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Prediction of Indentation Depth of Resistance Spot Welding Using Electrode Displacement Signal
Sehyeon Kim, Insung Hwang, Munjin Kang, Jiyong Park, Jiyoung Yu
JWJ. 2021;39(3):314-322.   Published online 2021 June 11    DOI: https://doi.org/10.5781/JWJ.2021.39.3.10

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Prediction of Indentation Depth of Resistance Spot Welding Using Electrode Displacement Signal
Journal of Welding and Joining. 2021;39(3):314-322   Crossref logo
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Resistance spot welding processing monitoring based on electrode displacement curve using moving range chart
Measurement. 2009;42(7):1032-1038   Crossref logo
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Monitoring Nugget Size of Micro Resistance Spot Welding (Micro RSW) Using Electrode Displacement-Time Curve
Advanced Materials Research. 2012;463-464:107-111   Crossref logo
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Characteristics of Electrode Displacement and Force in Resistance Spot Welding
Advanced Materials Research. 2011;337:379-382   Crossref logo
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Characteristics of shunting effect in resistance spot welding in mild steel based on electrode displacement
Measurement. 2018;115:233-242   Crossref logo
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Quality control based on electrode displacement and force in resistance spot welding
Frontiers of Mechanical Engineering in China. 2010;5(4):412-417   Crossref logo
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Quality Prediction of Resistance Spot Welding Joints From Pre- and Post-Welding Inputs Using Stacking of Tree Ensemble Models
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Expulsion Intensity Monitoring and Modeling in Resistance Spot Welding Based on Electrode Displacement Signals
Volume 2: Manufacturing Processes; Manufacturing Systems; Nano/Micro/Meso Manufacturing; Quality and Reliability. 2020;   Crossref logo
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Quality monitoring of resistance spot welding based on electrode displacement characteristics analysis
Frontiers of Mechanical Engineering in China. 2007;2(3):330-335   Crossref logo
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Automatic welding quality classification for the spot welding based on the Hopfield associative memory neural network and Chernoff face description of the electrode displacement signal features
Mechanical Systems and Signal Processing. 2017;85:1035-1043   Crossref logo
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