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Microstructure-property relationship in explosively welded duplex stainless steel-steel
Scopus
Toplam 149 atıf DOI
Duplex stainless steel (2205 grade) and vessel steel (DIN-P355GH grade) were cladded by explosive welding. The relationship between hardness, tensile shear strength and toughness and microstructure of cladded materials were evaluated. The bond interface of the cladded materials shows a wavy morphology. The hardness was similar in the base and flyer plate near the bond interface while a general increase was observed in both base and flyer plate about 25 μm away from interface. Tensile shear strength test results showed that duplex stainless steel-vessel steel cladded materials exhibit an acceptable joint strength. The impact toughness of the cladded materials at a given test temperature is found significantly higher than that of the base material alone because of the high impact toughness of the duplex stainless steel layer. Consequently, mechanical and corrosion properties of the low carbon steels can be increased by explosive cladding with duplex stainless steel. © 2003 Elsevier B.V. All rights reserved.
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Microstructure, mechanical properties, and corrosion resistance of an explosively welded Mg–Al composite
Scopus
Havuzumuzda Open Access 75 atıf almış
In this study, an attempt was made to manufacture an AZ31–Al5005 laminated composite by explosive welding. A mixture of ammonium nitrate (90%), fuel oil (5%), and TNT (5%) was used as the explosive. The detonation velocity of the explosive material was approximately 3100 m•s−1. The microstructure and mechanical and corrosion properties of the joint were comparatively investigated. Microstructural characterisation of the joint was conducted by optical microscopy (OM), scanning electron microscopy with energy-dispersive spectroscopy (SEM-EDS), high-resolution transmission electron microscopy (HR-TEM), and X-ray diffraction (XRD). The mechanical properties were determined using micro-Vickers hardness, tensile, and Charpy impact tests. In addition, electrochemical tests were conducted on the AZ31–Al5005 laminated composite and the individual components to determine their corrosion resistance. The corrosion behaviours of the structures were determined in a 3.5% NaCl solution at room temperature using potentiodynamic scanning (PDS). The metallurgical structure and mechanical properties of the joints were within the acceptable limits.
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Kurumlar (3)
Atatürk Üniversitesi
Erzurum, Turkey
Karabük Üniversitesi
Karabuk, Turkey
Selçuk Üniversitesi
Selçuklu, Turkey