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A Study on the Fatigue Strength Improvement using Weld Toe Burr Grinding
Sung-Won Kang, Myung-Hyun Kim, Jae-Young Choi, Wha-Soo Kim, Young-Min Paik
JWJ. 2006;24(2):42-47.   Published online 2006 July 18

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Improvement Effects of Fatigue Strength by Burr Grinding and Hammer Peening Under Variable Amplitude Loading
Welding in the World. 2012;56(7-8):109-117   Crossref logo
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Diode Laser Weld Toe Re-melting as a Means of Fatigue Strength Improvement in High Strength Steels
Procedia Engineering. 2013;66:171-180   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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Improvement of Extremely Low Cycle Fatigue Strength of Welded Joints by Toe Finishing
Welding in the World. 2009;53(9-10):R238-R245   Crossref logo
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Stress intensity factors for three-dimensional weld toe cracks using weld toe magnification factors
Fatigue & Fracture of Engineering Materials & Structures. 2013;37(2):146-156   Crossref logo

The Peak Stress Method for Fatigue Strength Assessment of welded joints with weld toe or weld root failures
Welding in the World. 2011;55(7-8):22-29   Crossref logo
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Burr Grinding
IIW Recommendations on Methods for Improving the Fatigue Strength of Welded Joints. 2013;4-12   Crossref logo
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Influence of the radius of curvature at the weld toe in the fatigue strength of fillet welded joints
International Journal of Fatigue. 1989;11(1):29-36   Crossref logo
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Weld toe modification using spherical-tip WC tool FSP in fatigue strength improvement of high-strength low-alloy steel joints
Materials & Design. 2018;160:1019-1028   Crossref logo
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Effect of Initial Weld Quality on the Benefit of Burr Grinding on Fatigue Strength
Welding in the World. 2005;49(9-10):111-118   Crossref logo
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