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    • 1. 发明专利
    • Sliding surface material and multilayer sliding member including the sliding surface material
    • 滑动表面材料和多层滑动构件,包括滑动表面材料
    • JP2011075057A
    • 2011-04-14
    • JP2009228606
    • 2009-09-30
    • Oiles Corpオイレス工業株式会社
    • OGOSHI HIROYUKINISHIMURA MASAYAOKUBO KENTARO
    • F16C33/20C08J5/04F16C33/14F16C33/28
    • F16C33/201C08J5/048C08J2361/12F16C17/02F16C33/203F16C33/208F16C2208/02F16C2240/60Y10T442/2926
    • PROBLEM TO BE SOLVED: To provide a sliding surface material which retains low expansiveness during the use thereof in wet environments such as in water, and excellent friction and abrasion characteristics under the same conditions, and which improves friction and abrasion characteristics under dry friction conditions in the atmosphere; and a multilayer sliding member having the sliding surface material on a sliding surface.
      SOLUTION: The sliding surface material (12) is obtained by impregnating resol-type phenol resin with a tetrafluoroethylene resin dispersedly contained therein, into a reinforcing substrate comprised of a woven fabric formed by using a two-fold yarn as the warp and weft. The two-fold yarn is formed by aligning at least two of a single-twist yarn of a fluororesin fiber and a single-twist yarn of a polyphenylene sulfide fiber, and by applying the reverse twist to the single twist direction of the single-twist yarn. The whole shape of the multilayer sliding member is a flat plate shape or a cylindrical shape. The multilayer sliding member has the sliding surface material at least on the sliding surface.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种滑动表面材料,其在使用期间在诸如水中的湿润环境中保持低膨胀性,并且在相同条件下具有优异的摩擦和磨损特性,并且改善了干燥时的摩擦和磨损特性 大气中的摩擦条件; 以及在滑动面上具有滑动面材料的多层滑动构件。 解决方案:滑动表面材料(12)通过将分解包含在其中的四氟乙烯树脂浸渍在甲阶酚醛树脂型酚醛树脂中而获得到由通过使用双重纱线作为经纱形成的机织织物的增强基材中, 纬线。 双折丝通过将氟树脂纤维的单捻纱和聚苯硫醚纤维的单捻纱中的至少两个对齐,并且通过对单捻的单捻方向施加逆捻而形成 纱。 多层滑动构件的整体形状为平板状或圆筒状。 多层滑动构件至少在滑动面上具有滑动面材料。 版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • Method of manufacturing multi-layered sliding member
    • 制造多层滑动构件的方法
    • JP2009103194A
    • 2009-05-14
    • JP2007274675
    • 2007-10-23
    • Oiles Ind Co Ltdオイレス工業株式会社
    • OGOSHI HIROYUKIONDA AKIRA
    • F16C33/14D06M15/256D06M15/41D06M15/55D06M15/555F16C33/20F16C33/28
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing a multi-layered sliding member exhibiting excellent friction/abrasion characteristics at high loading usage and at usage under a dry friction condition. SOLUTION: In the method of manufacturing, (a) a woven fabric including a spun yarn of synthetic fiber is impregnated/coated with thermosetting synthetic resin varnish containing an ethylene fluoride resin powder, (b) it is dried, (c) it is cut and a plurality of them are superposed, (d) it is heated and pressurization-molded in a superposed direction, (e) it is subjected to bending processing under heating, (f) an adhesion layer is formed on a cylinder outer surface and a cylinder inner surface of a cylindrical back plate, (g) the two adhesion layers are brought into contact with each other, (h) a pipe made of metal having a large thermal expansion coefficient is press-fitted to an inner surface, (i) it is dried in a drying furnace at a temperature of 150-200°C for 20-40 minutes, and (j) it is cooled. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种制造在高负载使用和在干摩擦条件下使用时具有优异的摩擦/磨损特性的多层滑动构件的方法。 解决方案:在制造方法中,(a)将包含合成纤维的纺织纱线的织物浸渍/涂布含有氟化乙烯树脂粉末的热固性合成树脂清漆,(b)干燥,(c) 将其切割成多个,(d)在叠加方向加热加压成型,(e)在加热下进行弯曲加工,(f)在筒体外侧形成有粘接层 表面和圆筒形背板的圆筒内表面,(g)两个粘合层彼此接触;(h)将具有大的热膨胀系数的金属制成的管压配合到内表面, (i)将其在干燥炉中在150-200℃的温度下干燥20-40分钟,和(j)冷却。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • CYLINDRICAL MULTILAYER SLIDING MEMBER AND MANUFACTURE THEREOF
    • JPH1037963A
    • 1998-02-13
    • JP21439396
    • 1996-07-25
    • OILES INDUSTRY CO LTD
    • YAMAMOTO YOSHIAKI
    • F16C33/24B32B15/08F16C33/28
    • PROBLEM TO BE SOLVED: To provide sufficient connecting force with a back metal by dispersedly connecting an expanded metal mesh to the back metal, forming a wedge shape resin engaging part, continuously ranging the grid via a small clearance between its respective sides and the back metal inner circumference face, and filling thermoplastic resin for a sliding layer in the grid, the engaging part, and the small clearance. SOLUTION: A copper alloy expanded metal 2 is pressed in the thickness direction and the sharp tip part of each connecting part 22 is crashed, and both of the front side and the back side are flattened. The metal 2 is inserted into a back metal 1, and a flat face is pressed and held by means of a spring back force. Then, the back metal 1 is heated in an inert environment, the connecting part 22 is dispersedly connected to the back metal 1 inner circumferential face, and a wedge type resin engaging part 4 is formed. A grid continues via a small clearance 5 between respective sides 23 of the mesh of the metal 2 and the back metal 1 inner circumferential face, and a core is inserted into a sliding member base body, while thermoplastic resin is injected into the clearance so as to be molded, and a sliding layer 3 is formed. Therefore, the back metal 1, the expanded metal 2, and the thermoplastic resin are fixed together firmly, and peeling resistance to the back metal 1 is improved.