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Kurum makalesi · Scopus üzerinden alınan atıf kaydı

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Investigation of explosive welding parameters and their effects on microhardness and shear strength
Materials and Design Cilt 24 ss. 659-664
Scopus Toplam 211 atıf DOI
The aim of this study was to investigate the strength of explosive welded metals with the same chemical compositions. Different welding interfaces (straight, wavy and continuous solidified-melted) were used with changing explosive welding parameters [stand-off distance ( s ), explosive loading ( R ) and anvils]. Joined metals were investigated under heat-treated and untreated conditions. Results on the microstructure, microhardness, tensile shear strength and bending tests are reported. According to the experimental results, the effect of the anvil on the explosive welding process was only the joining or not-joining performance. It was shown that the bonding interface changed from a straight to a wavy structure when the explosive loading and stand-off distance were increased. For wavy interfaces, when the explosive loading was increased the wavy length and amplitude increased. Results of tensile shear and bending tests showed that heat-treated specimens have more strength than untreated samples. According to tensile shear test results, straight and wavy interfaces had similar strength. In addition, in bending tests of untreated specimens it was shown that the bending zone had some cracks. © 2003 Elsevier Ltd. All rights reserved.
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Atıf Yapan Yayın
The punching of DP1000 automotive steel–Al laminate composite fabricated by explosive welding: Effect of tool geometry on cutting force and cut surfaces
Proceedings of the Institution of Mechanical Engineers Part E Journal of Process Mechanical Engineering Cilt 240 ss. 1066-1080
Scopus Havuzumuzda 1 atıf almış
The study focussed on the explosive welding of DP1000 steel and Al sheets. Secondarily, the punching of these sheets with various tips was performed, analysed and the cut surfaces were visually inspected (using electron and stereo microscopy). Moreover, a three-dimensional finite element modeling (FEM) analysis was conducted to predict the punching process of the welded sheet metal specimen. Additionally, the metal plate was subjected to a tensile test with the objective of obtaining data on its strength and ductility. DP1000-Al sheets can be welded successfully. The strength values of the composite (668 MPa) are lower than those of DP1000 but significantly higher than the Al sheet, showing that the composite has the properties of both materials. The cutting forces were reduced by 54.5%, 57%, 62%, and 72%, respectively, when the V16, R1, R2, and 16 punches were employed instead of the flat tip punch (P0). Reduced cutting force supports the laminate stability. The study of macro and micro images proved useful in understanding the surfaces and areas created by the cutting process. The findings of this study have the potential to establish a foundation for subsequent research, particularly concerning the implementation of sophisticated FEM and machine learning methodologies.
Atıf Yapan Makale Bilgileri
Kurumlar (3)
Gazi Üniversitesi Ankara, Turkey
Karabük Üniversitesi Karabuk, Turkey
Selçuk Üniversitesi Selçuklu, Turkey