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    • 2. 发明专利
    • Rubber molding mold
    • 橡胶模具
    • JP2010105338A
    • 2010-05-13
    • JP2008281665
    • 2008-10-31
    • Jtekt CorpKoyo Sealing Techno Co Ltd光洋シーリングテクノ株式会社株式会社ジェイテクト
    • ARAKI YOSHIBUMIOKA KOICHISUZUKI MASAHIROSAITO TOSHIYUKI
    • B29C33/38B29K19/00C23C18/52
    • PROBLEM TO BE SOLVED: To provide a mold which shows a high mold release effect without employing a mold release agent and is excellent in wear resistance.
      SOLUTION: The mold surface of the mold 1 is obtained by forming first metallic deposits 12a and 12b formed of metallized skins of Ni-P alloys plated on the surface of the base material 4 of the mold 1 and covering layers 11a and 11b formed of second metallic deposits 13a and 13b formed of compound metallized skins composed of the metallized skins of the plated Ni-P alloys dispersed with fluororesin particles thereon provided outside the first metallic deposits. The content of the fluororesin particles in the second metallic deposits 13a and 13b is set to be 20-33 volume%.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种模具,其在不使用脱模剂的情况下具有高脱模效果,并且耐磨性优异。 解决方案:模具1的模具表面通过形成第一金属沉积物12a和12b,该金属沉积物12a和12b由镀在模具1的基材4的表面上的Ni-P合金的金属化表面和覆盖层11a和11b 由第二金属沉积物13a和13b形成,第二金属沉积物13a和13b由复合金属化表面形成,该金属化表面由设置在第一金属沉积物外部的氟树脂颗粒分散的镀Ni-P合金的金属化表面组成。 第二金属沉积物13a和13b中的氟树脂颗粒的含量设定为20-33体积%。 版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • mechanical seal
    • 机械密封
    • JP2014185691A
    • 2014-10-02
    • JP2013060788
    • 2013-03-22
    • Jtekt Corp株式会社ジェイテクト
    • MATSUO KAZUAKISUZUKI MASAHIROYAMAKAWA KAZUYOSHI
    • F16J15/34C10M103/02C23C16/27
    • PROBLEM TO BE SOLVED: To provide a mechanical seal capable of improving corrosion resistance, wear resistance and workability in a lump.SOLUTION: A mechanical seal 1 prevents the leakage of a fluid R from between a housing 3 having an opening 6 through which a rotating shaft 4 is inserted and the rotating shaft 4 through the opening 6. The mechanical seal 1 includes a fixed ring 11 fixed to the housing 3 at the opening 6 and externally fitted to the rotating shaft 4, and a rotary ring 12 externally fitted to the rotating shaft 4 in an integrally rotatable manner. With the rotation of the rotating shaft 4, a rotation side seal face 37 of the rotary ring 12 comes in slide contact with a fixed side seal face 17 of the fixed ring 11. On at least one of the rotation side seal face 37 and the fixed side seal face 17, a DLC film 14 is provided which contains silicon of more than 0 wt.% and 30 wt.% or less.
    • 要解决的问题:提供能够提高耐腐蚀性,耐磨性和一体性加工性的机械密封。解决方案:机械密封件1防止流体R从具有开口6的壳体3之间泄漏,旋转 轴4被插入,旋转轴4穿过开口6.机械密封件1包括在开口6处固定到壳体3并且外部装配到旋转轴4的固定环11和外部安装到旋转轴4的旋转环12 旋转轴4以可旋转的方式旋转。 随着旋转轴4的旋转,旋转环12的旋转侧密封面37与固定环11的固定侧密封面17滑动接触。在旋转侧密封面37和 固定侧密封面17,提供含有大于0重量%和30重量%以下的硅的DLC膜14。
    • 5. 发明专利
    • Vane structure and vane device
    • VANE结构和VANE设备
    • JP2014181635A
    • 2014-09-29
    • JP2013057200
    • 2013-03-19
    • Jtekt Corp株式会社ジェイテクト
    • SUZUKI MASAHIROYAMAKAWA KAZUYOSHIMATSUO KAZUAKISAITO TOSHIYUKI
    • F04C18/344
    • PROBLEM TO BE SOLVED: To provide a vane structure and a vane device capable of restraining wear in a contact part of a vane and a rotor.SOLUTION: A vane structure 4 includes a rotor 5, and a vane 6 having a DLC film 13. The rotor 5 is stored in a cam ring 2, and is relatively rotatable with the cam ring 2. The vane 6 is partially inserted into a plurality of supporting grooves 10 formed on an outer peripheral surface 5A of the rotor 5. A distal end 6F of the vane 6 slides with an inner peripheral surface 2B of the cam ring 2 in accordance with relative rotation of the rotor 5 with respect to the cam ring 2. The supporting grooves 10 are partitioned by a first wall surface 10A and a second wall surface 10B facing with each other while having the vane 6 therebetween. A first curved surface 51 is formed for chamfering a boundary between the first wall surface 10A and the outer peripheral surface 5A of the rotor 5. A second curved surface 52 is formed for chamfering a boundary between the second wall surface 10B and a back pressure chamber 11 on the deepest part side of the supporting groove 10.
    • 要解决的问题:提供一种能够抑制叶片和转子的接触部分的磨损的叶片结构和叶片装置。解决方案:叶片结构4包括转子5和具有DLC膜13的叶片6。 转子5储存在凸轮环2中,并且可与凸轮环2相对旋转。叶片6部分地插入形成在转子5的外周面5A上的多个支撑槽10中。远端6F 叶片6根据转子5相对于凸轮环2的相对旋转而与凸轮环2的内周面2B滑动。支撑槽10被第一壁面10A和第二壁面 10B彼此面对,同时在其间具有叶片6。 形成第一弯曲表面51,用于倒角转子5的第一壁面10A和外周面5A之间的边界。第二弯曲表面52形成用于倒角第二壁面10B和背压室 11在支撑槽10的最深部分侧。
    • 7. 发明专利
    • Method of producing coated member
    • 制造涂层成员的方法
    • JP2011252179A
    • 2011-12-15
    • JP2010124554
    • 2010-05-31
    • Jtekt Corp株式会社ジェイテクト
    • SUZUKI MASAHIROSAITO TOSHIYUKIYAMAKAWA KAZUYOSHI
    • C23C16/27
    • C23C16/515C23C16/26C23C16/503C23C16/56
    • PROBLEM TO BE SOLVED: To provide a method of producing a coated member excellent in initial conformability with high productivity with as low energy consumption as possible without undergoing a step of forming a conformable film separated from and independent of a DLC (diamond like carbon) film on a surface of the DLC film.SOLUTION: The method of producing the coated member includes steps of: forming the DLC film on a surface of a base material 4 by generating plasma by applying voltage to the base material 4 housed in a processing chamber 3 while evacuating the processing chamber 3 and introducing feedstock gas that contains at least a carbon compound into the processing chamber 3; and treating the formed DLC film with hydrogen gas by stopping the voltage application and introducing hydrogen gas instead of the feedstock gas while continuing the evacuation.
    • 要解决的问题:提供一种以尽可能低的能量消耗生产出具有优异的初始适应性的涂层构件的方法,而不经历形成与DLC分离并独立于DLC(菱形的 碳)膜在DLC膜的表面上。 解决方案:制造涂层部件的方法包括以下步骤:通过在容纳在处理室3中的基材4上施加电压而产生等离子体,同时对处理室进行抽空而在基材4的表面上形成DLC膜 3并将含有至少一种碳化合物的原料气体引入到处理室3中; 并且通过停止施加电压并且在继续抽真空的同时引入氢气代替原料气体,用氢气处理形成的DLC膜。 版权所有(C)2012,JPO&INPIT
    • 8. 发明专利
    • Rolling bearing
    • 滚动轴承
    • JP2009180367A
    • 2009-08-13
    • JP2008022523
    • 2008-02-01
    • Jtekt Corp株式会社ジェイテクト
    • TANI NAOKISUZUKI MASAHIRO
    • F16C33/66F16C33/44
    • F16C33/6659F16C19/163F16C33/445F16C2202/60
    • PROBLEM TO BE SOLVED: To provide a rolling bearing for efficiently supplying lubricating oil to required sites while eliminating the waste of the lubricating oil.
      SOLUTION: The rolling bearing 1 comprises an inner ring 2 having an inner ring raceway surface 2b on the outer periphery, an outer ring 3 having an outer ring raceway surface 3b on the inner periphery, a plurality of rolling elements 4 arranged between the inner ring raceway surface 2b and the outer ring raceway surface 3b, and an annular cage 6 having pockets for holding the plurality of rolling elements 4 at predetermined peripheral spaces, wherein lubricating oil is supplied passing through a space between the outer peripheral face of the inner ring 2 on one axial side and the inner peripheral face of the cage. On the inner peripheral face of the cage 6 on at least one axial side, an enlarged diameter portion 20 is formed ranging from one axial end to the peripheral edges of the pockets 5 with its diameter wholly enlarged, not shrunk. A surface 20a of the enlarged diameter portion 20 has oil repellency.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种用于有效地将润滑油供应到所需位置的滚动轴承,同时消除润滑油的浪费。 解决方案:滚动轴承1包括在外周具有内圈滚道表面2b的内圈2,在内周上具有外圈滚道表面3b的外圈3,多个滚动元件4,其布置在 内圈滚道表面2b和外圈滚道表面3b,以及具有用于将多个滚动元件4保持在预定的周边空间的凹穴的环形保持架6,其中润滑油被供给通过 一个轴向侧的内圈2和保持架的内周面。 在保持架6的至少一个轴向侧的内周面上,扩径部分20形成为从口袋5的一个轴向端部到周边边缘,其直径全部扩大而不收缩。 扩径部20的表面20a具有拒油性。 版权所有(C)2009,JPO&INPIT