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    • 2. 发明授权
    • High temperature thermal processing alloy
    • 高温热处理合金
    • US06537393B2
    • 2003-03-25
    • US09914514
    • 2001-08-29
    • Norman C. FarrGaylord D. Smith
    • Norman C. FarrGaylord D. Smith
    • C22C1905
    • C22C19/055C22C19/056C22C19/058F27D1/0006F27D5/00F27D2099/0008
    • A nickel base alloy for high temperature thermal processing hardware requiring ultra-low spallation and metal loss rates in oxidizing and nitriding atmospheres for use in wire mesh belting, thermocouple sheathing, resistive heating elements, heat sensing cables, furnace internals and like hardware. The compositional range of the alloy is 15.0-23.0 % Cr, 0.5-2.0 % Si, 0.0-4.0% Mo, 0.0-1.2 % Nb, 0.0-3.0 % Fe, 0.0-0.5 % Ti, 0.0-0.5 % Al, 0.0-0.3 % Mn, 0.0-0.1 % Zr, 0.0-0.06 % Ce, 0.005-0.025 % Mg, 0.0005-0.005 % B, 0.005-0.3 % C, 0.0-20.0 % Co, balance Ni. The alloy possesses a high degree of hot and cold workability, phase stability and strength retention at elevated temperatures.
    • 用于高温热处理硬件的镍基合金,其需要在用于金属丝网带,热电偶护套,电阻加热元件,热敏电缆,炉内部件等的氧化和氮化气氛中的超低剥离和金属损失率。 合金的组成范围为15.0〜23.0%的Cr,0.5〜2.0%的Si,0.0〜4.0%的Mo,0.0〜1.2%的Nb,0.0〜3.0%的Fe,0.0〜0.5%的Ti,0.0〜0.5%的Al,0.0 -0.3%Mn,0.0-0.1%Zr,0.0-0.06%Ce,0.005-0.025%Mg,0.0005-0.005%B,0.005-0.3%C,0.0-20.0%Co,余量为Ni。 该合金在高温下具有高度的冷热加工性,相稳定性和强度保持性。
    • 3. 发明授权
    • Ni-Co-Cr high temperature strength and corrosion resistant alloy
    • Ni-Co-Cr高温强度和耐腐蚀合金
    • US06491769B1
    • 2002-12-10
    • US09914504
    • 2001-08-29
    • Gaylord D. SmithBrian A. Baker
    • Gaylord D. SmithBrian A. Baker
    • C22C1903
    • C22C19/055C22C19/058
    • A high strength, corrosion resistant Cr—Co—Ni base alloy for long-life service at 530° C. to 820° C. containing in % by weight about 23.5-25.5% Cr, 15.0-22.0% Co, 0.2-2.0% Al, 0.5-2.5% Ti, 0.5-2.5% Nb, up to 2.0% Mo, up to 1.0% Mn, 0.3-1.0% Si, up to 3.0% Fe, up to 0.3% Ta, up to 0.3% W, 0.005-0.08% C, 0.01-0.3 % Zr, 0.001-0.01% B, up to 0.05% rare earth as misch metal, 0.005-0.025% Mg plus optional Ca, balance Ni including trace additions and impurities. The alloy provides a combination of strength, ductility, stability, toughness and oxidation/sulfidation resistance so as to render the alloy range uniquely suitable for engineering applications where oxygen/sulfur-containing atmospheres are life limiting, in applications such as exhaust valves for diesel engines and in tubes for coal-fired steam boilers.
    • 一种高强度,耐腐蚀的Cr-Co-Ni基合金,用于在530℃至820℃的长寿命服务,其含有重量%约23.5-25.5%的Cr,15.0-22.0%的Co,0.2-2.0%的Al, 0.5-2.5%Ti,0.5-2.5%Nb,至多2.0%Mo,至多1.0%Mn,0.3-1.0%Si,至多3.0%Fe,至多0.3%Ta,至多0.3%W,0.005% 0.08%C,0.01-0.3%Zr,0.001-0.01%B,高达0.05%稀土稀土金属,0.005-0.025%Mg加上任选的Ca,余量为Ni,包括痕量添加剂和杂质。 该合金提供强度,延展性,稳定性,韧性和抗氧化/耐硫化性的组合,以使合金范围独特地适用于含氧/含硫气氛是有限制性的工程应用,例如用于柴油发动机的排气阀 和用于燃煤蒸汽锅炉的管道
    • 4. 发明授权
    • Heater sheath alloy
    • 加热器护套合金
    • US5160382A
    • 1992-11-03
    • US882084
    • 1992-01-17
    • Gaylord D. SmithWalter H. WendlerDavid B. O'Donnell
    • Gaylord D. SmithWalter H. WendlerDavid B. O'Donnell
    • C22C38/50
    • C22C38/50
    • A material for electric heater element sheathing, which has good weldability, is oxidation- and corrosion-resistant, and forms an eye-pleasing dark gray or black surface oxide, consists essentially of, by weight, from about 8.75-15.5% nickel, about 19.5-21.0% chromium, about 0.30-0.50 manganese, about 0.50-2.0% silicon, about 0.25-0.60% aluminum, about 0.25-1.0% titanium, up to about 0.05% carbon, up to about 0.005% sulfur, up to about 0.75% copper, up to about 1.0% cobalt, up to about 1.0% molybdenum, up to about 0.02% phosphorus, about 0.001-0.015% calcium plus magnesium and remainder essentially iron, wherein the Ferrite Number is between 3 and 15.
    • 具有良好焊接性的电加热器元件护套材料是耐氧化和耐腐蚀的,并且形成令人眼花缭乱的深灰色或黑色表面氧化物,基本上由约8.75-15.5%的镍组成,约 19.5-21.0%的铬,约0.30-0.50的锰,约0.50-2.0%的硅,约0.25-0.60%的铝,约0.25-1.0%的钛,至多约0.05%的碳,至多约0.005%的硫,至多约 0.75%铜,至多约1.0%的钴,至多约1.0%的钼,至多约0.02%的磷,约0.001-0.015%的钙和镁,余量基本上为铁,其中铁素体数为3至15。
    • 8. 发明申请
    • Ni-Co-Cr High Strength and Corrosion Resistant Welding Product and Method of Preparation
    • Ni-Co-Cr高强度和耐腐蚀焊接产品及其制备方法
    • US20090321405A1
    • 2009-12-31
    • US12488786
    • 2009-06-22
    • Brian A. BakerGaylord D. SmithRonald D. Gollihue
    • Brian A. BakerGaylord D. SmithRonald D. Gollihue
    • B23K35/34C22F1/10C22C19/05C22C30/00C22F1/00
    • B23K9/0288B23K35/22B23K35/3033B23K2101/12C22C19/05C22C19/055
    • A nickel (Ni), chromium (Cr), cobalt (Co), iron (Fe), molybdenum (Mo), manganese (Mn), aluminum (Al), titanium (Ti), niobium (Nb), silicon (Si) welding alloy, articles made therefrom for use in producing weldments and methods for producing these weldments. The welding alloy contains in % by weight about: 23.5 to 25.5% Cr, 15 to 22% Co, up to 3% Fe, up to 1% Mo, up to 1% Mn, 1.1 to 2.0% Al, 0.8 to 1.8% Ti, 0.8 to 2.2% Nb, 0.05 to 0.28% Si, up to 0.3% Ta, up to 0.3% W, 0.005 to 0.08% C, 0.001 to 0.3% Zr, 0.0008 to 0.006% B, up to 0.05% rare earth metals, up to 0.025% Mg plus optional Ca and the balance Ni including trace additions and impurities. The welding alloy offers a combination of high temperature strength, ductility, stability, toughness and essentially defect-free weldability and weldments as to render the alloy range uniquely suitable for joining boiler tubing to the header pipe in supercritical, ultra-supercritical and advanced ultra-supercritical boiler applications where essentially defect-free joining is critical.
    • 镍(Ni),铬(Cr),钴(Co),铁(Fe),钼(Mo),锰(Mn),铝(Al),钛(Ti),铌(Nb) 焊接合金,由其制成的用于生产焊件的制品和用于生产这些焊件的方法。 该焊接合金的重量百分比为:23.5〜25.5%的Cr,15〜22%的Co,至多3%的Fe,1%的Mo,1%以下的Mn,1.1〜2.0%的Al,0.8〜1.8% Ti,0.8〜2.2%的Nb,0.05〜0.28%的Si,至多0.3%的Ta,至多0.3%的W,0.005〜0.08%的C,0.001〜0.3%的Zr,0.0008〜0.006%的B,高达0.05%的稀土 金属,高达0.025%Mg加上任选的Ca,余量为Ni,包括痕量添加和杂质。 焊接合金提供高温强度,延展性,稳定性,韧性和基本上无缺陷的可焊性和焊件的组合,使得合金范围独特地适用于将锅炉管道连接到超临界,超超临界和先进的超临界, 超临界锅炉应用,其中基本上无缺陷的接合是至关重要的。