序号 | 专利名 | 申请号 | 申请日 | 公开(公告)号 | 公开(公告)日 | 发明人 |
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221 | Rubber product with fiber reinforced layer, and manufacturing method of the same | JP2005096060 | 2005-03-29 | JP2006272784A | 2006-10-12 | KURIMOTO HIDEKAZU; HAYASHI SHUSUKE; MORI TAKAYUKI; FUNAKI TAKESHI; IMOKAWA MASAO |
<P>PROBLEM TO BE SOLVED: To bond a rubber layer and a fiber reinforced layer using an adhesive free from formalin with a bonding strength equivalent to or higher than the strength of an RFL including formalin. <P>SOLUTION: A rubber inner tube 1, a rubber intermediate layer 2, and a rubber outer skin 3 is formed of an EPDN for example. A first fiber reinforced layer 10 and the second fiber reinforced layer 20 are constituted by braiding or spirally knitting fiber cords 11, 21 constituted by providing polarity to twisted yarns of a polyester fiber without polarity as materials by treating by an epoxy resin on the outer peripheries of the rubber inner tube 1 and the rubber intermediate layer 2 respectively. The portion between the rubber intermediate layer 2 and the second fiber reinforced layer 20 and the portion between the second fiber reinforced layer 20 and the rubber outer skin 3 are bonded using an adhesive comprising triazinethiol and a diene based rubber. <P>COPYRIGHT: (C)2007,JPO&INPIT | ||||||
222 | Manufacturing process of polyurethane foam sheet and layered sheet using the same | JP2003420728 | 2003-12-18 | JP2004216880A | 2004-08-05 | TADOKORO SHIGERU; KANEKAWA YOSHINORI; NIWA TOSHIO; TAMAKI YOSHIFUMI |
<P>PROBLEM TO BE SOLVED: To provide a manufacturing process of a polyurethane foam sheet and a layered sheet using the same, wherein the polyurethane foam sheet is applicable as an artificial leather, synthetic leather, cushion material and the like which are usable in various applications. <P>SOLUTION: A liquid mixture, which is obtained by blending a heat melted hot-melt polyurethane prepolymer (A) having an isocyanate group on its terminal with a compound (B) having at least two active hydrogen atom containing radicals, is applied on a substrate in sheet form; and the resulting sheet-like liquid mixture is brought into contact with steam or moisture (water) to blister by water so that the polyurethane foam sheet is manufactured. The layered sheet is manufactured by pasting a third substrate to the polyurethane foam sheet. <P>COPYRIGHT: (C)2004,JPO&NCIPI | ||||||
223 | Transfer zone | JP2000610906 | 2000-04-05 | JP2002541357A | 2002-12-03 | ヒポリート グストライン、 |
(57)【要約】 本発明は、ペーパーウェブを乾燥させるための延長プレスギャップを備えた、湿式プレスの転送帯(ベルト)(10)に関する。 この転送ベルトは、特に織られた又は機械加工された支持ベルト(11)と、フェルト構造のように支持ベルト上に縫い付けられていると共に、溶融可能な繊維を含んでいる、本質的な重合繊維構造体(12)とを含む。 この重合繊維構造体のうちの少なくとも一部は、加工熱処理によって、かなり非透水性の高い重合層(14)に変換される。 この転送ベルトは、さらに、重合層上に設けられた繊維状の表面層も含む。 | ||||||
224 | Paper machine cloth of woven laminated together | JP53570298 | 1997-08-22 | JP2000509117A | 2000-07-18 | ファルジュ・パトリック |
(57)【要約】 積層一体織の機械上で継ぎ合せ可能な抄紙機布(10)は共通の機械方向(MD)糸(20、20′)を共有している二つの単層織布層を含む。 変形エンドレス機織技術を通して織機上では横糸である、共通MD糸はそれらの端部で各層を一緒に連結する継ぎ合せループ(18)を形成する。 溶媒で除去可能な綴込み糸(22)は一体織である二つの層を相互連結する。 機織の後、綴込み糸は溶媒との溶解により除去され積層構造を産出する。 ステープルファイバー材の打綿(36)は積層構造の中及び通り抜けて縫合される。 抄紙機布は形成布、プレス布又は乾燥機布として、又は長尺ニッププレス、シート転送又はつや出し機ベルトのような、ポリマーをコートした製紙工程用ベルトの基礎として使用できる。 | ||||||
225 | Press jacket and its production | JP7931495 | 1995-03-13 | JPH07305291A | 1995-11-21 | UUDO GUROSUMAN; UUBE MATSUSHIETSUKU; HARARUDO AUFUREHITO |
PURPOSE: To provide a press jacket having a long life and a slight wear. CONSTITUTION: This press jacket 10 for dehydrating a material belt in a press device for dehydrating a paper web especially in a press gap of a paper making machine, is provided by installing a band 11 and also an inside layer 20 which is made from an elastomer matrix material in the reverse side to the material belt. In the matrix material, reinforcing threads 16, 18 are imbedded, and also an outside layer 22 having a strong wear resistance at the belt side is provided on the inside layer. In producing it, since the elastomer matrix material is formed by molding on a molded part, at the same time the reinforcing threads are involved and the second layer 22 is formed by molding before the curing of the first layer 20, an especially good adhesion between both layers is obtained. COPYRIGHT: (C)1995,JPO | ||||||
226 | JPS6158588B2 - | JP13312480 | 1980-09-26 | JPS6158588B2 | 1986-12-12 | DEIITERU RIIDERU |
227 | JPS5928237B2 - | JP8959075 | 1975-07-22 | JPS5928237B2 | 1984-07-11 | GUREN EDOWAADO ROOROFUSU |
A splice of abutted ends of sheet material and method of making the same employs a splicing tape formed of an adhesively coated support film which comprises a biaxially oriented, heat-set, coextruded laminate formed from a layer of a crystalline polyester material and a layer of less crystalline polyester material, with the thermosetting adhesive coating the surface of the latter layer. The splicing tape is applied with sufficient heat and pressure to cause intimate contact of the thermosetting adhesive with the abutted ends being spliced. | ||||||
228 | Laminated belt with strong tooth | JP7562081 | 1981-05-19 | JPS5718835A | 1982-01-30 | GAI ERU RENSHIYOO |
229 | Production of endless press belt of pressure and steam blowing apparatus of fabric or knitted fabric | JP13312480 | 1980-09-26 | JPS5653272A | 1981-05-12 | DEIITERU RIIDERU |
230 | A COMPOSITE MATERIAL METHOD OF PRODUCING THE SAME, AND ARTICLES MADE THEREFROM | EP13728619.1 | 2013-05-30 | EP2867291B1 | 2018-09-26 | STUCCHI, Gloria; KRONAWITTLEITHNER, Kurt; PRIETO, Miguel |
A composite material, comprising: (A) a particle comprising: (i) a core comprising one or more magnetic materials and (ii) a shell comprising silicon dioxide and (B) a polymer component selected from the group consisting of polyolefin homopolymers, polyolefin interpolymers, and combinations thereof, wherein the polymer component is free of free radical initiator is provided. | ||||||
231 | VERFAHREN ZUR HERSTELLUNG EINES KEILRIPPENRIEMENS | EP16709332.7 | 2016-03-08 | EP3328625A1 | 2018-06-06 | GREYDANUS, Ymte; LINDEMANN, Peter; FISS, Tim |
The invention relates to a method for producing a V-belt, wherein the V-belt is cut in the form of a ring from a tube-shaped V-blank on a cutting device, wherein, in order to produce the V-blank, a first partial blank in the form of a base tube is produced and is inserted into a cylindrical vulcanization mold provided with the negative of a V-profile on the inside of the vulcanization mold and is nearly completely molded into the surrounding negative by stretching and heating and is thus nearly completely provided with the V-profile without vulcanization of the base tube occurring, wherein a second partial blank in the form of a cover layer tube having a tension strand is built/produced on a belt-building drum and then is inserted into the nearly completely molded base tube and is expanded by heating and pressure to such an extent that the cover layer tube and the base tube are connected to each other, whereupon the latter is completely molded into the surrounding negative of the vulcanization mold and the cover layer tube and the base tube are completely vulcanized in order to form a V-blank, whereupon the V-blank is removed from the vulcanization mold and is fed to the cutting device. | ||||||
232 | ULTRA-RESILIENT FABRIC | EP15189023.3 | 2012-01-20 | EP2993263B1 | 2017-07-19 | HANSEN, Robert A.; RYDIN, Bjorn |
233 | INDUSTRIAL FABRIC FOR PRODUCTION OF NONWOVENS, AND METHOD OF MAKING THEREOF | EP10701441.7 | 2010-01-27 | EP2391754B1 | 2016-04-13 | MOURAD, Sabri; KARLSSON, Jonas |
An industrial fabric such as an endless belt or sleeve for use in the production of nonwovens, and a method of making thereof are disclosed. The fabric includes a plurality of through voids, where each of the voids has a first opening associated with a top surface of the fabric and a first raised edge circumferentially adjacent to the first opening. The voids may each further include a second opening associated with a bottom surface of the fabric and a second raised edge circumferentially adjacent to the second opening, such that the first opening may have a surface area that is larger than or the same as the second opening. | ||||||
234 | ULTRA-RESILIENT FABRIC | EP15189023.3 | 2012-01-20 | EP2993263A1 | 2016-03-09 | HANSEN, Robert A.; RYDIN, Bjorn |
A structure for use in industrial fabrics such as paper machine clothing and engineered fabrics is disclosed. The structure includes one or more layers of an elastic nonwoven extruded film or sheet (16), which is elastic, resilient, and compressible in a thickness direction, and extensible, bendable, and resilient in its length and transverse directions, and one or more layers (12, 20) of a plurality of substantially parallel machine direction (MD) yarns (14, 22) in various patterns. The structure has a high degree of both compressibility under an applied normal load and excellent recovery (resiliency or spring back) upon removal of that load. |
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235 | POWER TRANSMISSION BELT | EP12788938.4 | 2012-05-18 | EP2711587B1 | 2016-02-10 | NISHIYAMA Takeshi; TAKABA Susumu |
236 | RIEMEN FÜR DIE ANTRIEBSTECHNIK, INSBESONDERE RIEMENARTIGES ZUGELEMENT FÜR DIE AUFZUGSTECHNIK, MIT BRANDHEMMENDEN EIGENSCHAFTEN | EP13756149.4 | 2013-09-02 | EP2917606A1 | 2015-09-16 | GÖSER, Hubert; BROCKE, Stephan |
The invention relates to a belt (1) for drive technology, consisting at least of: a belt body made from two polymer materials A and B with elastic properties, comprising a top layer (2) as the belt back and a substructure (4) with a force transfer zone (7) and a tension member (3) embedded in the belt body. The belt (1) according to the invention is characterized in that the first material A contains 15 to 50 % w/w of at least one fire-resistant additive and is used everywhere in the belt body where high mechanical properties are not required and the second material B contains 5 to 35 % w/w of at least one fire-resistant additive and is used in the area of the belt body that is subjected to the highest mechanical stresses. The belt (1) is particularly used as a tractive element for hoisting technology. | ||||||
237 | A COMPOSITE MATERIAL METHOD OF PRODUCING THE SAME, AND ARTICLES MADE THEREFROM | EP13728619.1 | 2013-05-30 | EP2867291A2 | 2015-05-06 | STUCCHI, Gloria; KRONAWITTLEITHNER, Kurt; PRIETO, Miguel |
A composite material, comprising: (A) a particle comprising: (i) a core comprising one or more magnetic materials and (ii) a shell comprising silicon dioxide and (B) a polymer component selected from the group consisting of polyolefin homopolymers, polyolefin interpolymers, and combinations thereof, wherein the polymer component is free of free radical initiator is provided. | ||||||
238 | POLYURETHANE LAMINATES MADE WITH A DOUBLE BELT PRESS | EP12846768 | 2012-11-02 | EP2773503A4 | 2015-04-29 | PADMANABHAN GOPALKRISHNA |
239 | Protective Device | EP14167384.8 | 2014-05-07 | EP2803477A1 | 2014-11-19 | Benedetti, Michele; Calzolari, Diego |
A protective device, characterized in that it comprises a protective element (1) extending mainly in one plane and comprising: |
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240 | POLYURETHANE LAMINATES MADE WITH A DOUBLE BELT PRESS | EP12846768.5 | 2012-11-02 | EP2773503A1 | 2014-09-10 | PADMANABHAN, Gopalkrishna |
A fiber reinforced composite laminate with fibers generally oriented along two major axes and having a polyurethane resin matrix suitable for reinforcing wood based substrates such as trailer/container flooring, glulams, plywood, particle boards, laminated veneer lumber, and oriented strand board, is provided. The laminate is produced by pulling the fibers through a resin injection box, where a polyurethane resin is injected into the box to wet the fibers. The polyurethane resin wetted fiber layer is then covered with a release media on the top and bottom sides of the layer. The sandwich of fiber, resin and release media is fed to a double belt press capable of applying pressure and heat to consolidate and cure the laminate. The laminate thus made can be thinner than 0.080 inch and provides excellent flatness compared to pultruded thin laminates. |