Valve timing control apparatus of internal combustion engine
    62.
    发明授权
    Valve timing control apparatus of internal combustion engine 有权
    内燃机气门正时控制装置

    公开(公告)号:US08720399B2

    公开(公告)日:2014-05-13

    申请号:US13418381

    申请日:2012-03-13

    申请人: Hiroyuki Kato

    发明人: Hiroyuki Kato

    IPC分类号: F01L1/34 F01L1/344

    摘要: In a valve timing control apparatus of an internal combustion engine, a first lock member is installed axially movably on either one of a housing and a vane member, a first lock recess section with which the first lock member is engaged when the vane member is relatively revolved at an intermediate phase position between most advance and retardation angle sides is installed on the other of the housing and the vane member, and a third lock recess section is installed at a retardation angle side in a circumferential direction of the housing with respect to the first lock recess section to limit a relative rotary position of the vane member at the most retardation angle side by an engagement of the first lock member with the third lock recess section.

    摘要翻译: 在内燃机的气门正时控制装置中,第一锁定构件轴向移动地安装在壳体和叶片构件中的任一个上;第一锁定凹部,当叶片构件相对时第一锁定构件与该第一锁定构件接合 旋转在最前进和延迟角侧之间的中间相位位置安装在壳体和叶片构件的另一个上,并且第三锁定凹部安装在壳体的圆周方向上的延迟角侧,相对于 第一锁定凹部,通过第一锁定构件与第三锁定凹部的接合来限制叶片构件在最大延迟角侧的相对旋转位置。

    TRANSMISSION
    64.
    发明申请
    TRANSMISSION 审中-公开
    传输

    公开(公告)号:US20120096968A1

    公开(公告)日:2012-04-26

    申请号:US13380217

    申请日:2010-06-17

    IPC分类号: F16H57/04

    摘要: In a transmission, a large-diameter gear included in a plurality of gears on rotatable shaft members is soaked at its lower part in lubrication oil contained in a lubrication oil storage region formed at a lower portion of a case and scoops up the lubrication oil when rotated. A receiver extending in the axial direction of the large-diameter gear collects the scooped-up lubrication oil and flows the collected lubrication oil toward lubrication portions. The receiver has a vertical wall which enables the lubrication oil scooped up and splashing above the receiver to collide therewith, to flow down on a surface thereof and to be introduced to a collecting portion of the receiver, and an introducing portion which enables the lubrication oil splashing toward between the receiver and the large-diameter gear to flow on a surface thereof and to be introduced to the collecting portion by the inertia force thereof.

    摘要翻译: 在变速器中,包括在可旋转轴构件上的多个齿轮中的大直径齿轮在其下部浸渍在容纳在形成在壳体的下部的润滑油储存区域中的润滑油中,并且当润滑油 旋转 沿大直径齿轮的轴向延伸的接收器收集舀取的润滑油并将收集的润滑油流向润滑部分。 接收器具有垂直壁,其使润滑油在接收器上方舀起并飞溅以与其接触,在其表面上向下流动并被引入到接收器的收集部分,以及引导部分,其使润滑油 在接收器和大直径齿轮之间飞溅以在其表面上流动并通过其惯性力被引入收集部分。

    Wholly aromatic liquid-crystalline polyester
    65.
    发明授权
    Wholly aromatic liquid-crystalline polyester 有权
    全芳族液晶聚酯

    公开(公告)号:US08044151B2

    公开(公告)日:2011-10-25

    申请号:US12260428

    申请日:2008-10-29

    IPC分类号: C08G63/08

    摘要: The present invention provides a wholly aromatic liquid-crystalline polyester consisting of the repeating units represented by formulae (I), (II), (III) and (IV): wherein: the molar proportion of the repeating unit represented by formula (I) based on the total repeating units constituting the wholly aromatic liquid-crystalline polyester is 40-80 mol %; the molar ratio of the total amount of the repeating units represented by formulae (II) and (III) to the repeating unit represented by formula (IV) is from 90/100 to 100/90; the molar proportion of the repeating unit represented by formula (II) based on the total amount of the repeating units represented by formulae (II) and (III) is 80-99.9 mol%; and the two “—O—” attached to the benzene ring in formula (III) are positioned meta or para to each other and “Ar” in formula (IV) represents a bivalent aromatic group. The wholly aromatic liquid-crystalline polyester of the present invention exhibits excellent dielectric properties in high frequency regions as well as good mechanical properties such as impact strength.

    摘要翻译: 本发明提供由式(I),(II),(III)和(IV)表示的重复单元组成的全芳族液晶聚酯:其中:由式(I)表示的重复单元的摩尔比例 基于构成全芳香族液晶聚酯的总重复单元为40〜80摩尔%。 由式(II)和(III)表示的重复单元的总量与由式(IV)表示的重复单元的摩尔比为90/100〜100/90; 由式(II)表示的重复单元相对于式(II)和(III)表示的重复单元的总量的摩尔比例为80-99.9摩尔% 并且与式(III)中的苯环相连的两个“-O-”彼此定位为间位或对位,式(IV)中的“Ar”表示二价芳基。 本发明的全芳香族液晶聚酯在高频区域表现出优异的介电性能以及良好的机械性能如冲击强度。

    ZnO based semiconductor light emitting device and its manufacture method
    68.
    发明授权
    ZnO based semiconductor light emitting device and its manufacture method 有权
    ZnO基半导体发光器件及其制造方法

    公开(公告)号:US07943927B2

    公开(公告)日:2011-05-17

    申请号:US12501764

    申请日:2009-07-13

    IPC分类号: H01L33/00

    摘要: A ZnO based semiconductor light emitting device includes: a first semiconductor layer containing ZnO1-x1Sx1; a second semiconductor layer formed above the first semiconductor layer and containing ZnO1-x2Sx2; and a third semiconductor layer formed above the second semiconductor layer and containing ZnO1-x3Sx3, wherein an S composition x1 of the first semiconductor layer, an S composition x2 of the second semiconductor layer and an S composition x3 of the third semiconductor layer are so selected that an energy of the second semiconductor layer at the lower end of a conduction band becomes lower than both energies of the first and third semiconductor layers at the lower end of the conduction bands, and that an energy of the second semiconductor layer at the upper end of a valence band becomes higher than both energies of the first and third semiconductor layers at the upper end of the valence bands.

    摘要翻译: ZnO基半导体发光器件包括:含有ZnO1-x1Sx1的第一半导体层; 形成在第一半导体层之上并含有ZnO1-x2Sx2的第二半导体层; 以及第三半导体层,其形成在所述第二半导体层的上方并且包含ZnO1-x3Sx3,其中所述第一半导体层的S组成x1,所述第二半导体层的S组成x2和所述第三半导体层的S组成x3被选择 导带下端的第二半导体层的能量变得低于导带下端的第一和第三半导体层的能量的两者的能量,并且第二半导体层在上端的能量 的价带变得高于在价带上端的第一和第三半导体层的能量的两个能量。

    Method of manufacturing a multilayer wiring board
    69.
    发明授权
    Method of manufacturing a multilayer wiring board 失效
    多层布线板的制造方法

    公开(公告)号:US07882627B2

    公开(公告)日:2011-02-08

    申请号:US12007040

    申请日:2008-01-04

    IPC分类号: H01K3/00

    摘要: First, a unilayer wiring board is fabricated, which has wiring layers formed in desired shapes on both sides of an insulating base member; and a metal bump formed on the wiring layer on one side of the insulating base member. Then, a desired number of unilayer boards are prepared and stacked up. On that case, the board disposed in the uppermost layer is prepared without having a metal bump. The boards are positioned and stacked up in such a manner that a metal bump of one of adjacent boards is connected to a corresponding wiring layer of the other board. Thereafter, resin is filled into gaps between the stacked boards, and insulating layers are formed on both sides of a multilayer board obtained through the above steps, in such a manner as to cover the entire surface except pad areas defined at predetermined positions on the wiring layers.

    摘要翻译: 首先,制造单层布线板,其具有在绝缘基材的两侧形成为所需形状的布线层; 以及在所述绝缘基体的一侧上的所述布线层上形成的金属凸块。 然后,准备并堆叠所需数量的单层板。 在这种情况下,准备设置在最上层的板,而不具有金属凸块。 这些板被定位和堆叠,使得相邻板中的一个的金属凸块连接到另一个板的对应的布线层。 此后,将树脂填充到堆叠板之间的间隙中,并且在通过上述步骤获得的多层板的两侧上形成绝缘层,以覆盖除了布线上的预定位置限定的焊盘区域之外的整个表面 层。

    NOVEL SOYBEAN PROTEIN MATERIAL AND METHOD FOR PRODUCING THE SAME
    70.
    发明申请
    NOVEL SOYBEAN PROTEIN MATERIAL AND METHOD FOR PRODUCING THE SAME 审中-公开
    新型大豆蛋白质材料及其生产方法

    公开(公告)号:US20100303993A1

    公开(公告)日:2010-12-02

    申请号:US12810606

    申请日:2008-12-24

    摘要: Provided is a soybean protein material which shows high emulsion stability in the case where 30% by weight of sodium casein has been replaced with soybean protein. A sugar-containing soybean protein material is produced by mixing a soybean protein raw material with a reducing sugar and performing a heat treatment at a temperature higher than 100° C. and 170° C. or lower for 10 sec to 300 sec at pH 6.3 to 8.0, followed by a hydrolysis treatment. Further, a sugar-containing soybean protein material in which protein is contained in an amount of 80% by weight or more on a dry weight basis, the 0.22 M TCA solubility is 5% by weight or more, 180 μmol of more of sugar is bound per g of protein and the content of β-conglycinin in protein by the ELISA method is 35% or less, or a soybean protein material for a coffee whitener in which the 0.22 M TCA solubility is 15% by weight or more and 30% by weight or less, the protein solubility is 80% by weight or more, and the total content of β-conglycinin and glycinin by SDS-PAGE is 30% or less is used. By using these soybean protein materials having high emulsifiability, emulsions and foods and drinks can be obtained.

    摘要翻译: 本发明提供一种在用大豆蛋白替代30重量%的酪蛋白的情况下,显示高乳化稳定性的大豆蛋白质材料。 通过将大豆蛋白原料与还原糖混合并在高于100℃和170℃或更低的温度下在pH6.3下进行10秒至300秒的热处理来制备含糖大豆蛋白材料 至8.0,然后进行水解处理。 此外,含有干重量为80重量%以上的蛋白质的含糖大豆蛋白质材料,0.22M TCA溶解度为5重量%以上,180μmol以上的糖为 通过ELISA法测定每g蛋白质和蛋白质中的大豆球蛋白含量为35%以下,或者是0.22M TCA溶解度为15重量%以上且30重量%以下的咖啡增白剂的大豆蛋白材料 重量百分比以下,蛋白质溶解度为80重量%以上,通过SDS-PAGE测定的大豆球蛋白和大豆球蛋白的总含量为30%以下。 通过使用具有高乳化性的这些大豆蛋白材料,可以获得乳液和食品和饮料。