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美国濒海战斗舰用铝合金材料评述

郭泽亮 樊笑婕

郭泽亮, 樊笑婕. 美国濒海战斗舰用铝合金材料评述[J]. 材料开发与应用, 2021, 36(6): 77-82.
引用本文: 郭泽亮, 樊笑婕. 美国濒海战斗舰用铝合金材料评述[J]. 材料开发与应用, 2021, 36(6): 77-82.
GUO Zeliang, FAN Xiaojie. Reviews on Marine Aluminum Alloys for LCS of USA[J]. Development and Application of Materials, 2021, 36(6): 77-82.
Citation: GUO Zeliang, FAN Xiaojie. Reviews on Marine Aluminum Alloys for LCS of USA[J]. Development and Application of Materials, 2021, 36(6): 77-82.

美国濒海战斗舰用铝合金材料评述

详细信息
    作者简介:

    郭泽亮,男,1963年,研究员,主要从事情报研究工作。E-mail:zlg008@126.com

  • 中图分类号: TG146.2;U668.2

Reviews on Marine Aluminum Alloys for LCS of USA

  • 摘要: 简要介绍了美国濒海战斗舰研制情况,评述了濒海战斗舰用主壳体用材,介绍了铝合金主壳体材料的合金种类、应用部位、材料规格及材料用量,确定了铝合金壳体材料的腐蚀保护涂料体系、外加电流保护等方案,并介绍了美国在舰船用铝合金方面近期的研究动向。

     

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    [3] Littoral Combat Ship (LCS)[OL].[2020-8-31]. https://www.naval-technology.com/projects/littoral/.
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    [6] MILLS R J. Surface orientation dependent corrosion damage and temperature dependent mechanical property degradation of Sensitized AA5083-H116 Alloys[D]. Blacksburg, VA, USA, 2018.
    [7] Aluminum structure design[R]. SSC-452, 2007.
    [8] LCS corrosion no serious problem, U.S. Navy and analysts say[OL].[2020-9-1]. https://www.al.com/press-register-business/2011/07/lcs_corrosion_no_serious_probl.html
    [9] PUNTA. Preserving the USS Omaha's propulsion system[EB]. E-newsletter, 2020.
    [10] CANEPA E, STIFANESE R, MEROTTO L, et al. Corrosion behaviour of aluminium alloys in deep-sea environment:a review and the KM3NeT test results[J]. Marine Structures, 2018, 59:271-284.
    [11] Corrosion policy, directives and guidance:Corrosion Planning Imperative; for weapon, facility and infrastuctrue procurements[R]. Williamsburg, VA, 2017.
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出版历程
  • 收稿日期:  2021-05-10
  • 刊出日期:  2021-12-25

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