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    • 2. 发明授权
    • Shearing force reinforced structure and member
    • 剪力加固结构和构件
    • US07823356B2
    • 2010-11-02
    • US10588499
    • 2005-01-13
    • Yoshihiro Tanaka
    • Yoshihiro Tanaka
    • E02D37/00E04B1/98E04C2/06
    • E04G23/0218E04C5/0645E21D11/107
    • The purpose of the present invention is to provide a shearing force reinforced structure of an existing RC structure body that can simply and surely ensure a predetermined pulling-out rigidity. Then a shearing force reinforced structure (1) of the invention is configured with: a side wall (W) of an existing reinforced concrete structure; shearing force reinforced members (20) arranged inside reinforced member insertion holes (10) with bottoms formed in a direction intersecting a major reinforcing bar of the side wall (W); and fillers (30) filled in the holes (10), wherein each of the shearing force reinforced members (20) is configured with a shearing force reinforcing bar (21), a plate head 23 and a ring head (22) respectively fixed at a base end and top end of the reinforcing bar (21); each of the holes (10) is formed at a general part (12) having an inner diameter larger than a reinforcing bar diameter of the reinforcing bar (21) and smaller than a width of the head (23), and a base end width broadening part (11) formed at a base end of the hole 10 and having a diameter larger than the width of the head (23). In accordance with such a shearing force reinforced structure and a shearing force reinforced member, it is enabled to simply and surely ensure a predetermined pulling-out rigidity.
    • 本发明的目的是提供现有RC结构体的剪切力加强结构,其可以简单且可靠地确保预定的拉出刚性。 然后,本发明的剪切力增强结构(1)构造有:现有钢筋混凝土结构的侧壁(W) 布置在加强构件插入孔(10)内的剪切力增强构件(20),底部形成在与侧壁(W)的主要钢筋相交叉的方向上; 以及填充在孔(10)中的填料(30),其中每个剪切力加强构件(20)构造有剪切力加强杆(21),板头23和环形头(22),分别固定在 钢筋(21)的基端和顶端; 每个孔(10)形成在内径大于钢筋(21)的钢筋直径并且小于头部(23)的宽度的一般部分(12)上,并且基端宽度 形成在孔10的基端并且具有比头部(23)的宽度大的直径的加宽部分(11)。 根据这种剪切力加强结构和剪切力增强构件,能够简单且可靠地确保预定的拉出刚性。
    • 3. 发明申请
    • Pneumatic Tire
    • 气动轮胎
    • US20090183814A1
    • 2009-07-23
    • US12334645
    • 2008-12-15
    • Ryuichi UEDAYoshihiro TANAKA
    • Ryuichi UEDAYoshihiro TANAKA
    • B60C9/18
    • B60C9/22
    • W is the width of the belt layer 5a in the innermost side in the tire radius direction. A is the region of the belt reinforcing layer 11 which is the region at the both sides of the tire equator plane 30 in the tire width direction. B is the region in the outer side of the region A in the tire width direction. C is the region that is further outer side of the region B. Ma, Mb and Mc are tensile modulus per inch of the region A, B and C respectively. The width Wa of the region A is 2 to 10% of W, the width Wb of the region B is 15 to 40% of W, Mc is 350 to 2000N, Ma is 100 to 400% of Mc, Mb is 200 to 800% of Mc, and Mb is larger than Ma.
    • W是轮胎半径方向上最内侧的带束层5a的宽度。 A是作为轮胎赤道面30的轮胎宽度方向的两侧的区域的带束层增强层11的区域。 B是轮胎宽度方向上的区域A的外侧的区域。 C是区域B的另外的外侧的区域.Ma,Mb和Mc分别是区域A,B和C的每英寸的拉伸模量。 区域A的宽度Wa为W的2〜10%,区域B的宽度Wb为W的15〜40%,Mc为350〜2000N,Ma为Mc的100〜400%,Mb为200〜800 Mc的百分比,Mb大于Ma。
    • 4. 发明授权
    • Packet communication apparatus
    • 分组通信装置
    • US07496679B2
    • 2009-02-24
    • US10446929
    • 2003-05-29
    • Hiroshi AritaYasuhiro NakatsukaYasuwo WatanabeYoshihiro TanakaKenji Furuhashi
    • Hiroshi AritaYasuhiro NakatsukaYasuwo WatanabeYoshihiro TanakaKenji Furuhashi
    • G06F15/16
    • H04L29/06H04L49/90H04L69/08
    • A packet communication apparatus capable of performing packet conversion at high speed for packet transfer or packet transmission/reception has: a packet conversion unit for performing packet conversion for a reception packet received at a plurality of communication units and for a transmission packet to be transmitted from the plurality of communication units; and a transfer control unit for outputting, when the reception packet received by the communication unit is judged as a the transfer packet, the reception packet to a transfer buffer, for outputting the transmission packet to the communication unit corresponding to the communication object at a destination of the transmission packet generated by a packet generating and processing unit, and for outputting the transfer packet to the communication unit corresponding to the communication object at a destination of the transfer packet stored in the transfer buffer.
    • 能够高速进行分组转换以进行分组传送或分组发送/接收的分组通信装置具有:分组转换单元,用于对在多个通信单元接收的接收分组进行分组转换,以及对于要从 所述多个通信单元; 以及传送控制单元,用于当将由通信单元接收到的接收分组判断为传送分组时,将接收分组输出到传送缓冲器,用于将发送分组输出到与目的地的通信对象相对应的通信单元 由分组产生和处理单元产生的传输分组,并且用于将存储在传送缓冲器中的传送分组的目的地处的传送分组输出到与通信对象对应的通信单元。
    • 5. 发明申请
    • Sample warper with idle running preventing mechanism of yarn guide
    • 带导纱器怠速运行防护机构的采样整经机
    • US20050060857A1
    • 2005-03-24
    • US10938576
    • 2004-09-13
    • Yoshihiro TanakaTakatsugu Aihara
    • Yoshihiro TanakaTakatsugu Aihara
    • D02H3/00D02H5/00
    • D02H3/04
    • There is provided a sample warper with an idle running preventing mechanism of a yarn guide, wherein yarns are automatically exchanged and successively wound on the warper drum according to a preset yarn order by passing the yarns between the yarn guides and the yarn selection guides, and wherein, when a first yarn being wound on the warper drum by a first yarn guide is exchanged to a second yarn, after a yarn removing operation for removing the first yarn from the first yarn guide is finished, a yarn feeding operation for feeding the second yarn to a second yarn guide is performed while the empty first yarn guide makes one rotation. The sample warper can achieve such an advantage that an idle running time of a yarn guide when exchanging yarns can be reduced considerably and a speed of yarn exchanging is improved remarkably.
    • 提供了一种具有纱线引导件的空转运行防止机构的样品整经机,其中通过使纱线在导纱器和纱线选择导向器之间通过纱线,纱线根据预设纱线顺序自动更换并依次卷绕在整经筒上,并且 其中,当通过第一纱线引导件卷绕在整经筒上的第一纱线被更换为第二纱线时,在完成从第一纱线导管去除第一纱线的纱线去除操作结束后,进行喂纱操作, 在空的第一纱线引导件进行一个旋转的同时执行到第二导纱器的纱线。 样品整经机可以实现这样的优点:可以显着地减少纱线引导器在更换纱线时的空转时间,并且纱线交换速度显着提高。
    • 6. 发明授权
    • Rotary creel for electronically controlled sample warper
    • 电子样品整经机的旋转纱架
    • US06671937B1
    • 2004-01-06
    • US09688789
    • 2000-10-17
    • Yoshihiro Tanaka
    • Yoshihiro Tanaka
    • B65H2318
    • D02H3/04
    • A rotary creel including a base, a spindle shaft rotatably mounted to the base and protruding forward from the base, a plurality of bobbins mounted to a protruded portion of the spindle shaft through bobbin holders; and a guide plate mounted in a distal end portion of the spindle shaft through a guide arm so as to be positioned in front of the bobbins. A yarn return unit is attached to the distal end portion of the spindle shaft through a front holder. The guide arm is attached to the front holder. The guide plate is positioned in front of the yarn return unit. When the spindle shaft is rotated, a plurality of yarns wound around the plurality of bobbins can be rotated and simultaneously supplied through the yarn return unit and the guide plate.
    • 一种旋转轴承架,包括基座,主轴可旋转地安装到基座并从基座向前突出的多个线轴,通过线轴架安装到主轴的突出部分的多个线轴; 以及引导板,其通过引导臂安装在主轴的远端部分中,以便定位在线轴的前方。 纱线返回单元通过前保持器附接到主轴的远端部分。 引导臂连接到前支架。 引导板位于纱线返回单元的前面。 当主轴转动时,缠绕在多个线轴上的多根纱线可以旋转,同时通过纱线返回单元和导向板供给。
    • 7. 发明授权
    • Sample warper, warping method and group of warped yarns
    • 采样整经机,整经方法和一批翘曲纱线
    • US06427299B2
    • 2002-08-06
    • US09842914
    • 2001-04-27
    • Yoshihiro TanakaTakatsugu Aihara
    • Yoshihiro TanakaTakatsugu Aihara
    • D02H300
    • D02H13/18B65H54/2896B65H69/00B65H2701/31D02H3/04
    • Provided are a sample warper and a warping method where data regarding yarn diameters of counts are preliminarily input and stored, counts of warping yarns as well as pattern data for warping are input, a conveyor belt feed pitch per revolution of a yarn introduction means is calculated with a warping width, the number of warping yarns, and a warping length (the number of warping windings), and the conveyor belt feed pitch per revolution of the yarn introduction means is controlled according to the counts (yarn thicknesses or yarn diameters). Accordingly, a surface of the yarns wound on a warper drum is finished in a flat state without undulation irrespective of the counts, thereby solving troubles in the next weaving step.
    • 提供了预先输入和存储关于计数纱线直径的数据的样品整经机和翘曲方法,计算出翘曲纱线的数量以及翘曲的图案数据,计算出纱线引入装置的每转的输送带进给间距 根据计数(纱线粗细或纱线直径)控制纱线引导装置的整经宽度,翘曲纱线的数量和翘曲长度(翘曲绕组数量)和每转的输送带进给间距。 因此,缠绕在整经滚筒上的纱线的表面在平坦状态下完成而不起伏,而与计数无关,从而解决了下一次织造步骤中的麻烦。
    • 8. 发明授权
    • Sample warper with detector for yarn on yarn guide
    • 带导纱器纱线检测器的采样整经机
    • US06385826B1
    • 2002-05-14
    • US09867384
    • 2001-05-31
    • Yoshihiro TanakaTakatsugu Aihara
    • Yoshihiro TanakaTakatsugu Aihara
    • D02H300
    • D02H3/04B65H63/0324B65H2701/31
    • A sample warper including a plurality of yarn guides, rotatably mounted on one side surface of a warper drum, for winding a plurality of yarns on the warper drum, a yarn selector mounted on a base supporting the warper drum for supplying the individual yarn selectively to one of the yarn guides and receiving selectively the yarn from one of the yarn guides, and a rotary creel supporting a plurality of bobbins of various kinds and/or a single kind of yarns. To detect a trouble, such as mis-winding or double-yarn-winding, the sampler warper is equipped with a yarn detector disposed adjacent to the peripheral edge of the warper drum for detecting whether or not the individual yarn is caught by the associated yarn guide, thereby confirming transferring of the yarn between said yarn guide and said yarn selector so that the yarns are successively wound neatly on said warper drum in preset yarn order.
    • 包括多个导纱器的样品整经机,可旋转地安装在整经筒的一个侧表面上,用于将多个纱线卷绕在整经筒上;安装在支撑整体滚筒的基座上的纱线选择器,用于选择性地将各纱线 一个纱线引导件,并且从一个导纱器选择性地接收纱线,以及支撑多种各种纱线和/或单种纱线的旋转纱架。 为了检测诸如错绕或双纱卷绕的问题,采样器整经机配备有与整形筒的周缘相邻设置的纱线检测器,用于检测单根纱线是否被相关纱线捕获 从而确认纱线在所述导纱器和所述纱线选择器之间的转移,使得纱线以预定的纱线顺序连续地卷绕在所述整经滚筒上。
    • 9. 发明授权
    • Electronically controlled sample warper with fixed and rotary creels
    • 带固定和旋转纱架的电子控制样品整经机
    • US06173480B1
    • 2001-01-16
    • US09221593
    • 1998-12-29
    • Yoshihiro Tanaka
    • Yoshihiro Tanaka
    • D02H300
    • D02H3/04D02H1/00
    • An electronically controlled sample warper which automatically exchanges yarns and winds the yarns on a warper drum in accordance with a preset yarn order. A plurality of yarn introduction mechanisms are each rotatably mounted to a side surface of the warper drum for winding a yarn on the warper drum. A yarn introduction member is arranged at a distal end of each of the yarn introduction mechanisms for holding a yarn. A plurality of yarn selection guides are arranged in one end portion of a base for supporting the warper drum corresponding to the yarn introduction mechanisms with each yarn selection guide pivotally moved to protrude to a yarn exchange position when a yarn is exchanged and pivotally moved to retract to a standby position when a yarn is accommodated. Yarns are passed between the yarn introduction mechanisms and the yarn selection guides. A fixed creel is installed corresponding to the plurality of yarn selection guides supporting a plurality of bobbins on which different kinds of yarns are wound. A rotary creel is installed corresponding to the plurality of yarn selection guides supporting a plurality of bobbins on which different kinds and/or the same kind of yarns are wound. The yarns in the fixed creel and the rotary creel are accommodated in corresponding yarn selection guides, so that they can be used in combination in accordance with preset pattern data, when these yarns are wound on the warper drum, to perform pattern warping.
    • 一种电子控制的样品整经机,根据预设的纱线顺序自动交换纱线并卷绕在整经筒上的纱线。 多个纱线引入机构各自可旋转地安装在整经筒的侧表面,用于将纱线卷绕在整经筒上。 纱线引导构件布置在每个纱线引入机构的远端,用于保持纱线。 多个纱线选择导向器布置在基座的一个端部中,用于支撑与纱线引入机构对应的整经筒,每个纱线选择导向器在纱线被更换并且枢转地移动以缩回时枢转地移动到突出到纱线交换位置 当纱线被容纳到待机位置时。 纱线在纱线引入机构和纱线选择导向器之间通过。 对应于多个纱线选择导向器安装有固定的纱架架,所述多个纱线选择导向器支撑着缠绕有不同种类的纱线的多个线轴。 相对于支撑多根卷绕有不同种类和/或相同种类的纱线的多个线轴的多个纱线选择导向装置安装有旋转经轴架。 将固定经轴架和旋转经轴架上的纱线容纳在相应的纱线选择导向器中,使得当这些纱线卷绕在整经机滚筒上时,可以根据预设的图案数据组合使用它们,以执行图案翘曲。
    • 10. 发明授权
    • Tail structure of shield driving machine
    • 盾构机尾部结构
    • US6092963A
    • 2000-07-25
    • US184984
    • 1998-11-03
    • Kiyoshi MiyaYoshihiro Tanaka
    • Kiyoshi MiyaYoshihiro Tanaka
    • E21D9/06
    • E21D9/0635
    • The present invention relates to a tail structure of a shield driving machine, and in particular relates to an improvement technique of the tail sealing portion of this type of shield driving machine, in order to eliminate wearing of the tail seal. The tail structure has a first tail seal 12 and a second tail seal 14. The first tail seal 12 is provided with a tail ring 12a, a seal tube 12b and packing 12c, and the tail ring 12a is secured movably in the axial direction of a skin plate 10. The packing 12c is pressure-fitted to segments 11 in line with enlargement of the seal tube 12b and is spaced from the segments 11 in line with reduction of the seal tube 12b. The second tail seal 14 is provided with a seal tube 14a and packing 14b, wherein the packing 14b is pressure-fitted to the segments 11 in line with enlargement of the seal tube 14a and is spaced from the segments 11 in line with reduction of the seal tube 14b. When excavating, the packing 14b causes the first tail seal 12 to be pressure-fitted to the segments 11 without moving the first tail seal 12, and causes the second tail seal 14 to be spaced from the segments 11.
    • 本发明涉及一种屏蔽驱动机的尾部结构,特别涉及这种类型的屏蔽驱动机的尾部密封部分的改进技术,以便消除尾部密封件的磨损。 尾部结构具有第一尾部密封件12和第二尾部密封件14.第一尾部密封件12设置有尾环12a,密封管12b和密封件12c,并且尾部环12a沿轴向方向 皮肤板10.密封件12c与密封管12b的扩大一致地压配合到段11上,并且与密封管12b的减少一致地与段11间隔开。 第二尾部密封件14设置有密封管14a和密封件14b,其中密封件14b与密封管14a的扩大一致地压配合到节段11上,并且与节段11间隔开 密封管14b。 当挖掘时,填料14b使得第一尾部密封件12被压配合到段11而不移动第一尾部密封件12,并使第二尾部密封件14与段11间隔开。