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2020 | OriginalPaper | Buchkapitel

Research on Fuzzy Comprehensive Evaluation of Seam Quality in Double-Wire Double-Pulsed MIG High-Speed Welding

verfasst von : Huangsheng Xie, Zhihe Fu, Jiaxiang Xue, Yu Hu

Erschienen in: Transactions on Intelligent Welding Manufacturing

Verlag: Springer Singapore

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Abstract

In this paper, quantitative evaluation method of the welding stability and quality based on current sample entropy and current probability density distribution function were explored. A comprehensive evaluation method of welding quality based on fuzzy logic inference was established, and the method was applied to double wire double pulse. The MIG high-speed welding process stability and weld quality were quantitatively evaluated. The current sample entropy algorithm was used to analyze the effects of twin-wire welding speed, waveform modulation mode, and low frequency on welding stability. From the probability density distribution function, the front and back wire current concentration K was selected as the stability index of double-wire welding. The effects of welding speed, waveform modulation mode, and low frequency on welding stability were studied. Two quantitative indexes of current sample entropy and current concentration were selected to establish a fuzzy logic quantitative evaluation system for double-wire high-speed welding seam quality. The test results show that the correctness rate of the fuzzy logical comprehensive assessment is 85.7%, and the evaluation results obtained by the fuzzy logic inference evaluation system are close to the evaluation results by the experts.

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Metadaten
Titel
Research on Fuzzy Comprehensive Evaluation of Seam Quality in Double-Wire Double-Pulsed MIG High-Speed Welding
verfasst von
Huangsheng Xie
Zhihe Fu
Jiaxiang Xue
Yu Hu
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-7215-9_5

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