A process qualification-oriented data-driven framework for Wire Arc Additive Manufacturing (WAAM) integrating qualification data, process monitoring and feedback control, is presented. A proportional control strategy regulating heat input by varying the Contact Tip–to–Workpiece Distance (CTWD) is developed to enhance process stability, ensure consistent layer geometry and maintain the qualified heat-input conditions for process qualification. To assess the control strategy stability, deep learning-based CTWD soft sensing from high-frequency welding signals is combined with an uncertainty-aware process quality index. The framework is validated on Invar 36 alloy, but it supports extension to other alloys and arc welding-based additive processes.

Heat input control and deep learning-based indirect measure of process and deposition stability in Wire Arc Additive Manufacturing / Caggiano, A., Mattera, G., Zhang, Y., Teti, R.. - In: CIRP ANNALS. - ISSN 0007-8506. - (2026). [10.1016/j.cirp.2026.04.008]

Heat input control and deep learning-based indirect measure of process and deposition stability in Wire Arc Additive Manufacturing

Caggiano, Alessandra
;
Mattera, Giulio;Teti, Roberto
2026

Abstract

A process qualification-oriented data-driven framework for Wire Arc Additive Manufacturing (WAAM) integrating qualification data, process monitoring and feedback control, is presented. A proportional control strategy regulating heat input by varying the Contact Tip–to–Workpiece Distance (CTWD) is developed to enhance process stability, ensure consistent layer geometry and maintain the qualified heat-input conditions for process qualification. To assess the control strategy stability, deep learning-based CTWD soft sensing from high-frequency welding signals is combined with an uncertainty-aware process quality index. The framework is validated on Invar 36 alloy, but it supports extension to other alloys and arc welding-based additive processes.
2026
Heat input control and deep learning-based indirect measure of process and deposition stability in Wire Arc Additive Manufacturing / Caggiano, A., Mattera, G., Zhang, Y., Teti, R.. - In: CIRP ANNALS. - ISSN 0007-8506. - (2026). [10.1016/j.cirp.2026.04.008]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/1052441
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