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    • 1. 发明授权
    • Low alloy steel
    • 低合金钢
    • US07935303B2
    • 2011-05-03
    • US12073324
    • 2008-03-04
    • Takashi NakashimaKaori KawanoMasaaki Igarashi
    • Takashi NakashimaKaori KawanoMasaaki Igarashi
    • C22C38/00C22C38/22
    • C21C7/0006C21C7/06C22C38/005C22C38/02C22C38/04C22C38/22
    • According to a low alloy steel of the present invention, compositional elements thereof are limited, and a metal structure thereof comprises bainite or martensite. Further, proper amounts of Nd inclusions are formed by appropriately selecting timings of deoxidation and Nd addition in melting a steel. Consequently, compatibility between high-temperature creep strength and long-term creep ductility, which is hardly established in conventional steels, can be achieved even in hostile conditions. Accordingly, the low alloy steel of the present invention can be widely applied as the material for the heat-resistant structural member used for a long time under the high-temperature and high-pressure conditions such as power plant boilers, turbines, and nuclear power plants.
    • 根据本发明的低合金钢,其组成元素受到限制,其金属结构包括贝氏体或马氏体。 此外,通过在钢中熔融时适当选择脱氧和Nd添加的定时,形成适量的Nd夹杂物。 因此,即使在恶劣的条件下,也可以实现在常规钢中难以确定的高温蠕变强度与长期蠕变延展性之间的相容性。 因此,本发明的低合金钢可以广泛地用作在高温高压条件下长时间使用的耐火构件的材料,例如发电厂锅炉,涡轮机和核能 植物。
    • 2. 发明申请
    • Low alloy steel
    • 低合金钢
    • US20080156400A1
    • 2008-07-03
    • US12073324
    • 2008-03-04
    • Takashi NakashimaKaori KawanoMasaaki Igarashi
    • Takashi NakashimaKaori KawanoMasaaki Igarashi
    • C22C38/22
    • C21C7/0006C21C7/06C22C38/005C22C38/02C22C38/04C22C38/22
    • According to a low alloy steel of the present invention, compositional elements thereof are limited, and a metal structure thereof comprises bainite or martensite. Further, a proper amounts of Nd inclusions are formed by appropriately selecting timings of deoxidation and Nd addition in melting a steel. Consequently, compatibility between high-temperature creep strength and long-term creep ductility, which is hardly established in conventional steels, can be achieved even in hostile conditions. Accordingly, the low alloy steel of the present invention can be widely applied as the material for the heat-resistant structural member used for a long time under the high-temperature and high-pressure conditions such as power plant boilers, turbines, and nuclear power plants.
    • 根据本发明的低合金钢,其组成元素受到限制,其金属结构包括贝氏体或马氏体。 此外,通过在钢中熔融时适当选择脱氧和Nd添加的定时,形成适量的Nd夹杂物。 因此,即使在恶劣的条件下,也可以实现在常规钢中难以确定的高温蠕变强度与长期蠕变延展性之间的相容性。 因此,本发明的低合金钢可以广泛地用作在高温高压条件下长时间使用的耐火构件的材料,例如发电厂锅炉,涡轮机和核能 植物。
    • 3. 发明申请
    • Low alloy steel
    • 低合金钢
    • US20080050265A1
    • 2008-02-28
    • US11907575
    • 2007-10-15
    • Masaaki IgarashiKaori Kawano
    • Masaaki IgarashiKaori Kawano
    • C22C38/32
    • C22C38/22C22C38/02C22C38/04C22C38/24
    • A low alloy steel for a heat-resisting structural member being improved in long time creep ductility at high temperatures and temper softening resistance, characterized by comprising, by mass percent, C: 0.03 to 0.10%, Si: not more than 0.30%, Mn: not more than 1.0%, Cr: more than 1.5% to not more than 2.5%, Mo: 0.01 to 1.0%, V: 0.04 to 0.30%, Nb: 0.001 to 0.10%, Ti: 0.001 to 0.020%, B: 0.0001 to 0.020%, Al: 0.001 to 0.01% and Nd: 0.0001 to 0.050%, with the balance being Fe and impurities, wherein the content of P is not more than 0.020%, the content of S is not more than 0.003%, the content of N is less than 0.0050% and the content of O (oxygen) is not more than 0.0050% among the impurities, in which the value of BSO represented by the following formula (1) is 0.0001 to 0.010: BSO=B−(11/14)N−(11/32)S−(11/16)O  (1), wherein each element symbol in the formula (1) represents the content (by mass %) of the element concerned. The steel may further contain one or more element selected from among W, Cu, Ni, Co, Mg, Ca, La, Ce, Y, Sm and Pr.
    • 用于耐热结构件的低合金钢在高温下的长时间蠕变延展性和回火软化性得到改善,其特征在于以质量%计含有C:0.03至0.10%,Si:不大于0.30%,Mn :不大于1.0%,Cr:大于1.5%至不大于2.5%,Mo:0.01至1.0%,V:0.04至0.30%,Nb:0.001至0.10%,Ti:0.001至0.020%,B: 0.0001〜0.020%,Al:0.001〜0.01%,Nd:0.0001〜0.050%,余量为Fe和杂质,其中P含量不大于0.020%,S含量不大于0.003% 在下述式(1)表示的BSO值为0.0001〜0.010的<! - SIPO - >杂质中,N的含量小于0.0050%,O(氧)的含量为0.0050%以下。 line-formula description =“In-line Formulas”end =“lead”?> BSO = B-(11/14)N-(11/32)S-(11/16)O(1),< line-formula description =“In-line Formulas”end =“tail”?>其中式(1)中的每个元素符号 代表有关要素的内容(质量百分比)。 钢可以进一步含有选自W,Cu,Ni,Co,Mg,Ca,La,Ce,Y,Sm和Pr中的一种或多种元素。
    • 9. 发明申请
    • Ni base alloy pipe stock and method for manufacturing the same
    • 镍基合金管材及其制造方法
    • US20070181225A1
    • 2007-08-09
    • US11643824
    • 2006-12-22
    • Masaaki IgarashiKazuhiro ShimodaTomio YamakawaHisashi Amaya
    • Masaaki IgarashiKazuhiro ShimodaTomio YamakawaHisashi Amaya
    • C22C19/05
    • B21B19/04B21B23/00C22C19/053C22C19/055C22C19/056C22F1/10
    • A Ni base alloy pipe stock having a chemical composition comprising, by mass %, C≦0.04%, Si≦0.50%, Mn: 0.01 to 6.0%, P≦0.03%, S≦0.01%, Cr: 15 to 30%, Ni: more than 45% to not more than 60%, Mo: 0 to 18%, W: 0 to 36%, with Mo(%)+0.5W(%): more than 1.5% to not more than 18%, Cu: 0.01 to 1.5%, Al≦0.01% and N: 0.0005 to 0.20%, and the balance substantially being Fe, with 1380−5000P−100S−4400C≧1300, Ni+10(Mo+0.5W)+100N≦200, (Ni−50)+10(N−0.1)−2(Cr−25)−5(Mo+0.5W−6)+12≧0, can be manufactured into a seamless pipe by use of a Mannesmann piercing and rolling mill because of its excellent inner surface properties. The resulting seamless pipe has excellent mechanical properties and moreover has excellent corrosion resistance in a sour gas environment, and thus, the Ni base alloy pipe stock can be used as a pipe stock for oil country tubular goods and line pipes and further as a pipe stock for various structural members of nuclear power plants and chemical industrial plants.
    • 1.一种Ni基合金管材,其特征在于,以质量%计含有C <= 0.04%,Si <0.50%,Mn:0.01〜6.0%,P <0.03%,S <0.01%,Cr:15 至30%,Ni:大于45%至不超过60%,Mo:0至18%,W:0至36%,Mo(%)+ 0.5W(%):大于1.5%至不超过 超过18%,Cu:0.01〜1.5%,Al≤0.01%,N:0.0005〜0.20%,余量基本上为Fe,1380-5000P-100S-4400C> = 1300,Ni + 10(Mo + 0.5 W)+ 100N <= 200,(Ni-50)+10(N-0.1)-2(Cr-25)-5(Mo + 0.5W-6)+12> = 0可制成无缝管 通过使用Mannesmann穿孔轧机,因为它具有优异的内表面性能。 所得到的无缝管具有优异的机械性能,并且在酸性气体环境中具有优异的耐腐蚀性,因此,Ni基合金管材可用作油井管状物料和管线管的管材,还可用作管材 为核电厂和化工厂的各种结构成员。