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FATIGUE ANALYSIS OF WELD REGION IN TORSION BEAM REAR SUSPENSION SYSTEM
Nan Zhan, Xiaochuan Zhang, Xulong Jin, Hongwei Cao
International Journal of Automotive Technology. 2019;20(2):247-253.     DOI: https://doi.org/10.1007/s12239-019-0024-9

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Fatigue Analysis of Weld Region in Torsion Beam Rear Suspension System
International Journal of Automotive Technology. 2019;20(2):247-253   Crossref logo
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An analytical approach for design and performance evaluation of torsion beam rear suspension
Finite Elements in Analysis and Design. 2013;63:98-106   Crossref logo
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Overall Strength Analysis of Trailing Arm Torsion Beam Suspension System
IOP Conference Series: Materials Science and Engineering. 2018;422:012023   Crossref logo
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Analysis of weld toe profiles and weld toe cracks
International Journal of Fatigue. 1993;15(1):31-36   Crossref logo
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Fatigue crack propagation into the residual stress field along and perpendicular to laser beam butt-weld in aluminium alloy AA6056
Fatigue & Fracture of Engineering Materials & Structures. 2011;35(5):399-411   Crossref logo
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Synthesis and analysis of the five-link rear suspension system used in automobiles
Mechanism and Machine Theory. 2002;37(9):815-832   Crossref logo
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Analysis of Fatigue Life of a Torsion Beam Based on nCode Design-Life
IOP Conference Series: Materials Science and Engineering. 2018;423:012034   Crossref logo
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The strength of electron-beam-welded jointsEhrhardt, H. and Mobius, W. Weld. Int. June 1991 5, (6), 475–479
International Journal of Fatigue. 1992;14(4):273-273   Crossref logo
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Fatigue failure of a rear axle shaft of an automobile
Engineering Failure Analysis. 2006;13(8):1293-1302   Crossref logo
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Fatigue crack growth prediction of welded joints in low-cycle fatigue region
Welding in the World. 2017;61(6):1189-1197   Crossref logo
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