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2 |
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3 |
Kang, H. T., Dong, P., and Hong, J. K., "Fatigue Analysis of Spot Welds Using a Mesh-Insensitive Structural Stress Approach," International Journal of Fatigue, 29 (2007), 1546-1553
DOI
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4 |
Hong, J. K., "The Development of a Simplified Spot Weld Model for Battelle Structural Stress Calculation," SAE International Journal of Materials and Manufacturing, 4-1, 4602-6012 (SAE Paper No. 2011-01-0479), 2011
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5 |
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6 |
Melander, A., Linder, J., Stensio, H., Larsson, M., Gustavsson, A., and Bjorkman, "How Defects in an Adhesive Layer Influence the Fatigue Strength of Bonded Steel-Sheet Speciemens," Fatigue and Fracture Engineering and Material Structures, 22: 1999, 421-426
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7 |
Hong, J. K. and Forte, T. P., "Development of Fatigue Evaluation Procedure for Weld-Bonded Joints using the Battelle Structural Stress Method," SAE Paper No. 2012-01-0477, 2012
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8 |
Dong, P., Hong, J.K., and Cao, Z., "A Mesh-Insensitive Structural Stress Procedure for Fatigue Evaluation of Welded Structures, International Institute of Welding, IIW Doc. XIII-1902-01/ XV-1089-01, IIW, 2001
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9 |
Dong, P., Hong, J. K., Osage, D.A., and Prager, M., "Master S-N Curve Method for Fatigue Evaluation of Welded Components," WRC Bulletin Vol. 474, Welding Research Council, 2002
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10 |
Dong, P., "A Structural Stress Definition and Numerical Implementation for Fatigue Analysis of Welded Joints," International Journal of Fatigue, 23 (2001), 865-876
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11 |
Dong, P., Hong, J.K., and Cao, Z., "Structural Stress Based Master S-N Curve for Welded Joints," International Institute of Welding, IIW Doc. XIII-1930-02/XV-1119-02, IIW, 2002
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12 |
Dong, P. and Hong, J.K, "The Master S-N Curve Approach to Fatigue of Vessel and Piping Welds," Welding in the World, 48 (2003), 28-36
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13 |
Dong, P. and Hong, J. K., "The Master S-N Curve Approach to Fatigue Evaluation of Offshore and Marine Structures," in the Proceedings of the 23rd International Conference on Offshore Mechanics and Arctic Engineering - 2004 Volume 2: Safety and Reliability, Materials Technology Workshop, OMAE2004-51324, 847-855, OMAE, 2004
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14 |
Dong, P., Hong, J. K., and De Jesus, A. M. P., "Analysis of Recent Fatigue Data Using the Structural Stress Procedure in ASME Div 2 Rewrite," Transactions of ASME, Journal of Pressure Vessel Technology, 139 (2007), 355-362
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15 |
Dong, P., Hong, J.K., and Cao, Z., "Stresses and Stress Intensities at Notches: 'Anomalous Crack Growth' Revisited", International Journal of Fatigue, 25 (2003), 811-825
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16 |
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17 |
Kyuba, H. and Dong, P., Hong, J.K., and Agrawal, H., "SAE Weld Challenge Problem," SAE Paper No. 2204-01-1234,2004
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18 |
Fatigue Analysis of Offshore Steel Structures-Battelle Structural Stress Methodology, Bureau Veritas, Under Final Review, 2012
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19 |
2007 ASME Boiler and Pressure Vessel Code, Section VIII, Div.2, ASME, 2007
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20 |
API Standard 579-1/ASME FFS-1 Fitness for Service, API, 2007
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21 |
Niemi, E., "Structural Hot-Spot Stress Approach to Fatigue Analysis of Welded Components," IIW Doc. XIII-1819-00/ XV-1090-01/XIII-WG3-06-99, IIW, 2003
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22 |
Hobbacher, A., "Recommendations for Fatigue Design of Welded Joints and Components," IIW Doc. XIII-1965-03/ XV-1127-03, IIW, 2004
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23 |
Frick, W., "Recommended Hot-Spot Analysis Procedure for Structural Details of Ships and FPSOs Based on Round-Robin FE Analyses," International Journal of Offshore and Polar Engineering, 12 (2002), 40-47
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24 |
BS 7608, "Code of Practice for Fatigue Design and Assessment of Steel Structures," BSI, 1993
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