ГОСТ ISO 9224—2022
Библиография
[1] Dean, S.W. and Reiser D.B. Analysis of Long Term Atmospheric Results From ISO CORRAG Program. Outdoor
Atmospheric Corrosion. ASTM STP 1421, Townsend, H.E. Ed. ASTM International, West Conshohocken, PA, USA,
2002, pp. 3—18
[2] Knotkova, D., Boschek, P., and Kreislova, K. Results of ISO CORRAG Program: Processing of One-Year Data in
Respect to Corrosivity Classification. Atmospheric Corrosion. ASTM STP 1239, Kirk, W.W. and Lawson, H.H. Eds.
ASTM International, West Conshohocken, PA, USA, 1995, pp. 38—55
[3] Knotkova, D. and Vlckova, J. Atmospheric Corrosion of Bolted Lap Joints Made of Weathering Steels. Atmospheric
Corrosion. ASTM 1239, Kirk, W.W. and Lawson, H.H. Eds. ASTM International, West Conshohocken, PA, USA,
1995, pp. 114—136
[4]Castillo, A.P. and Popplewell, J.M. General, Localized and Stress Corrosion Cracking of a Series of Copper Alloys in
Natural Environments. Atmospheric Corrosion of Metals, STP 767, S.W. Dean, Jr. and Rhea, E.C., Eds. ASTM
International, West Conshohocken, PA, USA, 1982, pp. 60—84
[5]Costas, L.P. Atmospheric Corrosion of CopperAlloys Exposed for 15 to 20 Years. Atmospheric Corrosion of Metals,
STP 767, S.W. Dean, Jr. and Rhea, E.C. Eds. ASTM International, West Conshohocken, PA, USA, 1982, pp. 106—
115
[6]ASTM G101, Standard Guide for Estimating the Atmospheric Corrosion Resistance of Low-Alloy Steels
[7]Townsend, H.E. The Effects of Alloying Elements on the Corrosion Resistance of Steel in Industrial Environments.
Proceedings of the Fourteenth International Corrosion Congress. Corrosion Institute of South Africa, September
1999
[8] Townsend, H.E. Estimating the Atmospheric Corrosion Resistance of Weathering Steels. Outdoor Atmospheric
Corrosion. STP 1421, Townsend, H.E. Ed. ASTM International, West Conshohocken, PA, USA, 2002, pp. 292—300
[9] Townsend, H.E. Effects of Silicon and Nickel Contents on the Atmospheric Corrosion Resistance of ASTM A500
Weathering Steel. Atmospheric Corrosion. ASTM 1239, Kirk, W.W. and Lawson, H.H. Eds. ASTM International,
West Conshohocken, PA, USA, 1995, pp. 85—100
[10]Coburn, S.K., Komp, M.E., and Lore, S.G. Atmospheric Corrosion Rates of Weathering Steels Test Sites in the
Eastern United States — Affect of Environment and Test Panel Orientation. Atmospheric Corrosion. ASTM 1239,
Kirk, W.W. and Lawson, H.H. Eds. ASTM International, West Conshohocken, PA, USA, 1995, pp. 101—113
[11] Morcillo, M., Simancas, J., and Feliu, S. Long-Term Atmospheric Corrosion in Spain: Results after 13—16 Years
of Exposure and Comparison with Worldwide Data. Atmospheric Corrosion. ASTM STP 1239, Kirk, W.W., and
Lawson, H.H. Eds. ASTM International, West Conshohocken, PA, USA, 1995, pp. 195—214
[12] ISO 14713-1, Zinc coatings — Guidelines and recommendations for the protection against corrosion of iron and
steel in structures — Part 1: General principles of design and corrosion resistance
(Покрытия цинковые. Руководящие указания и рекомендации по защите от коррозии конструкций из чугуна
и стали. Часть 1. Общие основы проектирования и устойчивости против коррозии)
[13]Knotkova, D., Kreislova, К., Dean, S.W. ISO CORRAG International Atmospheric Exposure Program Summary of
Results. ASTM Data Series 71. ASTM International, PA, USA, 2010
[14] ISO 11303, Corrosion of metals and alloys — Guidance for selection of protection method against atmospheric
corrosion
(Коррозия металлов и сплавов. Руководство по выбору метода защиты от атмосферной коррозии)
[15] ISO 9225, Corrosion of metals and alloys — Corrosivity of atmospheres — Measurement of environmental
parameters affecting corrosivity of atmospheres
(Коррозия металлов и сплавов. Коррозионная активность атмосферы. Измерение параметров окружающей
среды, влияющих на коррозионную активность атмосферы)
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