In this work, T2 red copper and high nitrogen austenitic stainless steel (HNASS) were explosively welded for the first time. The welding window was theoretically developed, and the experiment was designed by considering the effect of explosive loading on welding quality. To evaluate the welding quality, the microstructure and mechanical properties of the composite material were systematically investigated. The results showed that the welding quality was in good agreement with the results predicted by the welding window. The micromorphology of the welding interface changed with a varied welding parameter, and no intermetallic compounds were found at the welding interface by EDS analysis. The microhardness of the two raw materials both increa...
WOS: 000444156000002In this study, austenitic stainless steel (AISI 316L) and S235JR plates were joi...
High Mn steel containing about 16% Mn was cladded to a low C steel by explosive welding. The experim...
This work aimed to study aluminium to stainless steel explosive welds produced using two different i...
In this research, the effect of standoff distance and explosive material thickness on metallurgical ...
Explosion welding was applied for joining CuCriZr copper alloy to 316 LN ITER Grade stainless steel ...
Explosion welding was applied for joining CuCriZr copper alloy to 316 LN ITER Grade stainless steel ...
The aim of this study was to investigate the strength of explosive welded metals with the same chemi...
Dissertação de Mestrado Integrado em Engenharia Mecânica apresentada à Faculdade de Ciências e Tecno...
Aluminium and copper are two metals frequently used in the automotive and aerospace industries due t...
Aluminium and copper are two metals frequently used in the automotive and aerospace industries due t...
The aim of this research is to investigate the influence of explosive ratio and type of sensitizer o...
The influence of base material properties on the interfacial phenomena in copper and aluminium-coppe...
Explosive welding is one of the industrially important techniques employing high energies derived fr...
The purpose of this study is to produce composite plates through explosive welding process widely us...
High Mn steel containing about 16% Mn was cladded to a low C steel by explosive welding. The experim...
WOS: 000444156000002In this study, austenitic stainless steel (AISI 316L) and S235JR plates were joi...
High Mn steel containing about 16% Mn was cladded to a low C steel by explosive welding. The experim...
This work aimed to study aluminium to stainless steel explosive welds produced using two different i...
In this research, the effect of standoff distance and explosive material thickness on metallurgical ...
Explosion welding was applied for joining CuCriZr copper alloy to 316 LN ITER Grade stainless steel ...
Explosion welding was applied for joining CuCriZr copper alloy to 316 LN ITER Grade stainless steel ...
The aim of this study was to investigate the strength of explosive welded metals with the same chemi...
Dissertação de Mestrado Integrado em Engenharia Mecânica apresentada à Faculdade de Ciências e Tecno...
Aluminium and copper are two metals frequently used in the automotive and aerospace industries due t...
Aluminium and copper are two metals frequently used in the automotive and aerospace industries due t...
The aim of this research is to investigate the influence of explosive ratio and type of sensitizer o...
The influence of base material properties on the interfacial phenomena in copper and aluminium-coppe...
Explosive welding is one of the industrially important techniques employing high energies derived fr...
The purpose of this study is to produce composite plates through explosive welding process widely us...
High Mn steel containing about 16% Mn was cladded to a low C steel by explosive welding. The experim...
WOS: 000444156000002In this study, austenitic stainless steel (AISI 316L) and S235JR plates were joi...
High Mn steel containing about 16% Mn was cladded to a low C steel by explosive welding. The experim...
This work aimed to study aluminium to stainless steel explosive welds produced using two different i...