首页> 外文会议>Corrosion 2008;Corrosion conference and expo >A PURE TERNARY HIGH MOLYBDENUM CONTAINING NI-CR-MO Alloy UNS N06059 (Alloy 59) PROVIDES RELIABLE SOLUTIONS TO VARIOUS MAINTENANCE AND CORROSION PROBLEMS IN NAVAL/MARINE APPLICATIONS
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A PURE TERNARY HIGH MOLYBDENUM CONTAINING NI-CR-MO Alloy UNS N06059 (Alloy 59) PROVIDES RELIABLE SOLUTIONS TO VARIOUS MAINTENANCE AND CORROSION PROBLEMS IN NAVAL/MARINE APPLICATIONS

机译:含Ni-CR-MO合金的纯三元高钼UNS N06059(合金59)为海军/海洋应用中的各种维护和腐蚀问题提供了可靠的解决方案

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US Navy uses many metallic materials such as carbon steel, stainless steels, nickel alloys, copper alloys, titanium & aluminum alloys in their ships. Some of the major concerns are pitting/crevice corrosion, stress corrosion cracking, hydrogen embrittlement, ability to weld repair small worn and corroded areas, prevention of galvanic corrosion and reliable usage of high strength fasteners. Even though several stainless steels and nickel-based alloys have shown promise and are used in marine environments, under very severe crevice corrosion conditions, most of these have suffered from localized crevice attack, including high alloys like alloy 625 and alloy C-276. Fasteners of alloy K-500 have failed due to stress corrosion cracking. Alloy 718 fasteners suffer from localized attack. The search for alloys that are essentially immune to crevice corrosion attack in marine environments and provide reliable high strength fasteners for replacing K-500 fasteners , led the US Navy to consider Ni-Cr-Mo alloys with the highest combination of chromium and molybdenum in a nickel matrix. One such pure ternary alloy, alloy 59 (UNS N06059) having a typical chemical composition of 59% nickel, 23% chromium, 16% molybdenum and iron levels of less than 1%, appears to have fulfilled this need. Extensive laboratory and field tests by various companies and corrosion laboratories in USA including testing by the US Navy, U.K, Norway and France have shown this alloy to be essentially immune to crevice corrosion attack in natural sea-water, artificial sea-water and chlorinated sea-water. Due to the SCC problems associated with high strength fasteners of alloy K-500, extensive testing of cold reduced bars of alloy 59 to yield strength levels greater than 150 KSI have been conducted. Cold reduced bars of alloy 59 have shown excellent resistance to localized corrosion, hydrogen embrittlement and stress corrosion cracking while possessing very high strength, ductility, fracture toughness, high-cycle fatigue resistance and very low crack growth rate both in air and sea-water. This paper recaps some of the earlier work done by the author's company and by the US Navy engineers on this alloy. Some concerns were raised regarding the galvanic compatibility of cold reduced bars of alloy 59 with other materials used in submarines construction such as HY80 steel and K500 plates. The data from this test program is also presented in this paper along with some other data.
机译:美国海军在其舰船上使用许多金属材料,例如碳钢,不锈钢,镍合金,铜合金,钛和铝合金。一些主要问题是点蚀/缝隙腐蚀,应力腐蚀开裂,氢脆,焊接修复小磨损和腐蚀区域的能力,防止电偶腐蚀以及高强度紧固件的可靠使用。即使几种不锈钢和镍基合金已显示出希望并已在海洋环境中使用,但在非常严重的缝隙腐蚀条件下,其中大多数仍遭受局部缝隙侵蚀,包括诸如合金625和C-276的高合金。合金K-500的紧固件由于应力腐蚀开裂而失效。合金718紧固件遭受局部侵蚀。对本质上不受海洋环境中的缝隙腐蚀攻击影响并提供可靠的高强度紧固件来替代K-500紧固件的合金的搜寻,促使美国海军考虑将铬和钼的最高组合含量的Ni-Cr-Mo合金用于合金中。镍基体。一种这样的纯三元合金,具有59%的镍,23%的铬,16%的钼和小于1%的铁含量的典型化学组成的合金59(UNS N06059)看来已经满足了这一需求。美国多家公司和腐蚀实验室进行了广泛的实验室和现场测试,包括美国海军,英国,挪威和法国的测试表明,这种合金在天然海水,人造海水和氯化海中基本上不受缝隙腐蚀的侵害。 -水。由于与合金K-500的高强度紧固件有关的SCC问题,已经对合金59的冷轧棒进行了广泛的测试,以得出大于150 KSI的强度。合金59的冷还原棒材显示出优异的抗局部腐蚀,氢脆和应力腐蚀开裂的能力,同时在空气和海水中均具有非常高的强度,延展性,断裂韧性,高循环疲劳强度以及非常低的裂纹扩展率。本文回顾了作者公司和美国海军工程师在这种合金上所做的一些早期工作。人们对合金59的冷还原棒与潜艇构造中使用的其他材料(例如HY80钢和K500板)在电流上的兼容性提出了一些担忧。本文还介绍了该测试程序中的数据以及其他一些数据。

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