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Nanocarbide precipitation strengthened ultrahigh strength, corrosion resistant, structural steels and method of making said steels

机译:纳米碳化物沉淀增强了超高强度,耐腐蚀的结构钢及其制造方法

摘要

A nanocarbide precipitation strengthened ultrahigh-strength, corrosion resistant, structural steel possesses a combination of strength and corrosion resistance comprising in combination, by weight, about: 0.1 to 0.3% carbon (C), 8 to 17% cobalt (Co), 0 to 5% nickel (Ni), 6 to 12% chromium (Cr), less than 1% silicon (Si), less than 0.5% manganese (Mn), and less than 0.15% copper (Cu), with additives selected from the group comprising about: less than 3% molybdenum (Mo), less than 0.3% niobium (Nb), less than 0.8% vanadium (V), less than 0.2% tantalum (Ta), less than 3% tungsten (W), and combinations thereof, with additional additives selected from the group comprising about: less than 0.2% titanium (Ti), less than 0.2% lanthanum (La) or other rare earth elements, less than 0.15% zirconium (Zr), less than 0.005% boron (B), and combinations thereof, impurities of less than about: 0.02% sulfur (S), 0.012% phosphorus (P), 0.015% oxygen (O) and 0.015% nitrogen (N), the remainder substantially iron (Fe), incidental elements and other impurities. The alloy is strengthened by nanometer scale M2C carbides within a fine lath martensite matrix from which enhanced chemical partitioning of Cr to the surface provides a stable oxide passivating film for corrosion resistance. The alloy, with a UTS in excess of 280 ksi, is useful for applications such as aircraft landing gear, machinery and tools used in hostile environments, and other applications wherein ultrahigh-strength, corrosion resistant, structural steel alloys are desired.
机译:纳米碳化物沉淀增强的超高强度,耐腐蚀结构钢具有强度和耐蚀性的组合,按重量计组合包括:0.1至0.3%的碳(C),8至17%的钴(Co),0至5%的镍(Ni),6-12%的铬(Cr),少于1%的硅(Si),少于0.5%的锰(Mn)和少于0.15%的铜(Cu),且添加剂选自以下组包含约:小于3%的钼(Mo),小于0.3%的铌(Nb),小于0.8%的钒(V),小于0.2%的钽(Ta),小于3%的钨(W)及其组合其,并具有选自以下的组的附加添加剂:小于0.2%的钛(Ti),小于0.2%的镧(La)或其他稀土元素,小于0.15%的锆(Zr),小于0.005%的硼( B)及其组合,杂质少于约:0.02%硫(S),0.012%磷(P),0.015%氧(O)和0.015%氮(N),其余大部分•铁(Fe),附带元素和其他杂质。合金在细板条马氏体基体中被纳米级M 2 C碳化物增强,从中增强的Cr与表面的化学分配可提供稳定的氧化物钝化膜,以提高抗腐蚀性。该合金的UTS超过280 ksi,可用于飞机起落架,敌对环境中使用的机械和工具等应用,以及需要超高强度,耐腐蚀的结构钢合金的其他应用。

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