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    • 1. 发明授权
    • Proliferation inhibitor of helicobacter pylori including alpha-n-acetyl-glucosaminyl bond-containing monosaccharide derivatives
    • 幽门螺杆菌的增殖抑制剂包括含α-正乙酰基 - 葡糖胺键的单糖衍生物
    • US08575117B2
    • 2013-11-05
    • US12662309
    • 2010-04-09
    • Jun NakayamaTakashi YamanoiMasaya FujitaTakashi Shirai
    • Jun NakayamaTakashi YamanoiMasaya FujitaTakashi Shirai
    • A61K31/7008A61K31/7034
    • A61K31/7028A23L33/10C07H5/04
    • A method for inhibiting proliferation of Helicobacter pylori including a compound that can simply be mass-produced, can specifically inhibit the proliferation of H. pylori, which has high safety and never generates any resistant bacteria, as well as a diet of a food or beverage, and a pharmaceutical preparation containing the proliferation inhibitor of Helicobacter pylori. The proliferation inhibitor of Helicobacter pylori comprises an alpha-N-acetyl-glucosaminyl bond-containing monosaccharide derivative represented by the following chemical formula (1) GlcNAc1-alpha-O—Y   (1) (in the formula (1), Y is a straight-, branched- or cyclic-aliphatic hydrocarbon group having 1 to 27 carbon atoms or a straight-, branched- or cyclic-acyl group having 1 to 27 carbon atoms). The diet of the food, the beverage or the pharmaceutical preparation comprises the proliferation inhibitor of Helicobacter pylori.
    • 抑制幽门螺杆菌增殖的方法,其包括可以简单地批量生产的化合物,可以特异性地抑制幽门螺杆菌的增殖,其具有高安全性并且不产生任何抗性细菌,以及食物或饮料的饮食 ,以及含有幽门螺杆菌增殖抑制剂的药物制剂。 幽门螺旋杆菌增殖抑制剂包含由以下化学式(1)表示的含有α-N-乙酰基 - 葡糖胺键的单糖衍生物GlcNAc1-α-OY(1)(式(1)中,Y为直链 - 具有1至27个碳原子的支链或环状脂族烃基或具有1至27个碳原子的直链,支链或环状酰基)。 食物,饮料或药物制剂的饮食包括幽门螺杆菌增殖抑制剂。
    • 4. 发明授权
    • Damping intermediate pillar and damping structure using the same
    • 阻尼中柱和阻尼结构使用相同
    • US07076926B2
    • 2006-07-18
    • US10213201
    • 2002-08-06
    • Kazuhiko KasaiHiroshi NakamuraYasuhiro NakataTakashi Shirai
    • Kazuhiko KasaiHiroshi NakamuraYasuhiro NakataTakashi Shirai
    • E04H9/02E04B1/98
    • E04H9/02E04B2001/2415E04B2001/2442E04B2001/2445E04B2001/2448
    • A damping intermediate pillar, which can exhibit a sufficient resistance against the horizontal force of a strong earthquake by reinforcing the joins between the damping intermediate pillar and the upper and lower beams, is disclosed. A damping intermediate pillar 14, used for a building or a structure configured of pillars 1 and beams 3, is divided into upper and lower damping intermediate pillar portions 14a, 14b of H shape steel, and includes a plurality of inner steel plates 7b fixed on the damping intermediate pillar portion 14b and a plurality of outer steel plates 7a fixed on the other damping intermediate pillar portion 14a. The inner and outer steel plates are arranged alternately in a single or a plurality of layers, between which a viscoelastic member 15 is held to make up a viscoelastic damper 17. The coupling end surfaces of the intermediate pillar portions 14a, 14b directed vertically are fixed on the upper and lower floor beams 3a, 3b. Further, one or both sides of each of the damping intermediate pillar portions 14a, 14b (i.e. the coupling members 13a, 13b) and the upper and lower floor beams 3a, 3b are coupled to each other by knee braces 19.
    • 公开了一种阻尼中间柱,其通过加强阻尼中间柱和上梁和下梁之间的接合而能够表现出抵抗强烈地震的水平力的足够阻力。 用于建筑物或由支柱1和梁3构成的结构的阻尼中间柱14被分成H形钢的上下阻尼中间柱部分14a,14b,并且包括多个内钢板7 b固定在阻尼中间柱部分14b上,多个外部钢板7a固定在另一个阻尼中间柱部分14a上。 内钢板和外钢板交替地布置成一个或多个层,在其间保持粘弹性构件15以构成粘弹性阻尼器17。 垂直定向的中间柱部分14a,14b的连接端面固定在上下地板梁3a,3b上。 此外,每个阻尼中间柱部分14a,14b(即,联接构件13a,13b)和上部和下部地板梁3a,3b的一侧或两侧通过膝盖支架彼此联接 19。
    • 5. 发明授权
    • High frequency current detecting apparatus
    • 高频电流检测装置
    • US06351114B1
    • 2002-02-26
    • US09515864
    • 2000-02-29
    • Noriyoshi IwasakiYuji NakamichiTakashi ShiraiMotomu Tadama
    • Noriyoshi IwasakiYuji NakamichiTakashi ShiraiMotomu Tadama
    • G01R120
    • G01R15/183
    • There is provided a high frequency current detecting apparatus which can measure a high frequency current with high precision without cutting a circuit conductor. The high frequency current detecting apparatus includes a core having a hollow portion, a first conductive material inserted in the hollow portion of the core and having both ends respectively protruding from both ends of the hollow portion to form probe portions, a second conductive material electrically insulated from the first conductive material and inserted in the hollow portion of the core, a resistor for generating a voltage corresponding to a high frequency current flowing through the second conductive material while the first conductive material is made a primary coil and the second conductive material is made a secondary coil, and a shield provided around the core.
    • 提供一种能够高精度地测量高频电流而不切断电路导体的高频电流检测装置。 高频电流检测装置包括具有中空部分的芯体,插入芯部的中空部分的第一导电材料,并且两端分别从中空部分的两端突出以形成探针部分,第二导电材料电绝缘 从所述第一导电材料插入到所述芯的中空部分中的电阻器,用于产生对应于流过所述第二导电材料的高频电流的电压的电阻器,而所述第一导电材料被制成初级线圈并且所述第二导电材料制成 次级线圈和围绕芯设置的屏蔽。
    • 6. 发明授权
    • Copper alloy tube for heat exchangers
    • 铜合金管热交换器
    • US08562764B2
    • 2013-10-22
    • US12244195
    • 2008-10-02
    • Masato WatanabeTakashi Shirai
    • Masato WatanabeTakashi Shirai
    • C22C9/02
    • C22C9/02F28F21/085
    • A copper alloy tube according to the present invention includes Sn 0.1 to 2.0 mass %, P 0.005 to 0.1 mass %, S 0.005 mass % or less, O 0.005 mass % or less, and H 0.0002 mass % or less, and the remainder has a composition consisting of Cu and unavoidable impurities. And, as is annealed, the copper alloy tube has the following characteristics: a tensile strength in the longitudinal direction of the copper alloy tube is 250 N/mm2 or more; an average grain diameter is 30 μm or less when measured in the direction perpendicular to the thickness direction of the tube, in the cross section perpendicular to the tube axis; and assuming that a tensile strength in the longitudinal direction of the copper alloy tube is σL, and a tensile strength in the circumferential direction of the same is σT, σT/σL>0.93 holds. [With such structure, the copper alloy tube can have a sufficiently high pressure-resistant breaking strength (breaking pressure) without deteriorating its bending workability due to an unnecessarily enhanced tensile strength, and further is excellent in its bending workability and heat resistance.]
    • 本发明的铜合金管包含Sn 0.1〜2.0质量%,P 0.005〜0.1质量%,0.005质量%以下,0.005质量%以下,H:0.0002质量%以下,余量: 由Cu和不可避免的杂质组成的组合物。 并且,退火时,铜合金管具有以下特性:铜合金管的长度方向的拉伸强度为250N / mm 2以上; 在与管轴垂直的截面中沿垂直于管的厚度方向的方向测量时的平均粒径为30μm以下; 并且假设铜合金管的纵向的拉伸强度为σL,并且其圆周方向的拉伸强度为sigmaT,则σσ/ sigmaL> 0.93。 通过这种结构,铜合金管可以具有足够高的耐压断裂强度(断裂压力),而不会由于不必要的增强的拉伸强度而使其弯曲加工性能降低,并且还具有优异的弯曲加工性和耐热性。
    • 10. 发明申请
    • COPPER ALLOY TUBE FOR HEAT EXCHANGERS
    • 铜合金管热交换器
    • US20090116997A1
    • 2009-05-07
    • US12244195
    • 2008-10-02
    • Masato WATANABETakashi Shirai
    • Masato WATANABETakashi Shirai
    • C22C9/02
    • C22C9/02F28F21/085
    • A copper alloy tube according to the present invention includes Sn 0.1 to 2.0 mass %, P 0.005 to 0.1 mass %, S 0.005 mass % or less, O 0.005 mass % or less, and H 0.0002 mass % or less, and the remainder has a composition consisting of Cu and unavoidable impurities. And, as is annealed, the copper alloy tube has the following characteristics: a tensile strength in the longitudinal direction of the copper alloy tube is 250 N/mm2 or more; an average grain diameter is 30 μm or less when measured in the direction perpendicular to the thickness direction of the tube, in the cross section perpendicular to the tube axis; and assuming that a tensile strength in the longitudinal direction of the copper alloy tube is σL, and a tensile strength in the circumferential direction of the same is σT, σT/σL>0.93 holds. With such structure, the copper alloy tube can have a sufficiently high pressure-resistant breaking strength (breaking pressure) without deteriorating its bending workability due to an unnecessarily enhanced tensile strength, and further is excellent in its bending workability and heat resistance.
    • 本发明的铜合金管包含Sn 0.1〜2.0质量%,P 0.005〜0.1质量%,0.005质量%以下,0.005质量%以下,H:0.0002质量%以下,余量: 由Cu和不可避免的杂质组成的组合物。 并且,退火时,铜合金管具有以下特性:铜合金管的长度方向的拉伸强度为250N / mm 2以上; 在与管轴垂直的截面中沿垂直于管的厚度方向的方向测量时的平均粒径为30μm以下; 并且假设铜合金管的纵向的拉伸强度为σL,并且其圆周方向的拉伸强度为sigmaT,则σσ/ sigmaL> 0.93。 通过这样的结构,铜合金管可以具有足够高的耐压断裂强度(断裂压力),而不会由于拉伸强度的不必要的提高而使其弯曲加工性能恶化,并且其弯曲加工性和耐热性也优异。