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- W3130618311 abstract "As an innovation of the conventional Tungsten Inert Gas (TIG) weldingTungsten Inert Gas (TIG) welding, Keyhole Tungsten Inert GasKeyhole Tungsten Inert Gas (K-TIG) welding (K-TIG) welding is highly efficient, well-known for its penetration ability and welding quality. In this chapter, the K-TIG weldingK-TIG welding is introduced, including its equipment, operation methods, the influence of welding parameters and application extensions. Then, the keyhole stability rules are discussed, so do the arc forcesArc forces and heat input. To obtain a deeper insight into the welding process, experiments on Ti alloy are carried out, from which the arc current signal, arc voltageVoltage signal and arc acoustic signalAcoustic signal are collected synchronously. Some characteristics are extracted from the collected signals, by which the welding process is analyzed quantitatively. After the careful analysis of K-TIG weldingK-TIG welding process, a welding penetration recognitionPenetration recognition model is established, which shows a good performance. Finally, to evaluate K-TIG weldingK-TIG welding, experiments are performed on duplex stainless steelsDuplex stainless steels and Ti alloys. The effect of the welding parameters on the weld geometry profileWeld geometry profile and the misorientation angle distribution of grain boundaryMisorientation Angle Distribution of Grain Boundary (MADGB) are discussed. The microstructure and mechanical propertiesMechanical properties of weldments are evaluated. All of the testing results verify the perfect performance and welding quality of K-TIG weldingK-TIG welding." @default.
- W3130618311 created "2021-03-01" @default.
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- W3130618311 date "2021-01-01" @default.
- W3130618311 modified "2023-10-16" @default.
- W3130618311 title "A Novel High-Efficiency Keyhole Tungsten Inert Gas (K-TIG) Welding: Principles and Practices" @default.
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- W3130618311 doi "https://doi.org/10.1007/978-3-030-63986-0_10" @default.
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