塗膜によるアルミニウム青銅の防食効果と塗膜の耐陰極剥離性

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Published inマリンエンジニアリング Vol. 59; no. 2; pp. 234 - 240
Main Authors 武田, 宗也, 望月, 敬美, 横田, 源弘, 鈴木, 隆
Format Journal Article
LanguageJapanese
Published 公益社団法人 日本マリンエンジニアリング学会 01.03.2024
Online AccessGet full text
ISSN1346-1427
1884-3778
DOI10.5988/jime.59.234

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Author 望月, 敬美
横田, 源弘
武田, 宗也
鈴木, 隆
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  fullname: 望月, 敬美
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  fullname: 横田, 源弘
  organization: 元水産大学校
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  fullname: 鈴木, 隆
  organization: 株式会社ファームスズキ
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References 13) J. Sakuma, Protective Potentials for Copper Alloys under the Cavitation in Sea Water, Corrosion engineering, 9-2(1960), 52-55.
2) M. I. Topchiashvili et al., Use of Polymeric Materials for Protection against Cavitation Erosion, IAHR/AIRH Symposium 1970, Stockholm (1970), Paper H5.
8) Y. Kagawa et al., Corrosion Prevention Performance of Titanium Clad Steel Plates Applied on the Splash and Tidal Zones of Steel Piers, J. JSCE, 15-435 (1991), 79-87.
15) Instruction manual of clear type propeller paint (BELLBOTTOM PROPELLER SET TYPE 2), NKM Coatings Co., Ltd.
12) K. Akamine and I. Kashiki, Mechanism of Electrodeposition in Seawater, Ishikawajima-Harima engineering review, 43-41(2003), 27-33
9) H. Mochizuki et al., Copper Alloy’s Cathodic Protection Against Cavitation Erosion in Seawater, T. JSME, Series A, 73-733 (2007), 1065-1070.
6) T. Matsumoto et al., Characteristic and Durability of Super High Build Epoxy Resin Coating, DNT Technical Report on Coatings, 6(2006), 10-15.
3) S. Liu and T. Ikohagi, Effects of Cathodic Protection on Cavitation Erosion in Vibratory Tests, T. JSME, Series B, 62-604 (1996), 4015-4019
1) T. Okada and S. Hattori, Cavitation Erosion (15) - Ⅻ Cavitation Erosion of High Polymer Materials -,Science of machine, 50-11(1998), 1182-1188.
11) Japan steel club ed., Corrosion Protection of Marine Structures Q&A, (2001), 1-202, Gihodo Shuppan Co., Ltd.
4) S. Hattori et al., Effects of Cathodic Protection 0n Cavitation Erosion of Austempered Spheroidal Graphite Cast Iron in Corrosive Environment, Turbomachinery, 25-8 (1997), 420-427
7) T. Tanabe et al., The Evaluation of Anti-Corrosive Properties of Coating Systems for Offshore Steel Structures by Cathodic Disbondment Test, DNT Technical Report on Coatings, 7(2007), 7-13.
10) K. S. Tan et al., Solid particle erosion-corrosion behavior of a novel HVOF nickel aluminum bronze coating for marine applications-correlation between mass loss and electrochemical measurements, WEAR, 258 (2005), 629-640.
14) G. Shimizu, Electrodeposition Process of Minerals in Sea Water for Oceanic Engineering −Part 1 Fundamental study of iron materials, J. Struct. Constr. Eng., AIJ, 62-493 (1997), 147-154.
5) T. Ozaki et al., Corrosion of Seawater Equipment -Damage and Countermeasures-,(2002),198-202, Gijutsu-Hyohron Co., Ltd
References_xml – reference: 5) T. Ozaki et al., Corrosion of Seawater Equipment -Damage and Countermeasures-,(2002),198-202, Gijutsu-Hyohron Co., Ltd.
– reference: 8) Y. Kagawa et al., Corrosion Prevention Performance of Titanium Clad Steel Plates Applied on the Splash and Tidal Zones of Steel Piers, J. JSCE, 15-435 (1991), 79-87.
– reference: 1) T. Okada and S. Hattori, Cavitation Erosion (15) - Ⅻ Cavitation Erosion of High Polymer Materials -,Science of machine, 50-11(1998), 1182-1188.
– reference: 6) T. Matsumoto et al., Characteristic and Durability of Super High Build Epoxy Resin Coating, DNT Technical Report on Coatings, 6(2006), 10-15.
– reference: 13) J. Sakuma, Protective Potentials for Copper Alloys under the Cavitation in Sea Water, Corrosion engineering, 9-2(1960), 52-55.
– reference: 7) T. Tanabe et al., The Evaluation of Anti-Corrosive Properties of Coating Systems for Offshore Steel Structures by Cathodic Disbondment Test, DNT Technical Report on Coatings, 7(2007), 7-13.
– reference: 10) K. S. Tan et al., Solid particle erosion-corrosion behavior of a novel HVOF nickel aluminum bronze coating for marine applications-correlation between mass loss and electrochemical measurements, WEAR, 258 (2005), 629-640.
– reference: 12) K. Akamine and I. Kashiki, Mechanism of Electrodeposition in Seawater, Ishikawajima-Harima engineering review, 43-41(2003), 27-33.
– reference: 4) S. Hattori et al., Effects of Cathodic Protection 0n Cavitation Erosion of Austempered Spheroidal Graphite Cast Iron in Corrosive Environment, Turbomachinery, 25-8 (1997), 420-427.
– reference: 15) Instruction manual of clear type propeller paint (BELLBOTTOM PROPELLER SET TYPE 2), NKM Coatings Co., Ltd.
– reference: 2) M. I. Topchiashvili et al., Use of Polymeric Materials for Protection against Cavitation Erosion, IAHR/AIRH Symposium 1970, Stockholm (1970), Paper H5.
– reference: 11) Japan steel club ed., Corrosion Protection of Marine Structures Q&A, (2001), 1-202, Gihodo Shuppan Co., Ltd.
– reference: 14) G. Shimizu, Electrodeposition Process of Minerals in Sea Water for Oceanic Engineering −Part 1 Fundamental study of iron materials, J. Struct. Constr. Eng., AIJ, 62-493 (1997), 147-154.
– reference: 9) H. Mochizuki et al., Copper Alloy’s Cathodic Protection Against Cavitation Erosion in Seawater, T. JSME, Series A, 73-733 (2007), 1065-1070.
– reference: 3) S. Liu and T. Ikohagi, Effects of Cathodic Protection on Cavitation Erosion in Vibratory Tests, T. JSME, Series B, 62-604 (1996), 4015-4019.
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Title 塗膜によるアルミニウム青銅の防食効果と塗膜の耐陰極剥離性
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