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    • 1. 发明专利
    • Ink-fountain apparatus
    • INK-FOUNTAIN APPARATUS
    • JP2013177000A
    • 2013-09-09
    • JP2013101830
    • 2013-05-14
    • J P Ii Kkジェーピーイー株式会社
    • KUMAKI TSUNEOHASHIMOTO KUNIHIKO
    • B41F31/04
    • PROBLEM TO BE SOLVED: To provide an ink-fountain apparatus that improves reproducibility of zero point adjustment and difficulty in adjustment, while preventing ink leakage.SOLUTION: A link 31 has an eccentric wheel 35 that is oscillated in a body 10 with driving force to eccentrically move. An ink-fountain apparatus 1 includes the link 31. An adjustment unit 40 is arranged in the body 10. The adjustment unit has a tip threaded into a push rod 17 capable of moving forward and backward and always in contact with a free end of the link 31, comprises a drive shaft portion 41, an adjusting screw portion 42, and a gear portion 43, and finely adjusts an ink blade 20. The adjusting screw portion 42 is brought into threaded contact with a screw groove X of a bracket 48 provided vertically in the body 10, and is brought into contact with a flange portion 44 formed in the drive shaft portion 41 through an elastic member 49. The gear portion 43 meshes with a gear 54 of a driving unit 50, and is rotated by a motor 51.
    • 要解决的问题:提供一种提高零点调整的再现性和难以调节的墨水装置,同时防止油墨泄漏。解决方案:连杆31具有偏心轮35,偏心轮35在主体10中以驱动力振动 偏心地移动 墨斗装置1包括连杆31.调节单元40布置在主体10中。调节单元具有螺纹连接到推杆17中的末端,该推杆能够向前和向后移动并且始终与自由端接触 连杆31包括驱动轴部分41,调节螺丝部分42和齿轮部分43,并且精细地调节墨叶片20.调节螺丝部分42与设置的支架48的螺纹槽X螺纹接触 垂直于主体10,并且通过弹性部件49与形成在驱动轴部分41中的凸缘部分44接触。齿轮部分43与驱动单元50的齿轮54啮合,并通过马达 51。
    • 2. 发明专利
    • Driving device of induction motor
    • 电动机驱动装置
    • JP2013162598A
    • 2013-08-19
    • JP2012021636
    • 2012-02-03
    • J P Ii Kkジェーピーイー株式会社
    • AKAO YOSHIAKI
    • H02P27/06
    • PROBLEM TO BE SOLVED: To make optimal driving possible over a wide operational range of power running and regenerative running even if the number of rotations and a load factor change by driving an induction motor at a slip frequency of maximum efficiency and a slip frequency of maximum torque.SOLUTION: An induction motor controller stores maximum efficiency slip values corresponding to respective rotational speeds and a maximum torque slip value corresponding to stalling torque. It detects a rotational speed and obtains the maximum efficiency slip value corresponding to the rotational speed. It obtains the maximum efficiency slip value as an optimum slip value in a region where instruction voltage is low, an intermediate slip value in an intermediate voltage region, and the maximum torque slip value in a high voltage region. It obtains a driving slip frequency from the rotational speed and the optimum slip value, adds it to the detected rotational speed, and instructs the result to a variable frequency inverter as a frequency command. This enables operation achieving good balance of efficiency and responsiveness.
    • 要解决的问题:即使通过以最大效率的滑动频率和最大滑移频率驱动感应电动机来转动和负载系数变化,也可以在功率运行和再生运行的广泛操作范围内实现最佳驱动 转矩。解决方案:感应电动机控制器存储对应于各个转速的最大效率滑移值和对应于失速转矩的最大转矩滑移值。 它检测转速并获得与转速对应的最大效率滑移值。 在指令电压低的区域,中间电压区域的中间滑移值以及高电压区域的最大转矩滑移值中,获得最大效率滑移值作为最佳滑移值。 从转速和最佳滑移值得到驱动转差频率,将其与检测到的转速相加,并将结果指示为可变频逆变器作为频率指令。 这使得操作实现了效率和响应性的良好平衡。
    • 3. 发明专利
    • Torque controller
    • 扭矩控制器
    • JP2010252435A
    • 2010-11-04
    • JP2009096454
    • 2009-04-10
    • J P Ii Kkジェーピーイー株式会社
    • AKAO YOSHIAKI
    • H02P27/06
    • PROBLEM TO BE SOLVED: To control the torque of a three-phase AC induction motor for a web winder through a simple circuit.
      SOLUTION: A torque controller generates a three-phase AC current with an inverter 3 from a DC power source 6, thereby driving the three-phase AC induction motor 1. It measures the number of revolutions of the three-phase AC induction motor 1 with a speed detector 4, thereby getting an angular velocity ωm of a rotor. It adds the angular velocity of the rotor, measured with the speed velocity 4, to the slide angular velocity corresponding to a slide frequency set to an optimal value, thereby getting drive angular velocity. It generates a stator voltage command for zero izing a value obtained by subtracting 9/8 times of the square of a stator current from the square of a torque component current corresponding to a torque command, with a PID control means. It generates a three-phase sine wave, according to a stator voltage command and a field angular velocity command. It controls the inverter 3 with a signal in which the three-phase sine waves are PWM-modulated with a PWM circuit. It keeps its target torque with only the current detector 5 and the speed detector 4, while keeping the slide frequency constant.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:通过简单的电路来控制卷绕机的三相交流感应电动机的转矩。 解决方案:转矩控制器通过直流电源6与逆变器3产生三相交流电流,从而驱动三相交流感应电机1.它测量三相交流感应电机的转数 具有速度检测器4的电动机1,从而获得转子的角速度ωm。 它将以速度4测量的转子的角速度与对应于设置为最佳值的滑动频率的滑动角速度相加,从而获得驱动角速度。 它产生一个定子电压命令,用于通过用PID控制装置从与扭矩指令相对应的转矩分量电流的平方减去9/8倍的定子电流平方得到的值进行归位。 它根据定子电压指令和场角速度指令产生三相正弦波。 它使用PWM电路对三相正弦波进行PWM调制的信号来控制逆变器3。 它只在电流检测器5和速度检测器4保持其目标转矩,同时保持滑动频率恒定。 版权所有(C)2011,JPO&INPIT
    • 4. 发明专利
    • Plate twist adjusting device of sheet printer
    • 平板印刷机板材调整装置
    • JP2009107200A
    • 2009-05-21
    • JP2007281211
    • 2007-10-30
    • J P Ii Kkジェーピーイー株式会社
    • KUMAKI TSUNEOHOSHINO MITSUOSATO SHINICHI
    • B41F13/16
    • PROBLEM TO BE SOLVED: To eliminate the setting limit of gears by reducing the number of a plurality of gear rows coupling the respective gears fixedly arranged to a motor for twisting a plate and an encoder for detecting plate cylinder rotation and a plate cylinder gear. SOLUTION: In the device in which a holding-side plate fastening section, a buttock-side plate fastening section, and a plate fastening section are arranged in the recessed portion of a plate cylinder, one end portion of a holding-side lower tooth is pivoted in a recessed portion bottom wall, a slider is interposed between the other end portion of the holding-side lower tooth and the recessed portion bottom wall, the printing plate is twisted by turning the gear of a slider shaft for moving a slider by motor 4 with a brake, a driving cylinder 9 turned by the motor 4 via a reducing gear wheel 7, 8 is arranged in a reducer 2, an operation shaft 11 interlocked with the plate cylinder gear is arranged in the driving cylinder 9, the driving cylinder 9 and the operation shaft 11 are freely connected and detached by a clutch 13, the encoder 16 is coupled to one end portion of the operation shaft 11 via the gear, and the motor 4 and the encoder 16 are integrally arranged in the reducer 2. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:通过减少将固定地布置到用于扭转板的马达的各个齿轮和用于检测印版滚筒旋转的编码器以及印版滚筒的多个齿轮列的数量减少来消除齿轮的设定极限 齿轮。 解决方案:在保持侧板紧固部,臀侧板紧固部和板紧固部布置在印版滚筒的凹部中的装置中,保持侧的一个端部 下齿在凹部底壁上枢转,滑块被插入在保持侧下齿的另一端部与凹部底壁之间,通过转动用于移动的滑动轴的齿轮来扭转印版 由电动机4制动的滑块,通过减速齿轮7,8由电动机4转动的驱动气缸9设置在减速机2中,与驱动气缸9中配置有与气缸齿轮联动的操作轴11, 驱动气缸9和操作轴11通过离合器13自由地连接和分离,编码器16通过齿轮联接到操作轴11的一个端部,马达4和编码器16一体地设置在 减速器2.

      版权所有(C)2009,JPO&INPIT

    • 5. 发明专利
    • Roll shaft mounting structure for cylinder washing apparatus
    • 滚筒洗衣机滚筒轴承安装结构
    • JP2011201314A
    • 2011-10-13
    • JP2011132874
    • 2011-06-15
    • J P Ii Kkジェーピーイー株式会社
    • KUMAKI TSUNEOMIYAZAKI KIYOSHI
    • B41F35/06
    • B41F35/00B08B1/00B08B1/008B41F35/04B41F35/06B41P2235/24B41P2235/246
    • PROBLEM TO BE SOLVED: To provide a roller shaft mounting structure for a cylinder washing apparatus capable of simply mounting a roll shaft on a bearing provided on a plate.SOLUTION: A bearing cylindrical part 110 through which a pin is inserted in the radial direction is provided on one plate 3a, and an inserting member 101 having an inserting projection 104 provided with a channel and a rod 107 energized by a spring 105b facing the inside is arranged at one end of a roll shaft 100, and a holder in which one corner of the upper part of a seat is cut to form a collar inserting part is provided on the other plate. A collar to be inserted into the seat part is arranged at the other end of the roll shaft 100, and the inserting projection 104 is inserted into the bearing cylindrical part 110 to bring the rod 107 into contact with the pin. The spring 105b is compressed, and the collar of the other end is inserted into the seating part from a collar inserting part, the roll shaft 100 is energized to the other plate side by the spring 105b to seat the roll shaft 100 on the seating part.
    • 要解决的问题:提供一种滚筒轴安装结构,用于能够简单地将辊轴安装在设置在板上的轴承上的滚筒洗涤装置。解决方案:销沿径向插入的轴承圆筒部110是 设置在一个板3a上,并且具有设置有通道的插入突起104和由面向内侧的弹簧105b通电的杆107的插入构件101布置在辊轴100的一端,并且保持器 在另一个板上设置座椅的上部,以形成套环插入部。 插入座部的套环布置在辊轴100的另一端,并且插入突起104插入到轴承圆筒部110中以使杆107与销接触。 弹簧105b被压缩,并且另一端的轴环从套环插入部分插入到座部件中,辊轴100被弹簧105b通电到另一个板侧,以将辊轴100安置在座位部分上 。
    • 6. 发明专利
    • Traveling rail positioning device for cutter main body of u-shaped groove cutting apparatus
    • U型切割机切割机主体的行驶轨道定位装置
    • JP2008127849A
    • 2008-06-05
    • JP2006313988
    • 2006-11-21
    • J P Ii Kkジェーピーイー株式会社
    • KUMAKI TSUNEOHOSHINO MITSUOSATO SHINICHI
    • E03F5/04B28D1/04
    • PROBLEM TO BE SOLVED: To provide a traveling rail positioning device for a U-shaped groove cutting apparatus, which is smoothly applicable to the case where a U-shaped groove has only a shallow depth or the U-shaped groove includes a round portion at an intersection between a side wall and a bottom surface thereof (in a secondary product, for instance).
      SOLUTION: The traveling rail positioning device is formed of a rail (3) arranged in the U-shaped groove (2), a mount (8) having a trapezoidal plan, and a base (4). The mount (8) is formed of a plate-shaped mount body (81), and vertical portions (82) erected upward from both edges of the mount main body (81). The mount body (81) is secured to a lower surface of the rail (3), and the vertical portions (82) are engaged with the mount body (81) along trapezoidal oblique sides of the same. Then a wedge (9) is driven into a gap between each vertical portion (82) and the U-shaped groove side wall (21). The wedge has a wedge angle equal to an angle of the trapezoidal oblique side of the mount body (81).
      COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:为了提供一种用于U形槽切割装置的行进轨道定位装置,其可平滑地应用于U形槽仅具有浅深度的情况或U形槽包括 在侧壁和底面之间的交点处(例如在二次产品中)的圆形部分。

      解决方案:行进轨道定位装置由布置在U形槽(2)中的轨道(3),具有梯形平面的座(8)和基座(4)构成。 安装件(8)由板状安装体(81)和从安装主体(81)的两个边缘向上竖立的竖直部分(82)形成。 安装体(81)固定在轨道(3)的下表面,垂直部分(82)沿其梯形斜边与安装体(81)接合。 然后,楔形件(9)被驱动到每个垂直部分(82)和U形槽侧壁(21)之间的间隙中。 楔具有等于安装体(81)的梯形倾斜侧的角度的楔角。 版权所有(C)2008,JPO&INPIT

    • 7. 发明专利
    • U-shaped groove-cutting apparatus
    • U型切割设备
    • JP2006192677A
    • 2006-07-27
    • JP2005005903
    • 2005-01-13
    • J P Ii KkNihon Kogyo Co LtdSky Arc:Kkジェーピーイー株式会社日本興業株式会社株式会社スカイ・アーク
    • KUMAKI TSUNEOHOSHINO MITSUOSATO SHINICHIINUYAMA SHOZO
    • B28D1/04
    • PROBLEM TO BE SOLVED: To provide a U-shaped groove-cutting apparatus capable of easily cutting a U-shaped groove only by replacing a cutting blade even in a case different in size.
      SOLUTION: A cutting machine body 6 is provided on the stand 5 capable of traveling on the rail 3 housed in the U-shaped groove 2. The cutting machine body 6 has a cutting control mechanism 69 for rotationally driving the cutting blade 61 and a notching drive device 7, and the cutting control mechanism 69 is equipped with the rotational speed measuring means 691 of a cutting blade driving electromotor 62, a slip frequency operator 692, a frequency operator 694 and a voltage operator 695 to which a value becoming constant in the number of gap magnetic fluxes is preliminarily inputted and further provided with a frequency setting device 696 capable of corresponding to the size of the cutting blade 61 and an adder 697 for adding the slip frequency of the slip frequency operator 692 and the rotational speed of the electromotor 62. The outputs of the adder 697 and the frequency setting device 696 are inputted to the frequency operator 694 and the voltage operator 695 and the outputs from the frequency operator 694 and the voltage operator 695 are used as an instruction value to drive the induction electromotor 62 by an inverter 693.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供即使在尺寸不同的情况下也可以通过更换切割刀片来容易地切割U形槽的U形槽切割装置。 解决方案:切割机主体6设置在支架5上,能够在容纳在U形槽2中的导轨3上行进。切割机主体6具有切割控制机构69,用于旋转地驱动切割刀片61 和切口驱动装置7,切割控制机构69配备有切割刀驱动电动机62的转速测量装置691,转差频率运算器692,频率运算器694和电压运算器695,值变为 预先输入间隙磁通数量的恒定值,并且还设置有能够对应于切割刀片61的尺寸的频率设定装置696和用于将滑差频率算出器692的转差频率与转速 加法器697和频率设定装置696的输出被输入到频率运算器694和电压运算器695,并且输出从 使用频率运算器694和电压运算器695作为用于通过反相器693驱动感应电动机62的指令值。(C)版权所有(C)2006,JPO&NCIPI
    • 9. 发明专利
    • Non-core type bit for wet core drill
    • 非核心钻头的核心钻头
    • JP2003011113A
    • 2003-01-15
    • JP2001203197
    • 2001-07-04
    • J P Ii KkRiken Diamond Industry Co Ltdジェーピーイー株式会社理研ダイヤモンド工業株式会社
    • KUMAKI TSUNEOKANEKO KAZUOINUYAMA SHOZOYABUKI HIROYASU
    • B28D1/14
    • PROBLEM TO BE SOLVED: To provide a non-core type bit for a wet core drill which is improved in cutting efficiency by making its structure be able to discharge a core left in the central part outside during boring by pulverizing the coarse particles of the core so that the core is prevented from being left in the channel part of a diamond tip and in the hollow part of a rod and can remove the coarse particles causing clogging by detaching a bit part easily.
      SOLUTION: The bit is composed of the bit part (3) and a shank part (2). The bit part (3) has a U-shaped channel (4A) bored to expand from the central part (C) to the outside and is composed of the diamond chip (4) formed by pushing the deep end part (4c) of the channel (4A) by a small distance (d) from the center of the diamond tip (4) and a connection part (5) formed by welding one end to the diamond tip (4) and making the other end contact the shank part (2).
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了提供一种用于湿芯钻的非芯型钻头,其通过使其结构能够通过粉碎芯的粗颗粒而在镗孔期间将在中心部分中留下的芯排出,从而提高切削效率 从而防止芯部留在金刚石尖端的通道部分和杆的中空部分中,并且可以容易地通过分离钻头部件来去除引起堵塞的粗粒子。 解决方案:该钻头由钻头部件(3)和柄部件(2)组成。 钻头部分(3)具有从中心部分(C)扩展到外部的U形通道(4A),并且由通过将深部(4c)推压而形成的金刚石芯片 通道(4A)从金刚石尖端(4)的中心小距离(d)和通过将一端焊接到金刚石尖端(4)而形成的连接部分(5),并使另一端接触柄部( 2)。
    • 10. 发明专利
    • Device for cutting inner wall of concrete pipe
    • 用于切割混凝土管内壁的装置
    • JP2013079520A
    • 2013-05-02
    • JP2011219898
    • 2011-10-04
    • Sky Arc:Kk株式会社スカイ・アークJ P Ii Kkジェーピーイー株式会社Toa Grout Kogyo Co Ltd東亜グラウト工業株式会社
    • ONISHI KIYOSHIKUMAKI TSUNEOOOKA SHINKICHI
    • E03F7/00E21D11/04F16L55/18
    • PROBLEM TO BE SOLVED: To provide a device for cutting an inner wall of a concrete pipe, which can cut the inner wall even when a joint of the concrete pipe is bent or forms a gap or a step.SOLUTION: A device for cutting an inner wall of a concrete pipe includes a cutter unit 10 for cutting the inner wall W, and a rotation prevention unit 30 for preventing rotation of the cutter unit 10. The cutter unit 10 includes a motor 11 which is arranged in such a manner that a shaft 12 is positioned in parallel with a traveling direction, an arm 16 which is elongated to the radial outside from the shaft 12 and inclined backward with respect to the traveling direction, and a cutting blade 18 which is attached to the arm 16. Even when a joint J of the concrete pipe C is bent or forms a gap, the cutting blade 18 can continue the cutting of the inner wall W without being caught in an end surface of the concrete pipe C.
    • 要解决的问题:提供一种用于切割混凝土管的内壁的装置,即使当混凝土管的接头弯曲或形成间隙或台阶时,其也可切割内壁。 解决方案:一种用于切割混凝土管内壁的装置包括用于切割内壁W的切割器单元10和用于防止切割器单元10旋转的防旋转单元30.切割器单元10包括马达 11,其布置成使得轴12与行进方向平行地定位;臂16,其从轴12延伸到径向外侧并相对于行进方向向后倾斜;以及切割刀片18 即使当混凝土管C的接头J弯曲或形成间隙时,切割刀片18可以继续切割内壁W而不会被夹在混凝土管C的端面 。版权所有(C)2013,JPO&INPIT