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    • 12. 发明申请
    • METHOD OF MANUFACTURING STEAM TURBINE ROTOR AND STEAM TURBINE ROTOR
    • 制造蒸汽涡轮转子和蒸汽轮机转子的方法
    • US20110229339A1
    • 2011-09-22
    • US13127517
    • 2009-10-27
    • Masayuki YamadaTakao InukaiKiyoshi ImaiShigekazu MiyashitaKuniyoshi NemotoReki Takaku
    • Masayuki YamadaTakao InukaiKiyoshi ImaiShigekazu MiyashitaKuniyoshi NemotoReki Takaku
    • F01D5/02B21D53/00
    • F01D5/06F05D2220/31Y10T29/49316
    • A method of manufacturing a steam turbine rotor which includes an ultra-high temperature side portion in which ultra-high temperature steam flows and a high temperature side portion in which high temperature steam flows, the manufacturing method including the steps of: preparing a first electrode having a chemical composition corresponding to a chemical composition of a heat resistant alloy making up the ultra-high temperature side portion and a second electrode having a chemical composition corresponding to a chemical composition of the high temperature side portion; tentatively joining together joints of the electrodes, with the joints of the electrodes made smaller in cross sectional area than other electrode portions; subjecting the tentatively joined first and second electrodes to an ESR process to obtain an ESR ingot and forging the ingot into a shape of a rotor to obtain a rotor forging; and heat-treating the rotor forging to obtain a rotor blank and manufacturing the steam turbine rotor from the rotor blank.
    • 一种蒸汽轮机转子的制造方法,其包括超高温蒸汽流过的超高温侧部分和高温蒸汽流过的高温侧部分,所述制造方法包括以下步骤:制备第一电极 具有对应于构成超高温侧部的耐热合金的化学成分的化学成分和具有与高温侧部的化学成分相当的化学成分的第二电极; 暂时将电极的接头连接在一起,电极的接头的横截面积比其他电极部分小; 对暂时接合的第一和第二电极进行ESR处理以获得ESR锭,并将铸锭锻造成转子的形状以获得转子锻造; 并对转子锻造进行热处理以获得转子坯料,并从转子坯件制造汽轮机转子。
    • 13. 发明授权
    • High pressure-low pressure single cylinder turbine rotor and method of
making
    • 高压低压单缸汽轮机转子及其制造方法
    • US5611873A
    • 1997-03-18
    • US413156
    • 1995-03-29
    • Masayuki YamadaYoichi Tsuda
    • Masayuki YamadaYoichi Tsuda
    • G11B5/86C21D9/38C22C38/46C21D8/10C22C38/44
    • C22C38/46C21D9/38
    • A high pressure-low pressure single cylinder turbine rotor is disclosed which is characterized by being formed of a steel of a composition having, by weight, a C content of from 0.10 to 0.35%, a Si (silicon) content of not more than 0.3% (not including 0%), a Mn (manganese) content of not more than 1.0% (not including 0%), a Ni content of from 1.0 to 2.0%, a Cr (chromium) content of from 1.5 to 3.0%, a Mo content of from 0.9 to 1.3%, a V (vanadium) content of from 0.10 to 0.35%, a Nb (niobium) content of from 0.01 to 0.15%, a W content of from 0.1 to 1.5%, and the balance of Fe (iron) and inevitable impurities, the inevitable impurities having a P content of not more than 0.005%, a S content of not more than 0.001%, an As content of not more than 0.008%, a Sb content of not more than 0.004%, and a Sn content of not more than 0.008%.
    • 公开了一种高压低压单缸汽轮机转子,其特征在于由具有0.10至0.35重量%的C含量,不大于0.3的Si(硅)含量的组合物的钢形成 %(不包括0%),Mn(锰)含量不大于1.0%(不包括0%),Ni含量为1.0至2.0%,Cr(铬)含量为1.5至3.0% Mo含量为0.9〜1.3%,V(钒)含量为0.10〜0.35%,Nb(铌)含量为0.01〜0.15%,W含量为0.1〜1.5%,余量为 Fe(铁)和不可避免的杂质,P含量不大于0.005%,S含量不大于0.001%,As含量不大于0.008%,Sb含量不大于0.004的不可避免的杂质 %,Sn含量不大于0.008%。
    • 17. 发明授权
    • Nonaqueous secondary battery
    • 非水二次电池
    • US08790829B2
    • 2014-07-29
    • US13393455
    • 2011-09-08
    • Satoshi KonoMasayuki YamadaAkira InabaKazutaka Matsuo
    • Satoshi KonoMasayuki YamadaAkira InabaKazutaka Matsuo
    • H01M4/13
    • H01M4/587H01M4/364H01M4/386H01M4/505H01M4/525H01M10/0525
    • The present invention provides a nonaqueous secondary battery with a high capacity, an excellent level of safety, and excellent charge-discharge cycle characteristics. The negative electrode contains, as negative electrode active materials, a graphite carbon material and a material containing Si as a constituent element, and the positive electrode includes, as a positive electrode active material, a lithium-containing composite oxide represented by the following general composition formula (1) and containing sulfur in a range of 0.01 mass % to 0.5 mass %: Li1+yMO2  (1) where y satisfies −0.3≦y
    • 本发明提供一种容量大,安全性优异,充放电循环特性优异的非水系二次电池。 负极包含作为负极活性物质的石墨碳材料和含有Si作为构成元素的材料,正极包含作为正极活性物质的由以下总体组成表示的含锂复合氧化物 式(1),含有0.01质量%〜0.5质量%范围的硫:Li1 + yMO2(1)其中y满足-0.3&nlE; y <0.3,M表示包含Ni,Co, Mn,Mg和Al,Ba,Sr,Ti和Zr中的至少一种,并且当a,b,c和d分别表示Ni,Co,Mn和Mg时,以mol%表示,e表示Al, 构成M,a,b,c,d和e的所有元素的Ba,Sr,Ti和Zr的摩尔%满足70&nlE; a&nlE; 97,0.5
    • 19. 发明授权
    • Non-aqueous secondary battery
    • 非水二次电池
    • US08481212B2
    • 2013-07-09
    • US13511084
    • 2011-09-12
    • Naokage TanakaAkira InabaMasayuki YamadaMasayuki Yoshiya
    • Naokage TanakaAkira InabaMasayuki YamadaMasayuki Yoshiya
    • H01M4/13
    • H01M4/131C01B33/113H01M4/133H01M4/366H01M4/483H01M4/587H01M10/052Y02E60/122Y02T10/7011
    • The non-aqueous secondary battery of the present invention includes a positive electrode, a negative electrode, a non-aqueous electrolyte, and a separator, the negative electrode contains a negative electrode active material containing a graphitic carbon material and a composite in which a carbon coating layer is formed on a surface of a core material containing Si and O as constituent elements, the composite has a carbon content of 10 to 30 mass %, the composite has an intensity ratio I510/I1343 of a peak intensity I510 at 510 cm−1 derived from Si to a peak intensity I1343 at 1343 cm−1 derived from carbon of 0.25 or less when a Raman spectrum of the composite is measured at a laser wavelength of 532 nm, and the half-width of the (111) diffraction peak of Si is less than 3.0° when the crystallite size of an Si phase contained in the core material is measured by X-ray diffractometry using CuKα radiation.
    • 本发明的非水系二次电池包括正极,负极,非水电解质和隔膜,所述负极含有含有石墨碳材料的负极活性物质和碳 在含有Si和O作为构成元素的芯材的表面上形成涂层,该复合材料的碳含量为10〜30质量%,复合材料的强度比I510 / I1343为510cm -1的峰强度I510, 1,衍射自Si的峰值强度I1343为1343cm -1,当在532nm的激光波长下测量复合物的拉曼光谱时,(111)衍射峰的半值 当通过使用CuKalpha辐射的X射线衍射法测量芯材中包含的Si相的微晶尺寸时,Si的含量小于3.0°。