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    • 12. 发明专利
    • Intermediate layer paper take-up device
    • 中间层纸张采购设备
    • JP2007066534A
    • 2007-03-15
    • JP2005247180
    • 2005-08-29
    • Altex:Kk株式会社アルテックス
    • TANIGUCHI KIICHI
    • H01R43/055H01R43/048
    • PROBLEM TO BE SOLVED: To automatically take up intermediate layer paper on a roll, in a terminal supply module formed so that a terminal band continuously having terminals and the intermediate layer paper provided for protecting terminals are wound on a reel in a superimposed state. SOLUTION: This intermediate layer paper take-up device is composed of a stand 8 rotatably supporting the reel 3 with the reel perpendicularly raised, a rotational shaft 55 provided so as to make rolling contact with the peripheral surface of the reel 3 on the peripheral surface 33 of the reel 3 which is nearby the place forming the perpendicular axis of the stand 8 and is in its lower part, an intermediate layer paper taking-up roll 5 which makes rotational movement together with the rotational shaft 55 and operates so as to take up the intermediate layer paper 2, and a pressing force adjusting mechanism 7 which operates so as to press the rotational shaft 55 holding the intermediate layer paper taking-up roll 5 onto the peripheral surface 33 of the reel 3, and which is composed of a lever and a spring adjusting the pressing force to a proper value. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了自动地将中间层纸卷在卷上,在端子供应模块中形成为使得连续具有端子的端子带和为保护端子设置的中间层纸以叠加的方式卷绕在卷轴上 州。 解决方案:该中间层纸张卷取装置由可转动地支承卷轴3的卷轴3的立柱8组成,卷轴3卷轴垂直升起,旋转轴55设置成与卷轴3的周面滚动接触 卷轴3的外周表面33位于形成支架8的垂直轴线并位于其下部的位置附近,与旋转轴55一起旋转运动的中间层卷纸辊5 卷取中间层纸2以及按压力调节机构7,该按压力调节机构7将保持中间层卷纸辊5的旋转轴55按压到卷轴3的周面33上, 由杠杆和弹簧组成,将按压力调整到适当的值。 版权所有(C)2007,JPO&INPIT
    • 13. 发明专利
    • Die casting method
    • DIE铸造方法
    • JP2005177833A
    • 2005-07-07
    • JP2003424381
    • 2003-12-22
    • Arutetsukusu:KkToyota Industries Corp株式会社アルテックス株式会社豊田自動織機
    • KITANI FUMIHIKOITO KENSHONAKANE MASAO
    • B22D19/00B22C9/06B22D17/00B22D17/14B22D17/22B22D17/24B22D19/16B22D23/00B22D23/06C22C21/02
    • PROBLEM TO BE SOLVED: To obtain an aluminum die-cast product with which the partial variation of the characteristic can widely be realized and the sticking force between the partial parts is excellent and the escalation of the production cost is not developed.
      SOLUTION: The first molten metal M1 and the second molten metal M2 are aluminum as the principal element. In a first process, the first molten metal M1 is poured into a small cavity. In a second process, at the point of time when the fluidity of the first molten metal M1 in the small cavity is made to low, the small cavity is enlarged to change a large cavity C2 and while pouring the second molten metal M2 having different silicon content to the first molten metal M1 into the large cavity C2 together with oxygen as the misty state, the pressure is loaded to the second molten metal M2. In a third process, the first molten metal M1 and the second molten metal M2 in the large cavity C2 are solidified to obtain the aluminum die cast product.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了获得可以广泛实现特征部分变化并且部分部分之间的粘附力优异的铝压铸产品,并且不会产生生产成本的升高。 解决方案:第一熔融金属M1和第二熔融金属M2以铝为主要元素。 在第一工序中,将第一熔融金属M1注入小腔。 在第二工序中,在小腔中的第一熔融金属M1的流动性变低的时刻,小空腔被扩大以改变大空腔C2,同时倾倒具有不同硅的第二熔融金属M2 使第一熔融金属M1与氧气一起作为雾状态进入大腔C2,将压力加载到第二熔融金属M2。 在第三工序中,大腔C2中的第一熔融金属M1和第二熔融金属M2被固化,得到铝压铸产品。 版权所有(C)2005,JPO&NCIPI
    • 15. 发明专利
    • Metal melting holding furnace and its operation method
    • 金属熔炼保温炉及其操作方法
    • JP2009138964A
    • 2009-06-25
    • JP2007313358
    • 2007-12-04
    • Altex Co LtdElectric Power Dev Co Ltd株式会社アルテックス電源開発株式会社
    • NAKATOMI JINSUZUKI MASAHITOISHIKAWA AKIHIRO
    • F27B14/20B22D41/01B22D45/00F27B3/20F27B3/22F27B3/28F27B14/12F27B14/14F27D19/00
    • PROBLEM TO BE SOLVED: To resolve disadvantages of an indirect heating type metal melting holding furnace, such as a low melting speed and low heat efficiency, and to prevent waste of fuel by reducing variation of the temperature in the furnace. SOLUTION: A molten metal temperature T1 in a crucible 1 of a metal melting holding furnace body is measured by a first temperature sensor 4, an temperature T2 inside of the furnace body is measured by a second temperature sensor 6, a target value A of the molten metal temperature T1 is set to a first temperature adjuster 5, a measured value of the molten metal temperature T1 is input to the same, a target value B of the temperature T2 in the furnace is output to a second temperature adjuster 7, a measured value of the temperature T2 in the furnace is input to the second temperature adjuster 7, a control signal for adjusting a fuel supply amount and an oxidizing agent supply amount is output to a burner 3 from the second temperature adjuster 7, and the fuel supply amount and the oxidizing agent supply amount to the burner 3 are adjusted on the basis of the control signal. COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:为了解决间接加热型金属熔化保持炉的缺点,如低熔点速度和低热效率,并且通过减少炉中的温度变化来防止燃料浪费。 解决方案:金属熔化保持炉体的坩埚1中的熔融金属温度T1由第一温度传感器4测量,炉体内部的温度T2由第二温度传感器6测量,目标值 将熔融金属温度T1的A设定为第一温度调节器5,将熔融金属温度T1的测量值输入到炉中的温度T2的目标值B输出到第二温度调节器7 将炉内的温度T2的测量值输入到第二温度调节器7,将用于调节燃料供给量和氧化剂供给量的控制信号从第二温度调节器7输出到燃烧器3, 基于控制信号调节燃烧器3的燃料供给量和氧化剂供给量。 版权所有(C)2009,JPO&INPIT
    • 16. 发明专利
    • Automatic terminal feeder
    • 自动终端进纸器
    • JP2007066535A
    • 2007-03-15
    • JP2005247187
    • 2005-08-29
    • Altex:Kk株式会社アルテックス
    • TANIGUCHI KIICHI
    • H01R43/055
    • PROBLEM TO BE SOLVED: To efficiently change the setup of a terminal feeder.
      SOLUTION: This automatic terminal feeder is composed of a terminal feeding module 6 consisting of a reel 3 on which an infinite number of terminals 11 are taken up, and an applicator 66 provided in situations where it holds the terminals existing at the extreme tip part among those taken up by the reel 3 and makes a pair with the reel 3, a stock yard 8 equipped with a plurality of kinds of terminal feeding module 6, a stock yard driving device 5 to drive the stock yard 8 in a prescribed direction, a conveyance path 95 which forms a part of the stock yard 8 and one end of which is connected to the extraction port 89 where the applicator 66 is mounted and the other end of which is connected to the applicator installing part 99 of a press machine 9, an applicator transfer device 2 provided in the conveyance path 95 to move the applicator 66, and a control means 7 to control operations of the stock yard driving device 5 and the applicator transfer device 2.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:有效地改变终端馈线的设置。

      解决方案:该自动端子供给器由一个端子馈送模块6组成,端子馈送模块6由卷绕在其上无限数量的端子11的卷轴3组成,以及一个施放器66, 由卷轴3卷绕的卷筒3中的末端部分,与卷轴3成对的一个;配备有多个端子供给模块6的堆场8;堆场驱动装置5,用于以规定的速度驱动堆场8 方向,形成库房8的一部分的输送路径95,其一端连接到安装施用器66的抽出口89,另一端连接到印刷机的涂布器安装部99 机器9,设置在输送路径95中以移动施加器66的施加器传送装置2和控制装置7,以控制堆场驱动装置5和涂抹器传送装置2的操作。版权所有(C) 2007年,日本特许厅和INP 它

    • 17. 发明专利
    • Metal casting system
    • 金属铸造系统
    • JP2006110584A
    • 2006-04-27
    • JP2004299269
    • 2004-10-13
    • Arutetsukusu:KkElectric Power Dev Co Ltd株式会社アルテックス電源開発株式会社
    • SASAZU KOJIKONISHI KINPEIKOBORI KEIICHISUZUKI MASAHITO
    • B22D47/00B22D45/00H01M8/00H01M8/04H01M8/12
    • Y02E60/525
    • PROBLEM TO BE SOLVED: To secure the thermal energy needed to melting of a metal and temperature-holding of molten metal, to enlarge the utilizing formation of the energy obtained from a fuel and to improve the utilizing efficiency of the energy. SOLUTION: In a metal casting system 1A provided with a forming means 24 for forming the metal for casting into a prescribed shape, the metal casting system is provided with a melting furnace 14 for melting the metal for casting, a molten metal holding furnace 20 for holding the molten state of the metal melted with the melting furnace, a high temperature fuel cell 10 and an exhaust heat supplying means for supplying a primary exhaust heat of the high temperature fuel cell 10 into at least either one of the melting furnace 14 and the molten metal holding furnace 20. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了确保熔融金属所需的热能和熔融金属的温度保持,以扩大从燃料获得的能量的利用形成,并提高能量的利用效率。 解决方案:在金属铸造系统1A中,设置有用于将铸造用金属成形为规定形状的成形装置24,金属铸造系统设置有用于熔化用于铸造的金属的熔化炉14,熔融金属保持 用于保持用熔化炉熔化的金属的熔融状态的炉20,高温燃料电池10和排气供热装置,用于将高温燃料电池10的初级排气热量提供到熔化炉 14和熔融金属保持炉20。(C)2006,JPO&NCIPI
    • 18. 发明专利
    • Die casting method
    • DIE铸造方法
    • JP2005177834A
    • 2005-07-07
    • JP2003424383
    • 2003-12-22
    • Arutetsukusu:KkToyota Industries Corp株式会社アルテックス株式会社豊田自動織機
    • KITANI FUMIHIKOITO KENSHONAKANE MASAO
    • B22D19/00B22D17/00B22D17/24B22D21/04
    • PROBLEM TO BE SOLVED: To obtain an aluminum die-cast product with which the partial variations of the characteristic can widely be realized and the sticking force between the partial parts is excellent and the escalation of production cost is not developed.
      SOLUTION: A die casting method is provided with a first process for inserting a metal-made insert member M1 into a cavity C; a second process for applying the pressure to molten metal while pouring the molten metal M2 having different component to the insert member M1 and aluminum as the principle component into the cavity C; and a third process for obtaining the aluminum die-cast product P by solidifying the molten metal M2 in the cavity C. In the second process, the insert member M1 is induction-heated with a high frequency coil 2a.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了获得可以广泛实现特征部分变化并且部分部分之间的粘附力优异的铝压铸产品,并且不会产生生产成本的升高。 解决方案:压铸方法具有用于将金属制插入件M1插入空腔C的第一工艺; 在将具有不同成分的熔融金属M2以插入件M1和铝作为主要成分的情况下将压力施加到熔融金属的第二工序进入空腔C; 以及通过使空腔C中的熔融金属M2凝固来获得铝压铸产品P的第三工序。在第二工序中,插入件M1被高频线圈2a感应加热。 版权所有(C)2005,JPO&NCIPI