The corrosion and passive behaviour of aluminium in chloride, bromide and iodide solutions in the absence and presence of indium, as activator ions, was investigated using electrochemical techniques. Pit formation mechanisms for aluminium in chloride-, bromide- and iodide-containing solutions appeared to be similar with the caveat that, in the case of iodide anions, liberated iodine attacked the base metal leading to destabilization of the forming film. In addition, the formation of iodic and hypoiodous acids gave rise to the build-up of a highly aggressive pit solution which inhibited repassivation. The difference in the activity of the halide anions was evident also on activation of the aluminium surface by indium ions introduced into the...
The electrochemical behaviour of 99.99% aluminium, an Al-Zn-In and Al-Zn-Hg alloy was investigated, ...
The electrochemical behaviour of 99.99% aluminium, an Al-Zn-In and Al-Zn-Hg alloy was investigated, ...
The electrochemical behaviour of 99.99% aluminium, an Al-Zn-In and Al-Zn-Hg alloy was investigated, ...
The corrosion and passive behaviour of aluminium in chloride, bromide and iodide solutions in the ab...
The corrosion and passive behaviour of aluminium in chloride, bromide and iodide solutions in the ab...
The corrosion and passive behaviour of aluminium in chloride, bromide and iodide solutions in the ab...
Results on the electrochemical behaviour of aluminium in aggressive chloride solutions containing mo...
Results on the electrochemical behaviour of aluminium in aggressive chloride solutions containing mo...
Results on the electrochemical behaviour of aluminium in aggressive chloride solutions containing mo...
The electrochemical behaviour of single-crystal aluminium oriented in the (111), (110) and (100) dir...
The electrochemical behaviour of single-crystal aluminium oriented in the (111), (110) and (100) dir...
The electrochemical behaviour of single-crystal aluminium oriented in the (111), (110) and (100) dir...
The electrochemical behaviour of single-crystal aluminium oriented in the (111), (110) and (100) dir...
Electrochemical impedance spectroscopy, scanning electron microscopy, and energy dispersive X-ray an...
Results on the electrochemical behaviour of aluminium in aggressive chloride solutions containing mo...
The electrochemical behaviour of 99.99% aluminium, an Al-Zn-In and Al-Zn-Hg alloy was investigated, ...
The electrochemical behaviour of 99.99% aluminium, an Al-Zn-In and Al-Zn-Hg alloy was investigated, ...
The electrochemical behaviour of 99.99% aluminium, an Al-Zn-In and Al-Zn-Hg alloy was investigated, ...
The corrosion and passive behaviour of aluminium in chloride, bromide and iodide solutions in the ab...
The corrosion and passive behaviour of aluminium in chloride, bromide and iodide solutions in the ab...
The corrosion and passive behaviour of aluminium in chloride, bromide and iodide solutions in the ab...
Results on the electrochemical behaviour of aluminium in aggressive chloride solutions containing mo...
Results on the electrochemical behaviour of aluminium in aggressive chloride solutions containing mo...
Results on the electrochemical behaviour of aluminium in aggressive chloride solutions containing mo...
The electrochemical behaviour of single-crystal aluminium oriented in the (111), (110) and (100) dir...
The electrochemical behaviour of single-crystal aluminium oriented in the (111), (110) and (100) dir...
The electrochemical behaviour of single-crystal aluminium oriented in the (111), (110) and (100) dir...
The electrochemical behaviour of single-crystal aluminium oriented in the (111), (110) and (100) dir...
Electrochemical impedance spectroscopy, scanning electron microscopy, and energy dispersive X-ray an...
Results on the electrochemical behaviour of aluminium in aggressive chloride solutions containing mo...
The electrochemical behaviour of 99.99% aluminium, an Al-Zn-In and Al-Zn-Hg alloy was investigated, ...
The electrochemical behaviour of 99.99% aluminium, an Al-Zn-In and Al-Zn-Hg alloy was investigated, ...
The electrochemical behaviour of 99.99% aluminium, an Al-Zn-In and Al-Zn-Hg alloy was investigated, ...