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    • 11. 发明申请
    • Fluid-filled cylindrical vibration-damping device
    • 流体填充圆柱形减振装置
    • US20090200719A1
    • 2009-08-13
    • US12320925
    • 2009-02-09
    • Kazuhiko KatoTakashi Kume
    • Kazuhiko KatoTakashi Kume
    • F16F13/00
    • F16F13/1427
    • A fluid filled cylindrical vibration damping device having a main rubber elastic body elastically connecting an inner shaft member and an intermediate cylindrical member, wherein base wall portions of either of a pair of pocket portions are constituted by the main rubber elastic body to actively rise opposing positive/negative pressure fluctuations in a pair of fluid chambers at times of vibration input across the inner shaft member and the outer cylindrical member; a low-frequency orifice passage and a high-frequency orifice passage are provided; and the high-frequency orifice passage is provided in an aperture section thereof leading to at least one of the pair of fluid chambers with a moveable film adapted to limit fluid flow through the high-frequency orifice passage on the basis of displacement and/or deformation thereof.
    • 一种流体填充的圆柱形减振装置,其具有弹性地连接内轴构件和中间圆筒构件的主橡胶弹性体,其中一对凹部中的任一个的基壁部分由主橡胶弹性体构成,以主动地增加相对的正 在穿过内轴构件和外圆柱形构件的振动输入时一对流体室中的负压波动; 提供低频孔通道和高频孔通道; 并且高频孔通道设置在其开口部分中,其通过可移动膜导向至少一个流体室,该可移动膜适于基于位移和/或变形来限制流过高频孔通道的流体 其中。
    • 15. 发明授权
    • Fluid-filled cylindrical vibration-damping device
    • 流体填充圆柱形减振装置
    • US08128075B2
    • 2012-03-06
    • US12320925
    • 2009-02-09
    • Kazuhiko KatoTakashi Kume
    • Kazuhiko KatoTakashi Kume
    • F16F5/00
    • F16F13/1427
    • A fluid filled cylindrical vibration damping device having a main rubber elastic body elastically connecting an inner shaft member and an intermediate cylindrical member, wherein base wall portions of either of a pair of pocket portions are constituted by the main rubber elastic body to actively rise opposing positive/negative pressure fluctuations in a pair of fluid chambers at times of vibration input across the inner shaft member and the outer cylindrical member; a low-frequency orifice passage and a high-frequency orifice passage are provided; and the high-frequency orifice passage is provided in an aperture section thereof leading to at least one of the pair of fluid chambers with a moveable film adapted to limit fluid flow through the high-frequency orifice passage on the basis of displacement and/or deformation thereof.
    • 一种流体填充的圆柱形减振装置,其具有弹性地连接内轴构件和中间圆筒构件的主橡胶弹性体,其中一对凹部中的任一个的基壁部分由主橡胶弹性体构成,以主动地增加相对的正 在穿过内轴构件和外圆柱形构件的振动输入时一对流体室中的负压波动; 提供低频孔通道和高频孔通道; 并且高频孔通道设置在其开口部分中,其通过可移动膜导向至少一个流体室,该可移动膜适于基于位移和/或变形来限制流过高频孔通道的流体 其中。
    • 16. 发明申请
    • Apparatus and method for analyzing data
    • 用于分析数据的装置和方法
    • US20050159896A1
    • 2005-07-21
    • US10509886
    • 2003-03-31
    • Toshio IshikawaTakashi Kume
    • Toshio IshikawaTakashi Kume
    • G06F19/20G06F19/24G06F19/00
    • G16B25/00G16B40/00
    • In a data analysis system for determining a correlation model between biological conditions and expression levels of a plurality of genes and/or quantities of intracellular substances, A data set is constructed by using the biological conditions or changes of the biological conditions probabilistically generated with time as object variables, and the expression levels of the plural genes and/or the quantities of intracellular substances as explanatory variables. The explanatory variables contained in the data are selected, and cross validation is calculated for a correlation model containing the selected explanatory variables and object variables to assess the results. Selection of the explanatory variables, calculation of cross validation and discriminative assessment of the result is repeated until no further improvement of the cross validation is observed to determine a partial least square model. This permits an effective processing method to provide multivariable gene information.
    • 在用于确定生物学条件和多个基因和/或数量的细胞内物质的表达水平之间的相关模型的数据分析系统中,通过使用生物条件或随时间概率地产生的生物学条件的变化来构建A数据集 对象变量,以及多个基因的表达水平和/或细胞内物质的量作为解释变量。 选择数据中包含的解释变量,并对包含所选解释变量和对象变量的相关模型计算交叉验证,以评估结果。 重复说明变量的选择,交叉验证的计算和结果的区别性评估,直到不能观察到交叉验证的进一步改进以确定偏最小二乘模型。 这允许有效的处理方法提供多变量基因信息。
    • 17. 发明授权
    • Method of producing benzamides
    • 生产苯甲酰胺的方法
    • US06326517B1
    • 2001-12-04
    • US09458079
    • 1999-12-10
    • Takashi KumeMichio IshidaSatoru NarizukaYuzuru MorinoMakoto Koide
    • Takashi KumeMichio IshidaSatoru NarizukaYuzuru MorinoMakoto Koide
    • C07C23100
    • C07C231/10C07C233/65
    • A method of producing benzamides represented by the following general formula (1): where R is trifluoromethyl group, trifluoromethyloxy group, halogen (fluorine, chlorine, bromine or iodine), nitro group, acetyl group, cyano group, alkyl group having 1 to 4 carbon atoms, alkoxy group having 1 to 4 carbon atoms, or a alkoxycarbonyl group having 2 to 5 carbon atoms; and n is 0 or an integer ranging from 1 to 3. The method comprises the step of allowing an aromatic compound represented by the following general formula (2) to react with carbon monoxide and ammonia in the presence of a metal of the group VIII of the periodic table and phosphine: where X is halogen (fluorine, chlorine, bromine or iodine), trifluoromethanesulfonate group, alkylsulfonate group having 1 to 4 carbon atoms, or substituted or unsubstituted arylsulfonate group; R is trifluoromethyl group, trifluoromethyloxy group, halogen (fluorine, chlorine, bromine or iodine), nitro group, acetyl group, cyano group, alkyl group having 1 to 4 carbon atoms, alkoxy group having 1 to 4 carbon atoms, or alkoxycarbonyl group having 2 to 5 carbon atoms; and n is 0 or an integer ranging from 1 to 3.
    • 一种生产由以下通式(1)表示的苯甲酰胺的方法:其中R是三氟甲基,三氟甲氧基,卤素(氟,氯,溴或碘),硝基,乙酰基,氰基,具有1-4个 碳原子数1〜4的烷氧基或碳原子数2〜5的烷氧基羰基。 并且n为0或1至3的整数。该方法包括以下通式(2)表示的芳族化合物与一氧化碳和氨在VIII族金属存在下反应的步骤: 周期表和膦:其中X是卤素(氟,氯,溴或碘),三氟甲磺酸酯基,具有1至4个碳原子的烷基磺酸酯基或取代或未取代的芳基磺酸酯基; R为三氟甲基,三氟甲氧基,卤素(氟,氯,溴或碘),硝基,乙酰基,氰基,碳原子数1〜4的烷基,碳原子数1〜4的烷氧基, 2至5个碳原子; n为0或1〜3的整数。
    • 19. 发明授权
    • Method for producing palladium complex compound
    • 钯配合物的制造方法
    • US06878663B2
    • 2005-04-12
    • US10116057
    • 2002-04-05
    • Takashi KumeSatoru NarizukaMakoto KoideKoichi MikamiManabu HatanoMasahiro Terada
    • Takashi KumeSatoru NarizukaMakoto KoideKoichi MikamiManabu HatanoMasahiro Terada
    • C07F15/00C07F17/02
    • C07F15/006C07F15/0066
    • An aromatic compound represented by the general formula Ar1X is reacted with a palladium compound and a phosphine derivative, in the presence of a first basic substance, thereby producing a palladium-complex compound represented by the general formula Ar1—PdL2X. This palladium-complex compound is reacted with a benzoic acid represented by the general formula Ar2—COOH, in the presence of a second basic substance, thereby producing another palladium-complex compound represented by the following general formula. The above palladium-complex compounds are useful as catalysts and can be produced easily by the above reactions. In the above general formulas, Ar1 is an aryl group; and X is a halogen that is fluorine, chlorine, bromine or iodine, trifluoromethanesulfonate group, an alkylsulfonate group having a carbon atom number of 1-4, or a substituted or unsubstituted arylsulfonate group; each L is independently a phosphine ligand; and Ar2 is an aryl group.
    • 在通式Ar 1 X表示的芳香族化合物与钯化合物和膦衍生物在第一碱性物质的存在下反应,由此制备由通式Ar 1〜 PdL2X。 在第二碱性物质的存在下,使该钯络合物与通式为Ar 2 -COOH表示的苯甲酸反应,由此生成由以下通式表示的另一种钯络合物。 复合化合物可用作催化剂,并且可以通过上述反应容易地制备。 在上述通式中,Ar 1是芳基; X是氟,氯,溴或碘的卤素,三氟甲磺酸酯基,碳原子数为1-4的烷基磺酸酯基或取代或未取代的芳基磺酸酯基; 每个L独立地是膦配体; Ar 2为芳基。