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    • 62. 发明申请
    • Container for sealant for pneumatic tires
    • 充气轮胎密封剂容器
    • US20060272731A1
    • 2006-12-07
    • US11444340
    • 2006-06-01
    • Yuji Takeda
    • Yuji Takeda
    • B65B31/00
    • B29C73/166B29L2030/00Y10T137/7895
    • A container for storing and injecting a liquid sealant for sealing and closing a puncture hole of a pneumatic tire includes a container body for storing the sealant. An outlet for injecting the sealant to outside opens in a lid securing portion of the container body, and an outer lid member having a sealant path therethrough is connected to the lid securing portion and communicates the sealant path with an interior space of the container body through the outlet. An inner lid member is press-fitted into the outlet and maintained in a closure position for tightly closing the outlet. The inner lid member can be forced from the closure position into inside of the sealant path, by the pressure of the sealant in the container body and/or by the pressure of gas above the sealant, A connector member connects the inner lid member to the lid securing portion or the outer lid member so as to be movable from the closure position to the interior of the sealant path. The connector member limits the movement of the inner lid member toward downstream side, after it has been forced from the closure position.
    • 用于储存和注入用于密封和关闭充气轮胎的穿孔的液体密封剂的容器包括用于储存密封剂的容器主体。 用于将密封剂注入到外部的出口在容器主体的盖固定部分中敞开,并且具有穿过其的密封剂路径的外盖构件连接到盖固定部分,并将密封剂路径与容器主体的内部空间连通 出口。 内盖构件被压配合到出口中并保持在关闭位置以紧紧地关闭出口。 内盖构件可以通过容器主体中的密封剂的压力和/或通过密封剂上方的气体的压力从封闭位置被迫到密封剂路径的内部,连接器构件将内盖构件连接到 盖固定部分或外盖部件,以便能够从封闭位置移动到密封剂路径的内部。 连接器构件在从关闭位置被迫之后,限制内盖构件向下游侧的移动。
    • 65. 发明授权
    • Production process of polyphenylene ether
    • US06521735B2
    • 2003-02-18
    • US09883264
    • 2001-06-19
    • Akira MitsuiYuji Takeda
    • Akira MitsuiYuji Takeda
    • C08G6538
    • C08G65/44
    • A process for producing a polyphenylene ether by oxidative polymerization of a phenol compound using a catalyst and an oxygen-containing gas, wherein said catalyst comprises a copper compound, a bromine compound, a diamine compound of formula (1) as recited in the specification, a tertiary monoamine compound and a secondary monoamine compound, and wherein said process comprises the steps of: preparing a catalyst component (P1) in a container which is under a substantially oxygen-free inert atmosphere by mixing the copper compound and the bromine compound to obtain a mixture and then mixing the mixture with the secondary monoamine compound in an amount of at least 2 times the molar amount of the copper atom; separately preparing a catalyst component (P2) by mixing the diamine compound of formula (1) and the tertiary monoamine compound together with a solvent in an oxidative polymerization vessel; adding a predetermined amount of the catalyst component (P1) to the polymerization vessel containing the catalyst component (P2), and mixing the catalyst components (P1) and (P2); and initiating oxidative polymerization.
    • 67. 发明授权
    • Printing device and die-cutting device
    • 印刷装置和模切装置
    • US5540148A
    • 1996-07-30
    • US329224
    • 1994-10-26
    • Nobuyoshi OumiyaKazuhiko SatoTadayoshi IharagumiIwao NakajimaNobuyoshi ItakiYuji Takeda
    • Nobuyoshi OumiyaKazuhiko SatoTadayoshi IharagumiIwao NakajimaNobuyoshi ItakiYuji Takeda
    • B41F13/12B41F17/00B41F31/00
    • B41F17/00B41F13/12B41F31/00
    • A printing device of the type for printing a strip-like printing article having a printing impression roller which is movable forwards while rotating in one direction and backwards while rotating in the opposite direction, along a line perpendicular to the direction of feeding a strip-like printing article is provided with a slide base which is slidable along rails which extend in a direction perpendicular to the direction of feeding of the printing article. Ink tanks and a roller train are mounted on the slide base. The roller train includes an ink fountain roller, a duct roller whose peripheral surface is in contact with the ink fountain roller, a stationary metallic roller whose peripheral surface is in contact with the duct roller, a first ink distribution roller whose peripheral surface is in contact with the metallic roller, and a second ink distribution roller whose peripheral surface is in contact with the first ink distribution roller. The contact between the first ink distribution roller and the second ink distribution roller of the roll train with ink rollers is separated by the movement of the slide base.
    • 一种用于印刷带状印刷品的印刷装置,其具有印刷压印辊,所述印刷压印辊在沿相反方向旋转的同时沿着一个方向向后移动并向后移动,沿着垂直于馈送条状的方向的线 印刷制品设置有滑动基座,该滑动基座可沿着沿着与打印制品的进给方向垂直的方向延伸的轨道滑动。 油墨罐和滚轮系安装在滑动底座上。 辊列包括墨斗辊,其外周表面与墨斗辊接触的导管辊,其周面与导管辊接触的固定金属辊,其外周表面接触的第一墨水分配辊 以及第二墨水分配辊,其外周表面与第一墨水分配辊接触。 通过滑动基座的移动,墨辊之间的第一墨水分配辊和滚筒列车的第二墨水分配辊之间的接触被分离。
    • 68. 发明授权
    • Apparatus for detecting the rotational displacement of a rotating member
    • 用于检测旋转构件的旋转位移的装置
    • US5353635A
    • 1994-10-11
    • US15935
    • 1993-02-10
    • Toshinari SaikiYuji Takeda
    • Toshinari SaikiYuji Takeda
    • F02D45/00F02B1/04F02D35/00F02D41/34F02P7/067G01D5/245G01M15/06G01M15/00
    • F02D41/009F02P7/0675G01D5/2457G01M15/06F02B1/04
    • A first signal generating apparatus generates unit angular signals at predetermined angular intervals, in relation to the revolution of a first rotary shaft. The first signal generating apparatus generates a first reference signal which has a different timing than that of the unit angular signals. A second rotary shaft completes one revolution while the first rotary shaft completes two revolutions. A second signal generating apparatus generates a second reference signal with every revolution of the second rotary shaft. A counting apparatus counts the unit angular signals and stores the counted value, and initializes the counted value every time the first reference signal is generated. An angular detecting apparatus determines whether or not the second reference signal is generated by the second signal generating apparatus. Based on the result of this inquiry, the angular detecting apparatus measures the rotational or angular displacement of the first rotary shaft.
    • 第一信号生成装置相对于第一旋转轴的旋转以预定的角度间隔生成单位角度信号。 第一信号发生装置产生与单位角度信号不同的定时的第一参考信号。 在第一旋转轴完成两转时,第二旋转轴完成一转。 第二信号发生装置在第二旋转轴的每转一次产生第二参考信号。 计数装置对单位角度信号进行计数并存储计数值,并且每当产生第一参考信号时初始化计数值。 角度检测装置确定第二信号发生装置是否产生第二参考信号。 基于该询问的结果,角度检测装置测量第一旋转轴的旋转或角位移。