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Original scientific paper

https://doi.org/10.21278/TOF.462039222

Influence of Punch Shapes on Forces and Part Quality in the Punching of Explosively Welded DP600, Al1100, and DP600-Al1100 Composite Plates

Khalil Belras Ali ; Department of Mechanical Engineering, Karabuk University, Engineering Faculty, Karabük Turkey
Bilge Demir ; Department of Mechanical Engineering, Karabuk University, Engineering Faculty, Karabük Turkey
Hakan Gürün orcid id orcid.org/0000-0001-6189-6830 ; Department of Manufacturing Engineering, Gazi University, Faculty of Technology, Teknikokullar, Ankara, Turkey
Mustafa Acarer ; Department of Mechanical Engineering, Selcuk University, Faculty of Technology, Konya, Turkey


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Abstract

This study theoretically and experimentally investigates blanking/piercing operations of explosively welded commercial DP600 advanced steel sheets, Al1100 aluminium sheets, and DP600-Al1100 composite plates, in which punches with different tip shapes are used. The experimental studies included several methods, such as explosive welding, punching, tensile testing, and macro image analyses using digital, optical, and SEM microscopes. The theoretical studies comprised finite element modelling using 3D models. The explosive weld was successfully applied, and the obtained Fe-Al weld microstructure was evaluated. A total of five punches, which have different tip shapes – flat-ended (0°), angled (16°), concave (R1 and R2), and V-shaped (V16) tips – were used in the experiments. Blanking forces were obtained using a load cell mounted to the die, a data acquisition card, an amplifier, and computer software. The simulation and the experimental study results were in agreement and clearly showed the effects of the punch shear angle and shape on the forces required for blanking/piercing.

Keywords

sheet metal formability; steel; blanking force; edge quality; punch type and angle; DP600-Al1100 composite plate

Hrčak ID:

280229

URI

https://hrcak.srce.hr/280229

Publication date:

15.6.2022.

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