A reanalysis of fatigue test data for longitudinal welded gusset joints in as-welded and high frequency mechanical impact (HFMI)-treated state
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[1] M. Leitner,et al. Effect of increased yield strength, R-ratio, and plate thickness on the fatigue resistance of high-frequency mechanical impact (HFMI)–treated steel joints , 2020, Welding in the World.
[2] H. Shimanuki,et al. Influence of cyclic loading on the relaxation behavior of compressive residual stress induced by UIT , 2019, Welding in the World.
[3] K. Kinoshita,et al. Fatigue Strength Improvement and Fatigue Crack Closure by Portable Pneumatic Needle-Peening Treatment on Welded Joints , 2018, International Journal of Steel Structures.
[4] K. Kinoshita,et al. 09.06: Continuous fatigue test of welded joint taken from SBHS700 girder specimen , 2017 .
[5] H. Yıldırım,et al. The thickness effect of welded details improved by high-frequency mechanical impact treatment , 2017 .
[6] G. Marquis,et al. Lightweight design with welded high-frequency mechanical impact (HFMI) treated high-strength steel joints from S700 under constant and variable amplitude loadings , 2016 .
[7] K. Dilger,et al. Effects of residual stresses and compressive mean stresses on the fatigue strength of longitudinal fillet-welded gussets , 2016, Welding in the World.
[8] K. Kinoshita,et al. Effects of ultrasonic peening on fatigue strength of out-of-plane gusset joints , 2014 .
[9] 穴見 健吾,et al. A study on size effect of fatigue strength of out-of-plane gusset welded joint , 2014 .
[10] H. Yıldırım. Fatigue strength assessment of HFMI-treated butt welds by the effective notch stress method , 2014, Welding in the World.
[11] K. Tateishi,et al. FATIGUE STRENGTH OF WELDED JOINTS USING STEELS FOR BRIDGE HIGH PERFORMANCE STRUCTURES (SBHS) , 2013 .
[12] Chitoshi Miki,et al. Fatigue strength improvement of out-of-plane welded joints of steel girder under variable amplitude loading , 2013, Welding in the World.
[13] Thomas Bruder,et al. Influence of weld geometry and residual stresses on the fatigue strength of longitudinal stiffeners , 2013, Welding in the World.
[14] In-Tae Kim. Fatigue strength improvement of longitudinal fillet welded out-of-plane gusset joints using air blast cleaning treatment , 2013 .
[15] H. Shimanuki,et al. Effect Of Uit On Fatigue Strength Of Web- Gusset Welded Joints Considering Service Condition Of Steel Structures , 2012, Welding in the World.
[16] Chitoshi Miki,et al. Improvement Effects of Fatigue Strength by Burr Grinding and Hammer Peening Under Variable Amplitude Loading , 2012, Welding in the World.
[17] Junya Hara,et al. Fatigue strength improvement for ship structures by Ultrasonic Peening , 2012 .
[18] Liang Chen Wu,et al. Effect of Welding Residual Stress on Fatigue Performance of the Welded Joints Treated by Ultrasonic Peening , 2011 .
[19] Stephen J. Maddox,et al. A Case Study Of The Use Of Ultrasonic Peening For Upgrading A Welded Steel Structure , 2011 .
[20] Gary Marquis,et al. Failure modes and fatigue strength of improved HSS welds , 2010 .
[21] Thomas Ummenhofer,et al. Fatigue Behaviour of Welded High-Strength Steels after High Frequency Mechanical Post-Weld Treatments , 2009 .
[22] Lixing Huo,et al. Discussion on fatigue design of welded joints enhanced by ultrasonic peening treatment (UPT) , 2009 .
[23] H. Y. Choi,et al. Fatigue life prediction of out-of-plane gusset welded joints using strain energy density factor approach , 2005 .
[24] F. V. Lawrence,et al. Improving the fatigue performance of fillet weld terminations , 2001 .
[25] Chitoshi Miki,et al. IMPROVING FATIGUE STRENGTH OF WELDED JOINTS BY HAMMER PEENING AND TIG-DRESSING , 2000 .
[26] M. Sakano,et al. Long Term Fatigue Strength of Web Gusset Joint in Floo r-Beam-to-Main-Girder Connection , 1998 .
[27] K. Anami,et al. A Study on Size Effect of Fatigue Strength at Weld Joint Toe , 1997 .
[28] C. Miki,et al. RETROFITTING FATIGUE-CRACKED JOINTS BY TIG ARC REMELTING , 1987 .
[29] Koei Takena,et al. FATIGUE STRENGTHS OF LARGE-SIZE GUSSET JOINTS OF 800 MPa CLASS STEELS , 1985 .
[30] Takeshi Mori,et al. 移動荷重を受ける鋼I桁面外ガセット溶接部の疲労強度;移動荷重を受ける鋼I桁面外ガセット溶接部の疲労強度;Fatigue Strength of Web-Gusset Welded Joints in I-Section Girder Under Moving Loads , 2017 .
[31] Kentaro Yamada,et al. REHABILITATION AND IMPROVEMENT OF FATIGUE LIFE OF WELDED JOINTS BY ICR TREATMENT , 2015 .
[32] G. Marquis,et al. Lightweight Potential of Welded High-strength Steel Joints from S700 Under Constant and Variable Amplitude Loading by High-frequency Mechanical Impact (HFMI) Treatment☆ , 2015 .
[33] Takeshi Mori,et al. REPAIR FOR FATIGUE CRACKS AT CONNECTION BETWEEN MAIN GIRDER WEB AND LATERAL GIRDER FLANGE BY BOLTING STOP-HOLE METHOD WITH ATTACHED PLATES , 2011 .
[34] A. Yamaguchi,et al. Effect of UIT on Fatigue Life in Web-Gusset Welded Joints , 2010 .
[35] Park Wooryong,et al. Fatigue assessment of out-of-plane attachments with various angles by using local stress approaches , 2008 .
[36] Le Van Nhan,et al. Fatigue Behavior of Blast-treated Out-of-plane Gusset Fillet Welded Joints , 2008 .
[37] Lixing Huo,et al. Investigation of the fatigue behaviour of the welded joints treated by TIG dressing and ultrasonic peening under variable-amplitude load , 2005 .
[38] K. Minami. Fatigue test on Large-scale welded Girder Specimens with Hot Dip Galvanizing-Fatigue Strength of Welded Joints by Hot Dip Galvanizing (Report1) , 2003 .
[39] E. S. Statnikov,et al. Introductory fatigue tests on welded joints in high strength steel and aluminium improved by various methods including ultrasonic impact treatment ( UIT ) , 2000 .
[40] Bernard Barthelemy,et al. Fatigue behavior of full-scale welded bridge attachments, M.S. thesis, May 1979 , 1979 .