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    • 81. 发明专利
    • Method for manufacturing magnetic recording medium
    • 制造磁记录介质的方法
    • JP2011123942A
    • 2011-06-23
    • JP2009280199
    • 2009-12-10
    • Toppan Printing Co Ltd凸版印刷株式会社
    • MURAMOTO HIROSHI
    • G11B5/84B42D15/10G11B5/80G11B5/855
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing a magnetic recording medium, for burying a magnetic recording layer in a substrate with a small amount of heat. SOLUTION: The method for manufacturing the magnetic recording medium includes a step to provide a core substrate and exterior substrates on the front face and on the rear face of the core substrate, and to stick the core substrate and the exterior substrates to each other, and a step to bury the magnetic recording layer in at least one of the exterior substrates. In the method, at least one of the exterior materials includes a porous substrate, and in the step to bury the magnetic recording layer in the exterior substrate, the magnetic recording layer is buried in the porous substrate with pressurization or with heating and pressurization. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种制造磁记录介质的方法,用于以少量的热量将基底中的磁记录层埋入其中。 解决方案:制造磁记录介质的方法包括在芯基板的前表面和后表面上提供芯基板和外基板的步骤,并将芯基板和外基板贴在每个 以及将磁记录层埋入至少一个外部基板的步骤。 在该方法中,外部材料中的至少一种包括多孔基材,并且在将磁记录层埋入外部基板的步骤中,磁记录层通过加压或加热和加压而被埋入多孔基材中。 版权所有(C)2011,JPO&INPIT
    • 82. 发明专利
    • Non-contact type ic card and method for manufacturing the same
    • 非接触式IC卡及其制造方法
    • JP2010234654A
    • 2010-10-21
    • JP2009085302
    • 2009-03-31
    • Toppan Printing Co Ltd凸版印刷株式会社
    • MURAMOTO HIROSHI
    • B42D15/10G06K19/07G06K19/077
    • PROBLEM TO BE SOLVED: To provide a non-contact type IC card and a method for manufacturing the same which can solve problems, in a non-contact type IC card having a conventional structure and a method for manufacturing the same, in which a working time for improving surface smoothness is lengthened, surface sink is generated on a surface corresponding to part mounted with an IC module, an IC chip is easily broken when an impact load perpendicular to the card is applied, and thickness variation of the card is large. SOLUTION: The non-contact type IC card is manufactured by preparing an antenna sheet equipped with at least an antenna coil and an IC module connected with the antenna coil, and by laminating a non-porous core sheet, a porous core sheet and a non-porous exterior sheet in this order on both of a front surface and a back surface of the antenna sheet into integration, wherein the front surface of the antenna sheet is the surface of the side mounted with the IC module. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供可解决问题的非接触型IC卡及其制造方法,在具有传统结构的非接触型IC卡及其制造方法中,在 提高表面平滑度的工作时间延长,在与安装有IC模块的部件相对应的表面上产生表面吸收,当垂直于卡片的冲击负荷被施加时,IC芯片容易断裂,并且卡片的厚度变化 很大 解决方案:非接触型IC卡是通过制备配备有天线线圈和与天线线圈连接的IC模块的天线片制造的,并且通过层叠无孔芯片,多孔芯片 和无孔的外部片材,在天线片材的前表面和后表面两者之间依次整合,其中天线片的前表面是安装有IC模块的一侧的表面。 版权所有(C)2011,JPO&INPIT
    • 83. 发明专利
    • Card improved in adhesion of concealment layer and production method thereof
    • 改进粘结层的卡片及其生产方法
    • JP2010201860A
    • 2010-09-16
    • JP2009051977
    • 2009-03-05
    • Toppan Printing Co Ltd凸版印刷株式会社
    • MURAMOTO HIROSHI
    • B42D15/10
    • PROBLEM TO BE SOLVED: To provide an overprint card excellent in various properties, displaying a sufficient interlayer adhesion without depending on a dissolving power of an ink solvent even if using a polyester based resin as a card base material, and further having a concealing layer capable of using a leafing type aluminum pigment excellent in concealment. SOLUTION: The card has a base material with a magnetic recording layer formed thereon and the concealing layer formed on the magnetic recording layer, wherein the concealing layer includes a copolymer of vinyl chloride, vinyl acetate and vinyl alcohol. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供各种性能优异的叠印卡,即使使用聚酯类树脂作为卡片基材,也不会依赖于油墨溶剂的溶解力而显示足够的层间粘合性,并且还具有 隐藏层,其能够使用隐蔽性优异的叶片型铝颜料。 解决方案:该卡具有形成在其上的磁记录层的基底材料和形成在磁记录层上的隐藏层,其中隐蔽层包括氯乙烯,乙酸乙烯酯和乙烯醇的共聚物。 版权所有(C)2010,JPO&INPIT
    • 84. 发明专利
    • Method for manufacturing card, and card
    • 制造卡和卡的方法
    • JP2009214484A
    • 2009-09-24
    • JP2008062351
    • 2008-03-12
    • Toppan Printing Co Ltd凸版印刷株式会社
    • SHINOHARA KENJIMURAMOTO HIROSHI
    • B42D15/10G06K19/077
    • PROBLEM TO BE SOLVED: To provide a card manufacturing method which enables cards easily to be stacked and integrated and stably fed with an issuing machine by absorbing ununiformity in their thickness without carrying out an operation of insertion and removal of an interleaving paper at each process to avoid damages to a card surface and can prevent the cards from generating scratches and unevenness caused by friction between cards during packing, transportation and storage, and to provide a card. SOLUTION: The card manufacturing method includes the process for laminating and pressing an over-sheet on at least one surface of a center core sheet to obtain a card base 30 with a plurality of card shaped parts multi-faced, and the process for punching the card base into a card shape to obtain a card. After the process for obtaining the card base and before the process for punching the card base, a plurality of discontinuous projected parts having a thickness of 0.01 to 0.02 mm are formed on either the front or rear surface of the card shaped part of the card base. COPYRIGHT: (C)2009,JPO&INPIT
    • 解决问题:提供一种卡制造方法,其能够容易地通过吸收不均匀的厚度来堆叠并整合并稳定地供给发行机,而不进行插入和移除交织纸的操作 每个过程避免对卡片表面的损坏,并且可以防止卡片在包装,运输和存储期间由于卡片之间的摩擦而产生划痕和不均匀性,并提供卡片。 解决方案:卡片制造方法包括在中心芯片的至少一个表面上层压和压制覆盖片的方法,以获得具有多个多面卡片形部件的卡片基座30,并且该方法 用于将卡片基座卡入卡片形状以获得卡片。 在获得卡片基底的处理之前和冲孔卡片基底的处理之前,在卡片卡片的卡片形状部分的前表面或后表面上形成多个具有0.01至0.02mm厚度的不连续突起部分 。 版权所有(C)2009,JPO&INPIT
    • 85. 发明专利
    • Fluorescent printing overprint card and manufacturing method thereof
    • 荧光印刷超薄印刷及其制造方法
    • JP2003276369A
    • 2003-09-30
    • JP2002080575
    • 2002-03-22
    • Toppan Printing Co Ltd凸版印刷株式会社
    • KAMITSUMA HIROAKIHORIE KIYOSHIMURAMOTO HIROSHI
    • B42D15/10B41M3/06B42D15/00
    • PROBLEM TO BE SOLVED: To propose a fluorescent printing overprint card and a manufacturing method thereof which shorten a process of manufacturing the card and improve the quality thereof, in regard to the manufacture of the fluorescent printing overprint card having an oversheet, a magnetic tape, a fluorescent printing layer, a protective layer and others provided on a core. SOLUTION: In the manufacture of the fluorescent printing overprint card having the oversheet, the magnetic tape, the overprint layer, the fluorescent printing layer, an adhesive layer, an intermediate layer and the protective layer stacked in this sequence on the core, the oversheet and the magnetic tape are stacked on the core and the overprint layer is provided thereon. Then, a fluorescent transfer leaf formed by stacking the fluorescent printing layer, the adhesive layer, the intermediate layer and the protective layer is stuck on a film by hot pressing and the transfer film is peeled off, so as to manufacture the fluorescent printing overprint card. COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提出一种荧光印刷套印卡及其制造方法,其缩短制造卡片的过程并提高其质量,关于具有过度片材的荧光印刷套印卡的制造, 磁带,荧光印刷层,保护层等。 解决方案:在制造具有过滤片,磁带,叠印层,荧光印刷层,粘合剂层,中间层和以该顺序堆叠在芯上的保护层的荧光印刷套印卡之后, 过滤纸和磁带堆叠在芯上,并且在其上设置套印层。 然后,将通过层叠荧光印刷层,粘合剂层,中间层和保护层形成的荧光转印叶片通过热压粘贴在膜上,并将转印膜剥离,以制造荧光印刷套印卡 。 版权所有(C)2003,JPO
    • 87. 发明专利
    • BELT TYPE CONTINUOUS CASTING APPARATUS
    • JPH02217141A
    • 1990-08-29
    • JP346090
    • 1990-01-12
    • MITSUBISHI HEAVY IND LTD
    • MURAMOTO HIROSHI
    • B22D11/06
    • PURPOSE:To obtain a long effective cooling zone in an injection type belt cooling device by setting plural pieces of injecting nozzles at upper and lower two steps in width direction of the belt, providing the upper and lower injecting nozzles causing cooling water to flow from upper part to lower part and arranging the closed type belt cooler at the lower part of the lower injecting nozzles. CONSTITUTION:The cooling water injected from the upper injecting nozzle 1 cools near the molten metal meniscus in the mold belt 5 and flows down. Stream with the lower injecting nozzle 2 rushes to the place, where the above stream flows down, and flows down. Successively, the stream with the upper injecting nozzle 1 and the stream with the lower injecting nozzle 2 are mixed at near the closed type belt cooler 3 and separated from the mold belt and discharged. The mold belt of the part of the closed type belt cooler is brought into contact with cooling water flowing in from a cooling water inlet 3a and ascending in the cooling water passage and cooled. This cooling water is discharged from a cooling water outlet 3b. By this method, as the cooling water injecting nozzles are constituted at upper and lower two steps, the long effective cooling zone in the injection type belt cooling device can be obtd., and velocity variation and water pressure variation in the width direction can be made to little.
    • 90. 发明专利
    • SURFACING DEVICE FOR SUBMERGED BODY
    • JPS61229692A
    • 1986-10-13
    • JP7177085
    • 1985-04-04
    • MITSUBISHI HEAVY IND LTD
    • MURAMOTO HIROSHIKATSUTA MOTOHEINISHI AKIOCHIBA NORITANE
    • B63B22/12B63C7/10B63G8/24F42B19/38
    • PURPOSE:To lower a temperature condition in a surfacing device for submerged body use as well as to improve a degree of heat resisting capacity, by vaporizing a liquid in a tubular part with high temperature gas to be produced with powder exploded, while feeding this to a float, inflating this float large, and making the submerged body rise to the surface. CONSTITUTION:Powder 1 is exploded by a gas generating device GM in the tubular part 2b closed by both end plates 4 and an outer tube 2a. A liquid 1a in this tubular part 2b is made into heat exchange with the powder combustion gas whereby it comes to vapor. This combustion gas, whose temperature drops due to the heat exchange, and the mixed gas of vapor remove a plug 2d, passing through an interconnecting hole 2c, and flows into a float 3 being airtightly attached to an outer circumference 2a with a setting ring 3a. This float 3 becomes inflated as shedding casings 5a-5d till it secures the specified buoyancy, making a submerged body rise to the surface. At this time, temperature in the mixed gas flowing into the float 3 drops to the extent of less than heat resisting temperature of a float material so that there is no heating damage to the float 3, thus heat resistance is improved.