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    • 1. 发明专利
    • Method for manufacturing module-functional roll
    • 制造模块功能滚筒的方法
    • JP2013053663A
    • 2013-03-21
    • JP2011192052
    • 2011-09-02
    • Masuda Seisakusho:Kk株式会社増田製作所Masroll Systems Incマスロールシステムズ 株式会社
    • MASUDA MASANOBUMASUDA KENSHO
    • F16C13/00
    • PROBLEM TO BE SOLVED: To solve the following problems: a conventional functional roll has moisture and liquid absorption function to be utilized in processing a high-quality product, such as functional precision parts for manufacturing vehicles, steel, films, electronic materials and precision apparatus, which are exported abroad; while there is difficulty in transporting a long and large functional roll, which increases costs, especially for exports.SOLUTION: The method for manufacturing a module-functional roll formed of an unwoven porous fabric sheet having filmy crosslinking elastic bodies on a superimposed face. A predetermined number of sheets are laminated on a mounting shaft of a press. A pair of clamping jigs and a press press/temporarily clamp them to manufacture one block of a functional-roll material. After a plurality of the blocks are manufactured, a hot-water tank is used for boiling, press-bonding and welding to form a plurality of module-functional roll materials. The module-functional roll materials are dismounted and laminated to form the module-functional roll.
    • 要解决的问题:为了解决以下问题:常规功能辊具有用于加工高品质产品的湿气和液体吸收功能,例如制造车辆,钢,薄膜,电子材料的功能精密零件 精密仪器出口国外; 而运输长,大功能卷的难度大大增加,特别是出口成本。 解决方案:用于制造由在叠加面上具有膜交联弹性体的无纺多孔织物片形成的模块功能辊的方法。 预定数量的片层压在压机的安装轴上。 一对夹紧夹具和一个压机/暂时夹紧它们以制造一块功能辊材料。 在制造多个块之后,使用热水罐进行沸腾,压接和焊接,以形成多个模块功能辊材料。 模块功能辊材料被拆卸并层压以形成模块功能辊。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Functional roller
    • 功能滚筒
    • JP2012127375A
    • 2012-07-05
    • JP2010277342
    • 2010-12-13
    • Masroll Systems IncMasuda Seisakusho:Kkマスロールシステムズ 株式会社株式会社増田製作所
    • MASUDA MASANOBUMASUDA KENSHO
    • F16C13/00B08B1/04
    • B65H27/00B65H2401/242B65H2404/1341
    • PROBLEM TO BE SOLVED: To provide a functional roller capable of solving such the problem that since the conventional roller includes a shaft body having a hollow part and micropores and a roller body having liquid absorbing function (internal pressure acting characteristic) and has a structure to include a liquid reservoir sub chamber part of the shaft body or a groove part in order to secure the liquid absorbing function of the roller body, reduce a pressure loss and make dispersion of internal pressure uniform by distributing and allotting the internal pressure of the shaft body in the roll body, the conventional technique stays at the improvement of the structure of the shaft body and roller body and the most important and effective improvement of sheet material is not attained and the improvement of the structure of the shaft body remains unsatisfactory in terms of the strength.SOLUTION: The functional roller includes the roller body constituted of porous sheet material such as elastic nonwoven fabric sheet material fitted to a roller shaft with micropores in a stacked manner, the roller body having the notch part of the roller body and an internal pressure acting channel with a lattice structure made of a low-density sheet material which is disposed in the circumferential direction of the roller body, wherein the untied area of the sheet material is formed on the surface layer part of the roller body and the fiber bundle area of the sheet material is formed on the inner surface layer part of the roller body.
    • 要解决的问题:为了提供一种功能性辊,能够解决这样的问题:由于传统的辊包括具有中空部分的轴体和微孔,以及具有液体吸收功能(内压作用特性)的辊体,并且具有 为了确保辊体的液体吸收功能,包括轴体的液体储存室部分或槽部的结构,通过分配和分配内部压力来减小压力损失并使内部压力的分散均匀, 在辊体中的轴体,传统技术保持在轴体和辊体的结构的改进上,并且不能实现片材的最重要和有效的改进,并且轴体的结构的改善仍然不能令人满意 在力量方面。 解决方案:功能性辊包括由诸如弹性无纺布片材的多孔片材构成的辊体,该弹性无纺布片材以堆叠的方式装配到具有微孔的辊轴上,辊体具有辊体的缺口部分和内部 压力作用通道,其具有由位于所述辊体的圆周方向上的低密度片材制成的格子结构,其中所述片材的未开封区域形成在所述辊体的表层部分上,并且所述纤维束 片材的面积形成在辊体的内表面层部分上。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Functional roll with gas-liquid channel structure
    • 功能辊与气液通道结构
    • JP2014015955A
    • 2014-01-30
    • JP2012152057
    • 2012-07-06
    • Masuda Seisakusho:Kk株式会社増田製作所Masroll Systems Incマスロールシステムズ 株式会社
    • MASUDA MASANOBUMASUDA KENSHO
    • F16C13/00
    • PROBLEM TO BE SOLVED: To provide a functional roll with a structure to continuously maintain, by a roll body, functions of absorbing and removing a solution or the like of a processed product and of supplying and providing a fluid to the processed product.SOLUTION: A high density sheet material block 2 is formed by laminating a plurality of doughnut-shaped elastic nonwoven fabric sheet materials. A doughnut-shaped crude-density elastic nonwoven fabric sheet material 3 having a roll hole 301 is interposed between the high density sheet material blocks 2. A roll body is constituted by laminating the plurality of high density sheet material blocks on a tubular roll shaft 1 having a number of pores 102. The roll body has a plurality of gas-liquid passages 201, 302B in an inner circumferential face contacting with the roll shaft 1. The high density sheet material block 2 laminated in an axial direction has rigidity which is the highest in the center portion in the axial direction and becomes lower toward an end portion in the axial direction.
    • 要解决的问题:提供一种具有结构的功能辊,其通过辊体连续地保持加工产品的溶液等的吸收和去除以及向加工产品供应和提供流体的功能。解决方案: 通过层叠多个环状弹性无纺布片材形成高密度片材块2。 具有辊孔301的环形粗密度弹性无纺织物片材3插入在高密度片材块2之间。辊体通过在管状辊轴1上层压多个高密度片材块而构成 具有多个孔102.辊体在与辊轴1接触的内周面上具有多个气液通道201,302B。沿轴向层叠的高密度片材块2具有刚性, 在轴向上的中心部分最高,并且朝向轴向方向的端部变低。
    • 4. 发明专利
    • Functional roll having lattice-shaped gas-liquid guidepath structure
    • 具有形状气体导向结构的功能辊
    • JP2011058621A
    • 2011-03-24
    • JP2009293388
    • 2009-12-24
    • Masroll Systems IncMasuda Seisakusho:Kkマスロールシステムズ 株式会社株式会社増田製作所
    • MASUDA MASANOBUMASUDA KENSHO
    • F16C13/00
    • F26B13/26B05C11/1039F26B5/16F26B13/30
    • PROBLEM TO BE SOLVED: To solve the problem of leaving the trouble in terms of an efficiency increase in the liquid absorbing function and strength of a roll axis, though being constituted for maximizing the operation surface area to internal pressure of a roll axis side inner surface of a roll body, by forming a roll axis structure in a fin shape or a groove shape, instead of a tubular roll axis, due to being a structure for reducing a pressure loss and uniformizing distribution, by attaining the liquid absorbing function of the roll body, by dispersing-distributing the internal pressure of the roll axis in the roll body, by being conventionally constituted of the roll axis of a pore structure and the roll body arranged on an outer peripheral surface of the roll axis.
      SOLUTION: This functional roll includes a lattice-shaped gas-liquid guidepath structure for operating the internal pressure of the roll axis constituted of a high density porous sheet raw material on a peripheral surface of the roll axis having a pore. The lattice-shaped gas-liquid guidepath structure is constituted of an internal pressure action chamber formed of the peripheral surface of the roll axis and a cutout part arranged in the axial direction of the roll body, and an internal pressure branch action passage communicating with the internal pressure action chamber, arranged in the radial direction of the roll body and formed of a low density porous sheet raw material or a space.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 解决问题:为了解决液体吸收功能的效率提高和辊轴的强度方面的问题,虽然构成为使操作面积与辊轴的内压最大化 通过形成具有翅片形状或沟槽形状的辊轴结构而不是管状辊轴,由于通过获得液体吸收功能而具有用于降低压力损失和均匀分布的结构,因此辊体内侧表面 通过通常由孔结构的辊轴和布置在辊轴的外周面上的辊体构成,通过将辊轴的内压分散在辊体中来分散辊体。 解决方案:该功能辊包括用于在具有孔的辊轴的圆周表面上操作由高密度多孔片原料构成的辊轴的内部压力的格状气液导向路径结构。 格子形状的气液导向结构体由由辊轴的周面形成的内压作用室和沿辊体的轴向排列的切口部以及与该辊体的轴向连通的内压分支动作通路 内压作用室,其设置在辊体的径向方向上,由低密度多孔片原料或空间形成。 版权所有(C)2011,JPO&INPIT
    • 5. 发明专利
    • FUNCTIONAL ROLL INCORPORATING A STRUCTURE OF A LATTICE-SHAPED FLUID (GAS-LIQUID) GUIDEPATH
    • CA2710688C
    • 2016-11-01
    • CA2710688
    • 2010-07-21
    • MASUDA SEISAKUSHO CO LTDMASROLL SYSTEMS INC
    • MASUDA MASANOBUMASUDA NORIAKI
    • B05C1/10B05C11/10B05C17/02
    • Conventional art has a structure consisting of a roll axis incorporating a structure of fine pores, and a roll unit provided around the outer circumference of a roll axis, wherein internal pressure of the roll axis is dispersed to the roll unit to make a fluid (gas-liquid) suction action, thus reducing the pressure loss and obtaining even distribution of the fluid (gas-liquid). As such, instead of a tubular roll axis, the structure of a roll axis is made fin-shaped or groove-shaped to maximize the action surface area that works on the inner pressure of the roll axis of the roll unit. However, other problems such as inefficiency of the fluid (gas-liquid) suction action and lack of mechanical strength of the roll axis remains. To solve these problems, this invention provides a functional roll incorporating a structure of a lattice-shaped fluid (gas-liquid) guidepath made of high-density porous sheet material to activate the internal pressure of the roll axis, therein the structure of the lattice- shaped fluid (gas-liquid) guidepath, consisting of an internal pressure action space made of a cut-out portion provided on the circumference of the roll axis, and in the axis direction of the roll unit, and an internal pressure branching guidepath made of low-density porous sheet material, or a space communicating with the internal pressure action space, as well, being provided in the radial direction of the roll unit.
    • 6. 发明专利
    • Método de producción de un rodillo funcional
    • ES2583843T3
    • 2016-09-22
    • ES13001060
    • 2013-03-01
    • MASUDA SEISAKUSHO CO LTDMASROLL SYSTEMS INC
    • MASUDA MASANOBUMASUDA NORIAKI
    • F26B5/16B05C1/08F26B13/26
    • Un método de producción de un rodillo funcional (3) que comprende un árbol de rotación (300) y un cuerpo de rodillo (303) que comprende láminas de tela no tejida (7) provistas en el árbol de rotación (300), que incluye las siguientes etapas: apilar múltiples láminas de tela no tejida (7) conformadas con una forma circular, con una abertura en el centro, mientras se inserta un árbol de montaje (2) en la abertura; sujetar un primer grupo de láminas de tela no tejida que comprende las múltiples láminas de tela no tejida (7) apiladas con un conjunto de una primera plantilla (16) y una segunda plantilla (17) y, comprimir el primer grupo de láminas de tela no tejida en una dirección paralela al árbol de montaje (2) mediante las plantillas (16, 17); sujetar el conjunto de plantillas (16, 17) entre sí para unir las láminas de tela no tejida (7) formando el primer grupo de láminas de tela no tejida; apilar múltiples láminas de tela no tejida (7) distintas a las láminas de tela no tejida (7) que forman el primer grupo de láminas de tela no tejida mientras se introduce el árbol de montaje (2) que discurre a través del primer grupo de láminas de tela no tejida unidas con la primera y segunda plantilla (16, 17); sujetar un segundo grupo de láminas de tela no tejida que comprende las múltiples láminas de tela no tejida (7) recién apiladas con un conjunto de la segunda plantilla (17) y una tercera plantilla y comprimir el segundo grupo de láminas de tela no tejida en una dirección paralela al árbol de montaje (2) mediante las plantillas (16,17); calentar el primer grupo de láminas unidas de tela no tejida y el segundo grupo de láminas unidas de tela no tejida de manera que las láminas de tela no tejida (7) que forman el primer grupo de láminas de tela no tejida se adhieran entre sí y las láminas de tela no tejida que forman el segundo grupo de láminas de tela no tejida se adhieran entre sí; y retirar el árbol de montaje (2) y las plantillas (16, 17) de las láminas de tela no tejida (7) adhiriéndose entre sí para crear múltiples módulos (X) que comprenden las láminas de tela no tejida (7) adhiriéndose entre sí.
    • 7. 发明专利
    • FUNCTIONAL ROLL INCORPORATING A STRUCTURE OF A LATTICE-SHAPED FLUID (GAS- LIQUID) GUIDEPATH
    • SG169271A1
    • 2011-03-30
    • SG2010052405
    • 2010-07-16
    • MASUDA SEISAKUSHO CO LTDMASROLL SYSTEMS INC
    • MASUDA MASANOBUMASUDA NORIAKI
    • FUNCTIONAL ROLL INCORPORATING A STRUCTURE OF A LATTICE-SHAPED FLUID (GAS- LIQUID) GUIDEPATH Conventional art has a structure consisting of a roll axis incorporating a structure of fine pores, and a roll unit provided around the outer circumference of a roll axis, wherein internal pressure of the roll axis is dispersed to the roll unit to make a fluid (gas-liquid) suction action, thus reducing the pressure loss and obtaining even distribution of the fluid (gas- liquid). As such, instead of a tubular roll axis, the structure of a roll axis is made fin-shaped or groove- shaped to maximize the action surface area that works on the inner pressure of the roll axis of the roll unit. However, other problems such as inefficiency of the fluid (gas-liquid) suction action and lack of mechanical strength of the roll axis remains. To solve these problems, this invention provides a functional roll incorporating a structure of a lattice-shaped fluid (gas-liquid) guidepath made of high-density porous sheet material to activate the internal pressure of the roll axis, therein the structure of the lattice-shaped fluid (gas-liquid) guidepath, consisting of an internal pressure action space made of a cut-out portion provided on the circumference of the roll axis, and in the axis direction of the roll unit, and an internal pressure branching guidepath made of low-density porous sheet material, or a space communicating with the internal pressure action space, as well, being provided in the radial direction of the roll unit.
    • 8. 发明专利
    • Rodillo laminado poroso para la absorción de líquido que incorpora una estructura de trayectoria de guía de fluido en forma de celosía
    • ES2570977T3
    • 2016-05-23
    • ES10007370
    • 2010-07-16
    • MASUDA SEISAKUSHO CO LTDMASROLL SYSTEMS INC
    • MASUDA MASANOBUMASUDA NORIAKI
    • B05C1/08B05C11/10B21B45/02F26B5/16F26B13/26F26B13/30
    • Rodillo funcional que comprende un eje de rodillo tubular (4) que incorpora múltiples poros finos (5) y una unidad de rodillo (3) que tiene un orificio de rodillo (301) acoplado con el eje de rodillo (4), hecho de un material de lámina poroso de alta densidad (300), de un material de lámina no tejido elástico o de un material de lámina compuesto funcional obtenido mediante la provisión de un material elástico de reticulación sobre el material no tejido, en el que dicha unidad de rodillo (3) comprende además una estructura de trayectoria de guía de fluido en forma de celosía (8) formada por un espacio de acción de presión interna (1) que comprende una parte en corte interior (2) que se hace cortando una superficie interna (3b) de la unidad de rodillo (3) y una circunferencia (400) del eje de rodillo tubular (4) y que está prevista en la dirección axial de la unidad de rodillo (3) además de una trayectoria de guía de bifurcación de presión interna (6) prevista en la dirección radial de la unidad de rodillo (3) y conectada al espacio de acción de presión interna (1), estando dicha trayectoria de guía de bifurcación de presión interna (6) hecha de un material de lámina poroso (7), de un material de lámina no tejido elástico o de un material de lámina compuesto funcional y un orifico de rodillo (700), en el que el material de lámina poroso (7) tiene una densidad menor que el material de lámina poroso de alta densidad (300), y en el que se aplica una presión interna en la unidad de rodillo anteriormente mencionada (3) a través de la estructura de trayectoria de guía de fluido en forma de celosía (8), caracterizado por que el material de lámina poroso de baja densidad (7) tiene una parte extendida (702) que sobresale de la parte en corte (2) del espacio de acción de presión interna (1).
    • 9. 发明专利
    • FUNCTIONAL ROLL INCORPORATING A STRUCTURE OF A LATTICE-SHAPED FLUID (GAS-LIQUID) GUIDEPATH
    • CA2710688A1
    • 2011-02-12
    • CA2710688
    • 2010-07-21
    • MASUDA SEISAKUSHO CO LTDMASROLL SYSTEMS INC
    • MASUDA MASANOBUMASUDA NORIAKI
    • B05C1/10B05C11/10B05C17/02
    • Conventional art has a structure consisting of a roll axis incorporating a structure of fine pores, and a roll unit provided around the outer circumference of a roll axis, wherein internal pressure of the roll axis is dispersed to the roll unit to make a fluid (gas-liquid) suction action, thus reducing the pressure loss and obtaining even distribution of the fluid (gas-liquid). As such, instead of a tubular roll axis, the structure of a roll axis is made fin-shaped or groove-shaped to maximize the action surface area that works on the inner pressure of the roll axis of the roll unit. However, other problems such as inefficiency of the fluid (gas-liquid) suction action and lack of mechanical strength of the roll axis remains. To solve these problems, this invention provides a functional roll incorporating a structure of a lattice-shaped fluid (gas-liquid) guidepath made of high-density porous sheet material to activate the internal pressure of the roll axis, therein the structure of the lattice-shaped fluid (gas-liquid) guidepath, consisting of an internal pressure action space made of a cut-out portion provided on the circumference of the roll axis, and in the axis direction of the roll unit, and an internal pressure branching guidepath made of low-density porous sheet material, or a space communicating with the internal pressure action space, as well, being provided in the radial direction of the roll unit.