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    • 3. 发明授权
    • Heavy concrete
    • 重型混凝土
    • US08252111B2
    • 2012-08-28
    • US12743164
    • 2009-01-26
    • Yasuhide HigoMinoru YoshimotoTakeshi HamadaEichi Manabe
    • Yasuhide HigoMinoru YoshimotoTakeshi HamadaEichi Manabe
    • C04B18/14
    • G21F1/04C04B28/02C04B2111/0031Y02W30/91Y02W30/94C04B18/14C04B18/0481C04B14/34C04B18/02C04B20/0076C04B24/2647C04B2103/50
    • It is aimed at providing a heavy concrete, which does not require addition of a thickener such as methyl cellulose, which is less in segregation between a heavy aggregate and a cement paste, and which is high in flowability and excellent in construction ability. The present invention provides a heavy concrete comprising, at least, a cement, a heavy aggregate, and water, mixed with one another, characterized in that the heavy fine aggregate includes hot scarves brought about in a scarfing process of a steel slab surface. The present invention further provides the above-described heavy concrete characterized in that the heavy fine aggregate includes fine aggregate particles passing through a sieve having a nominal size of 0.15 mm, in an amount of 10% to 20% in mass percentage, and the heavy fine aggregate includes spherical particles each having a distortion irregularity of 3.3 or less as defined below, in an amount of 20% or more in the whole of particles having diameters between 50 μm inclusive and 5 mm inclusive in the heavy fine aggregate: [Distortion irregularity]=[Length of circumferential outline of particle]/[Diameter of true circle having the same area as the area of the particle providing the outline].
    • 其目的在于提供一种重混凝土,其不需要添加在重骨料和水泥浆之间的偏析较少的甲基纤维素等增稠剂,流动性高,结构能力优异的混凝土。 本发明提供了一种重质混凝土,其至少包括彼此混合的水泥,重骨料和水,其特征在于,所述重质细骨料包括在钢板表面的烧结过程中产生的热围。 本发明还提供上述重质混凝土,其特征在于,所述重质细骨料包括通过标称尺寸为0.15mm的筛子的细骨料颗粒,其质量百分比为10%至20%,重质 细骨料包括在重质细骨料中,直径为50μm以上且5mm以下的粒子的整体的粒径分别为3.3以下的变形不规则性的球状粒子的20%以上的量[ ] = [粒子的圆周轮廓的长度] / [具有与提供轮廓的粒子的面积相同的面积的真圆的直径]。
    • 4. 发明申请
    • HEAVY CONCRETE
    • 重型混凝土
    • US20100282130A1
    • 2010-11-11
    • US12743164
    • 2009-01-26
    • Yasuhide HigoMinoru YoshimotoTakeshi HamadaEichi Manabe
    • Yasuhide HigoMinoru YoshimotoTakeshi HamadaEichi Manabe
    • C04B14/48
    • G21F1/04C04B28/02C04B2111/0031Y02W30/91Y02W30/94C04B18/14C04B18/0481C04B14/34C04B18/02C04B20/0076C04B24/2647C04B2103/50
    • It is aimed at providing a heavy concrete, which does not require addition of a thickener such as methyl cellulose, which is less in segregation between a heavy aggregate and a cement paste, and which is high in flowability and excellent in construction ability. The present invention provides a heavy concrete comprising, at least, a cement, a heavy aggregate, and water, mixed with one another, characterized in that the heavy fine aggregate includes hot scarves brought about in a scarfing process of a steel slab surface. The present invention further provides the above-described heavy concrete characterized in that the heavy fine aggregate includes fine aggregate particles passing through a sieve having a nominal size of 0.15 mm, in an amount of 10% to 20% in mass percentage, and the heavy fine aggregate includes spherical particles each having a distortion irregularity of 3.3 or less as defined below, in an amount of 20% or more in the whole of particles having diameters between 50 μm inclusive and 5 mm inclusive in the heavy fine aggregate: [Distortion irregularity]=[Length of circumferential outline of particle]/[Diameter of true circle having the same area as the area of the particle providing the outline].
    • 其目的在于提供一种重混凝土,其不需要添加在重骨料和水泥浆之间的偏析较少的甲基纤维素等增稠剂,流动性高,结构能力优异的混凝土。 本发明提供了一种重质混凝土,其至少包括彼此混合的水泥,重骨料和水,其特征在于,所述重质细骨料包括在钢板表面的烧结过程中产生的热围。 本发明还提供上述重质混凝土,其特征在于,所述重质细骨料包括通过标称尺寸为0.15mm的筛子的细骨料颗粒,其质量百分比为10%至20%,重质 细骨料包括在重质细骨料中,直径为50μm以上且5mm以下的粒子的整体的粒径分别为3.3以下的变形不规则性的球状粒子的20%以上的量[ ] = [粒子的圆周轮廓的长度] / [具有与提供轮廓的粒子的面积相同的面积的真圆的直径]。
    • 5. 发明授权
    • Connecting structure for piping members
    • 管道构件连接结构
    • US07484770B2
    • 2009-02-03
    • US10552312
    • 2004-04-09
    • Takeshi Hamada
    • Takeshi Hamada
    • F16L39/00
    • F16L41/03
    • A connecting structure for piping members facilitates connection thereof and ensures prevention of liquid leakage. A first piping member includes a first channel, and at least one first joint surface in which at least one first opening communicating with the first channel and a first annular groove are provided. A second piping member includes a second channel, and at least one second joint surface in which at least one second opening communicating with the second channel and a second annular groove are provided. A sleeve for connecting the first and second piping members includes a central bore. The sleeve includes a pair of inserting sections and a partition therebetween. The inserting sections are thinner radially as compared to the partition and are configured to accommodate at least one elastic body which provides a seal when the inserting sections are press-inserted into the first and second annular grooves.
    • 用于管道构件的连接结构便于连接,并确保防止液体泄漏。 第一管道构件包括第一通道和至少一个第一接合表面,其中设置有与第一通道连通的至少一个第一开口和第一环形槽。 第二管道构件包括第二通道和至少一个第二接头表面,其中设置有与第二通道连通的至少一个第二开口和第二环形槽。 用于连接第一和第二管道构件的套筒包括中心孔。 套筒包括一对插入部分和它们之间的隔板。 所述插入部分与所述分隔件相比,径向地较薄,并且构造成容纳至少一个弹性体,当所述插入部分被压入所述第一和第二环形槽时,所述弹性体提供密封。
    • 6. 发明授权
    • Manifold valve
    • 歧管阀
    • US06889709B2
    • 2005-05-10
    • US10344946
    • 2002-06-18
    • Toshihiro HanadaTakeshi Hamada
    • Toshihiro HanadaTakeshi Hamada
    • F16K27/00F16K41/10F16K11/10
    • F16K27/003F16K41/103Y10T137/87684Y10T137/877Y10T137/87877
    • A manifold valve of the invention comprises a body and respective actuators driving a plurality of valve bodies arranged within the body. The body having a valve chamber on the main flow passage side and a valve chamber on the secondary flow passage side which are communicated with each other by a connecting flow passage, and further having a main flow passage communicating with a communicating port arranged on the bottom center of the valve chamber on the main flow passage side, a branched flow passage communicating with the valve chamber on the main flow passage side, and a secondary flow passage communicating with a communicating port arranged on the bottom center of the valve chamber on the secondary flow passage side. The communicating ports on the sides of the main flow passage and the secondary flow passage are respectively provided with opening and closing valve bodies driven by the actuators.
    • 本发明的歧管阀包括主体和相应的致动器,其驱动布置在主体内的多个阀体。 主体具有在主流路侧的阀室和二次流路侧的阀室,通过连接流路彼此连通,并且还具有与布置在底部的连通口连通的主流路 在主流路侧的阀室的中心,与主流路侧的阀室连通的分支流路,以及与在二次侧阀配置在阀室的底部中心的连通口连通的二次流路 流通侧。 主流路和副流路两侧的连通口分别设有由致动器驱动的开闭阀体。
    • 8. 发明申请
    • CHARGE PUMP CIRCUIT, CONTROL METHOD THEREOF, AND SEMICONDUCTOR INTEGRATED CIRCUIT
    • 充电泵电路,其控制方法和半导体集成电路
    • US20120299642A1
    • 2012-11-29
    • US13522114
    • 2011-11-10
    • Takeshi HamadaYoshihiko Koizumi
    • Takeshi HamadaYoshihiko Koizumi
    • G05F3/02
    • H02M3/07G11C5/145
    • There is provided a charge pump circuit suited for reducing the power consumption. A capacitor 201a, a capacitor 201b, a capacitor 201c, and switching elements 202a to 202k, for electrically connecting or separating capacitors 201a, 201b, and 201c, repeats: a first state where charge supplied from an input power-supply voltage VDD is accumulated in the capacitors 201a and 201b; a second state where the charge accumulated in the capacitor 201a is transferred to the third capacitor 201c, and a positive output power-supply voltage is held by the charge accumulated in the capacitor 201b; a third state where the charge supplied from an input power supply is accumulated in the capacitors 201a and 201b; and a fourth state where the charge accumulated in the capacitor 201b is transferred to the third capacitor 201c, and the positive output power-supply voltage VCC is held by the charge accumulated in the capacitor 201a.
    • 提供了适合于降低功耗的电荷泵电路。 用于电连接或分离电容器201a,201b和201c的电容器201a,电容器201b,电容器201c和开关元件202a至202k重复:从输入电源电压VDD提供的电荷被累积的第一状态 在电容器201a和201b中; 电容器201a中累积的电荷被传送到第三电容器201c的第二状态,并且通过在电容器201b中累积的电荷来保持正输出电源电压; 第三状态,其中从输入电源供应的电荷累积在电容器201a和201b中; 以及第四状态,其中累积在电容器201b中的电荷被传送到第三电容器201c,并且正输出电源电压VCC由积累在电容器201a中的电荷保持。
    • 9. 发明申请
    • INORGANIC--ORGANIC HYBRID-FILM-COATED STAINLESS-STEEL FOIL
    • 无机 - 有机混合涂膜不锈钢箔
    • US20100272957A1
    • 2010-10-28
    • US12831027
    • 2010-07-06
    • Keiko KawakamiNoriko YamadaTakeshi HamadaYuji Kubo
    • Keiko KawakamiNoriko YamadaTakeshi HamadaYuji Kubo
    • B32B15/04B32B7/02B32B3/10
    • C23C18/1254C23C26/00C23C30/00Y10T428/24355Y10T428/2495Y10T428/265Y10T428/31663
    • An inorganic-organic hybrid film-coated stainless steel foil comprising a stainless steel foil substrate having coated on one surface or both surfaces thereof an inorganic-organic hybrid film, wherein the inorganic-organic hybrid film comprises a skeleton formed of an inorganic three-dimensional network structure mainly comprising a siloxane bond, with at least one crosslinked oxygen of the skeleton being replaced by an organic group and/or a hydrogen atom; and an inorganic-organic hybrid film-coated stainless steel foil comprising a stainless steel foil having coated thereon a plurality of inorganic-organic hybrid films each mainly comprising a siloxane bond, wherein at least a part of Si constituting each inorganic-organic hybrid film is chemically bonded to one or both of an organic group and hydrogen, provided that the uppermost layer out of the plurality of inorganic-organic hybrid films may be an inorganic SiO2 film, and adjacent films of the plurality of inorganic-organic hybrid films (including the inorganic SiO2 film) differ in the composition from each other.
    • 一种无机 - 有机杂化薄膜包衣的不锈钢箔,其包括在一个表面或两个表面上涂覆无机 - 有机杂化膜的不锈钢箔基材,其中所述无机 - 有机杂化膜包括由无机 - 三维 主要包含硅氧烷键的网状结构,其中骨架的至少一个交联氧被有机基团和/或氢原子代替; 以及包含不锈钢箔的无机 - 有机复合薄膜包衣不锈钢箔,其上涂覆有主要包含硅氧烷键的多个无机 - 有机杂化膜,其中构成每个无机 - 有机杂化膜的Si的至少一部分为 化学键合到有机基团和氢气中的一个或两个,条件是多个无机 - 有机杂化膜中的最上层可以是无机SiO 2膜,并且多个无机 - 有机杂化膜的相邻膜(包括 无机SiO 2膜)的组成不同。
    • 10. 发明授权
    • Valve
    • US07581712B2
    • 2009-09-01
    • US10587470
    • 2004-01-29
    • Kenro YoshinoTakeshi Hamada
    • Kenro YoshinoTakeshi Hamada
    • F16K1/00F16K15/00
    • F16K7/126F16K7/16
    • A valve (100) includes a body (1) having a valve seat (10) formed therein, a bonnet (2), a diaphragm (3) supporting a valve element (18) abutting against and moving away from the valve seat (10), and an elastic member such as an O-ring (5). The body (1) is formed with an annular groove (13) extending around the valve seat (10), and the diaphragm (3) is provided at the peripheral edge (20) with an annular engagement part (21) formed to have an approximate L-shape in cross-section. The annular engagement part (21) is inserted into the annular groove (13) in a tight state by the elastic member disposed between the bonnet (2) and the annular engagement part (21) of the diaphragm (3).
    • 阀(100)包括具有形成在其中的阀座(10)的阀体(1),阀盖(2),支撑阀元件(18)的隔膜(3),所述阀元件抵靠并远离阀座 )和诸如O形环(5)的弹性构件。 主体(1)形成有围绕阀座(10)延伸的环形槽(13),并且隔膜(3)设置在周缘(20)处,环形接合部分(21)形成为具有 横截面约为L形。 通过布置在阀盖(2)和隔膜(3)的环形接合部分(21)之间的弹性构件将环形接合部分(21)以紧密状态插入环形槽(13)中。