant crack advance as the crack front reached the porosity at a low stress ratio. In contrast, the serration and drop in FCGR occurred sparingly at a high stress ratio as the crack front met the porosity.

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Literature
1.
go back to reference Thomas G, Ramachandra V, Nair MJ, Nagarajan KV, Vasudevan R (1992) Weld J 71:15s Thomas G, Ramachandra V, Nair MJ, Nagarajan KV, Vasudevan R (1992) Weld J 71:15s
2.
go back to reference Lancaster JF (1984) The physics of welding. Pergamon, Oxford, pp 269–290 Lancaster JF (1984) The physics of welding. Pergamon, Oxford, pp 269–290
4.
go back to reference Li Z, Gobbi SL, Norris I, Zolotovsky S, Richter KH (1997) J Mats Proc Tech 65:203CrossRef Li Z, Gobbi SL, Norris I, Zolotovsky S, Richter KH (1997) J Mats Proc Tech 65:203CrossRef
5.
go back to reference Thomas G, Ramachandra V, Nagarajan KV, Pant B, Sarkar BK, Vasudevan R (1989) Weld J 69:336s Thomas G, Ramachandra V, Nagarajan KV, Pant B, Sarkar BK, Vasudevan R (1989) Weld J 69:336s
6.
go back to reference Mazumder J, Steen WM (1980) Met Construct 12:423 Mazumder J, Steen WM (1980) Met Construct 12:423
7.
go back to reference Matsunawa A, Kim J, Katayama S (1997) ICALEO, Section-G, pp 73–82 Matsunawa A, Kim J, Katayama S (1997) ICALEO, Section-G, pp 73–82
8.
go back to reference Chen SJ, Devletian JH (1990) Weld J 69:319s Chen SJ, Devletian JH (1990) Weld J 69:319s
9.
go back to reference Chen SJ, Devletian JH (1982) Metall Trans 13A:865 Chen SJ, Devletian JH (1982) Metall Trans 13A:865
10.
go back to reference Denney PE, Metzbower EA (1989) Weld J 68:342s Denney PE, Metzbower EA (1989) Weld J 68:342s
11.
go back to reference Yoder GR, Cooley LA, Crooker TW (1976) Metall Trans 8A:1937 Yoder GR, Cooley LA, Crooker TW (1976) Metall Trans 8A:1937
14.
go back to reference Ravichandran KS, Dwarakadasa ES, Banerjee D (1991) Scripta Metall Mater 25:2115CrossRef Ravichandran KS, Dwarakadasa ES, Banerjee D (1991) Scripta Metall Mater 25:2115CrossRef
15.
go back to reference Bache MR, Evans WJ, McElhone M (1997) Mater Sci Eng A 234–236:918 Bache MR, Evans WJ, McElhone M (1997) Mater Sci Eng A 234–236:918
16.
18.
go back to reference Davidson DL, Lankford J (1984) Metall Trans 15A:1931 Davidson DL, Lankford J (1984) Metall Trans 15A:1931
19.
go back to reference Irving PE, Beevers CJ (1974) Metall Trans 5:391 Irving PE, Beevers CJ (1974) Metall Trans 5:391
20.
go back to reference Yoder GR, Cooley LA, Crooker TW (1978) Metall Trans 9A:1413 Yoder GR, Cooley LA, Crooker TW (1978) Metall Trans 9A:1413
21.
go back to reference Ogawa T, Tokaji K (1993) Fatigue Fract Eng Mater Struct 16:973 Ogawa T, Tokaji K (1993) Fatigue Fract Eng Mater Struct 16:973
22.
go back to reference Fusion welding for aerospace applications, Aerospace material specification AMS-STD-2219A, May (1999) Fusion welding for aerospace applications, Aerospace material specification AMS-STD-2219A, May (1999)
25.
go back to reference Shiue RK, Chang CT, Yang MC, Tsay LW (2004) Mat Sci Eng A364:101 Shiue RK, Chang CT, Yang MC, Tsay LW (2004) Mat Sci Eng A364:101
28.
go back to reference Beghini M, Bertini L, Vitale E (1994) Fatigue Fract Eng Mater Struct 17:1433 Beghini M, Bertini L, Vitale E (1994) Fatigue Fract Eng Mater Struct 17:1433
29.
go back to reference Kitsunai Y, Takana M, Yoshihisa E (1998) Metall Trans 29A:289 Kitsunai Y, Takana M, Yoshihisa E (1998) Metall Trans 29A:289
30.
go back to reference Nelson HG, Williams DP, Stein JE (1972) Metall Trans 3:469 Nelson HG, Williams DP, Stein JE (1972) Metall Trans 3:469
31.
go back to reference Suresh S, Ritchie RO (1982) Metall Trans 13A:1627 Suresh S, Ritchie RO (1982) Metall Trans 13A:1627
Metadata
Title
The influence of porosity on the fatigue crack growth behavior of Ti–6Al–4V laser welds
Authors
L. W. Tsay
Y.-P. Shan
Y.-H. Chao
W. Y. Shu
Publication date
01-11-2006
Published in
Journal of Materials Science / Issue 22/2006
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-006-0833-x

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