Exploitation of force displacement curves in blanking—feature engineering beyond defect detection

Author:

Kubik ChristianORCID,Hohmann Johannes,Groche Peter

Abstract

AbstractWith the current tendency of mass production towards customer-oriented serial production, blanking processes are facing new challenges. They require an increase in knowledge about faulty process conditions and their influence on the quality of a component as well as an instruction for a target-oriented adaptation of the process. The aim of this study is therefore to identify property deviations based on force-displacement curves and to establish correlations between the quality of the component and features of force-displacement curves. For this purpose, parameter variations are carried out on a high-speed press and features are extracted from these measured time series. Afterwards, the correlation between varying process parameters and features is carried out to obtain a conclusion about the condition of the component. The results of these studies for a regression analysis form the basis for a decision support system to identify deviations of the component as well as faulty process conditions. The paper shows that a reliable correlation between the quality of the component and force-displacement curves is possibly based on the feature engineering approach even under industrial boundary conditions. This also applies to the simultaneous modification and variations within a limited range of several process parameters.

Funder

Bundesministerium für Bildung und Forschung

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Software,Control and Systems Engineering

Reference52 articles.

1. Demmel P, Nothhaft K, Golle R (2012) Zerteilen, Handbuch Umformen, Kapitel 10, p 679–729.

2. (2020) Metal stamping market size, share & trends report metal stamping market size, share & trends analysis report by process (blanking, embossing), by application (automotive, industrial machinery, consumer electronics), by region, and segment forecasts, 2020–2027. https://www.grandviewresearch.com/industry-analysis/metal-stamping-market. Accessed 26 Jul 2020

3. Berger R (2012) Mastering product complexity.

4. Weck M (2006) Werkzeugmaschinen 3 – Mechatronische Systeme, Vorschubantriebe, Prozessdiagnose, VDI-Verlag Düsseldorf.

5. Klocke F, Kamps S, Mattfeld P, Shirobokov A et al (2017) Assisstenzsysteme in der Produktionstechnik, Virtuelle Instrumente in der Praxis, Begleitband zum 22. VIP-Kongress, p 265–288

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