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Weight loss studies of fastener materials corrosion in contact with timbers treated with copper azole and alkaline copper quaternary compounds
Corrosion rates of mild steel, AISI 316 stainless steel and hot-dipped galvanised steel in contact with preservative-treated Pinus radiata have been determined using four distinct accelerated (49 +- 1 deg C) and non-accelerated (21 +- 2 deg C) weight loss methodologies. The data were measured as a function of timber moisture content and copper concentration over periods of exposure ranging from 2 weeks to 14 months. The results show that the corrosion resistance of the stainless steel was not influenced by classification or magnitude of preservative loading. Corrosion rates of this material were multiple orders of magnitude lower than those of the mild and galvanised steels. In most instances, corrosion rates of hot-dipped galvanised layers in contact with alkaline copper quaternary-treated timbers were up to a factor of 10 times, or greater, than those measured for copper-chrome-arsenate treatments. A direct negative influence of copper ion concentration on the corrosion resistance of mild steel was also observed for each preservative type.
Weight loss studies of fastener materials corrosion in contact with timbers treated with copper azole and alkaline copper quaternary compounds
Corrosion rates of mild steel, AISI 316 stainless steel and hot-dipped galvanised steel in contact with preservative-treated Pinus radiata have been determined using four distinct accelerated (49 +- 1 deg C) and non-accelerated (21 +- 2 deg C) weight loss methodologies. The data were measured as a function of timber moisture content and copper concentration over periods of exposure ranging from 2 weeks to 14 months. The results show that the corrosion resistance of the stainless steel was not influenced by classification or magnitude of preservative loading. Corrosion rates of this material were multiple orders of magnitude lower than those of the mild and galvanised steels. In most instances, corrosion rates of hot-dipped galvanised layers in contact with alkaline copper quaternary-treated timbers were up to a factor of 10 times, or greater, than those measured for copper-chrome-arsenate treatments. A direct negative influence of copper ion concentration on the corrosion resistance of mild steel was also observed for each preservative type.
Weight loss studies of fastener materials corrosion in contact with timbers treated with copper azole and alkaline copper quaternary compounds
Gewichtsverlustmessungen zur Korrosion von Befestigungswerkstoffen beim Kontakt mit Holz, behandelt mit Kupferazol und alkalischen quaternären Kupferverbindungen
Kear, Gareth (Autor:in) / Wu, Häi-Zhen (Autor:in) / Jones, Mark S. (Autor:in)
Corrosion Science ; 51 ; 252-262
2009
11 Seiten, 14 Bilder, 10 Tabellen, 44 Quellen
Aufsatz (Zeitschrift)
Englisch
galvanische Korrosion , unlegierter Stahl , austenitischer nichtrostender Stahl , verzinkter Stahl , Feuerverzinken , Holz , Holzschutzmittel , Feuchtigkeit , quaternäre Ammoniumverbindung , Kupferverbindung , Azol , Arsenat , Kupferion , Konzentrationseinfluss , Gewichtsverlust , gravimetrische Analyse , Korrosionsbeständigkeit , Korrosionsgeschwindigkeit , Chrom-Nickel-Molybdän-Stahl
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