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Predicting Failure Modes of Resistance Spot Welds from the Chemical Composition of Materials
Heewon Cho, Sangwoo Nam, Minjung Kang, Munjin Kang, Young-Min Kim
JWJ. 2020;38(5):450-459.   Published online 2020 October 13    DOI: https://doi.org/10.5781/JWJ.2020.38.5.4

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Predicting Failure Modes of Resistance Spot Welds from the Chemical Composition of Materials
Journal of Welding and Joining. 2020;38(5):450-459   Crossref logo
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Failure modes of spot welds in quasi – static tensile – shear loading of coated steel sheets.
Materials Today: Proceedings. 2017;4(2):3672-3677   Crossref logo
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On the failure of low carbon steel resistance spot welds in quasi-static tensile–shear loading
Materials & Design. 2010;31(8):3647-3652   Crossref logo
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Failure mode transition in AHSS resistance spot welds. Part I. Controlling factors
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Resistance spot weld performance and weld failure modes for dual phase and TRIP steels
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Shrinkage Void Formation in Resistance Spot Welds: Its Effect on Advanced High-Strength-Steel Weld Strength and Failure Modes
Journal of Materials Engineering and Performance. 2019;28(12):7514-7526   Crossref logo
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Ultrasonic testing of resistance spot welds
Ultrasonics. 1968;6(2):131   Crossref logo
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A study on the effect of chemical composition on the microstructural characteristics and mechanical performance of DP1000 resistance spot welds
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Theoretical fatigue-effective notch stresses at spot welds
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Predicting the hardness profile across resistance spot welds in martensitic steels
Welding in the World. 2014;58(3):297-305   Crossref logo
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