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    • 1. 发明专利
    • Anchor cable
    • 锚索
    • JPS5722984A
    • 1982-02-06
    • JP9734780
    • 1980-07-15
    • Yoshio Taneda
    • TANEDA YOSHIO
    • E02B17/02B63B21/20E02B3/06E02B17/00
    • PURPOSE: To reduce weight and improve corrosion resistance of anchor cable by employing a multilayed pipe structure of steel wire containing rubber.
      CONSTITUTION: A steel cord containing ply 6 composed by steel cords 3 buried in a rubber seat is rolled around a mandrel 7 and made into a rubber cable 9. A twilled polyamide tape is wrapped tightly around its outside. This rubber cable has a multilayered pipe structure and is light, resistive against corrosion and durable against bending enabling application of a small catenary curveture.
      COPYRIGHT: (C)1982,JPO&Japio
    • 目的:通过采用含橡胶钢丝的多层管道结构,减轻锚索的重量和提高耐腐蚀性。 构成:将埋在橡胶座中的由钢帘线3组成的帘布层6的钢帘线围绕心轴7卷绕并制成橡胶电缆9.斜纹聚酰胺带被紧紧地包裹在其外部。 该橡胶电缆具有多层管结构,轻便,耐腐蚀,耐弯曲,可应用小的悬链曲线。
    • 2. 发明申请
    • Piston Type Compressor
    • 活塞式压缩机
    • US20080193304A1
    • 2008-08-14
    • US11883994
    • 2006-07-24
    • Akinobu KanaiMasaki OtaAkihito YamanouchiOsamu NakayamaYoshio TanedaMasaya Sakamoto
    • Akinobu KanaiMasaki OtaAkihito YamanouchiOsamu NakayamaYoshio TanedaMasaya Sakamoto
    • F04B1/14F04B27/10
    • F04B27/1018Y10T137/86501
    • Each suction port 43 of a cylinder block 11 has a narrow passage 50 located at a top dead center side and a wide passage 51 located at a bottom dead center side. A suction communication passage 45 of a rotary valve 41 passes by a first succeeding end 50b of the narrow passage 50 before passing by a second succeeding end 51b of the wide passage 51. A high-pressure groove 47 of a residual gas bypass groove 46 faces only a narrow passage 50 of a suction port 43A that corresponds to a high-pressure side compression chamber 26 when in communication with the suction port 43A. A width Tc between the first succeeding end 50b and a second preceding end 51a of the wide passage 51 in the rotation direction of the rotary valve 41 is smaller than a seal width W of a seal region S between the high-pressure groove 47 and the outlet 45b of the suction communication passage 45. This reduces the suction loss amount of gas in each compression chamber and improves the compression efficiency while advancing the timing at which the suction of gas into the compression chamber starts.
    • 气缸体11的每个吸入口43具有位于上止点侧的窄通道50和位于下止点侧的宽通道51。 旋转阀41的抽吸连通路45在通过宽通道51的第二后端51b之前通过窄通道50的第一后端50b。 残留气体旁通槽46的高压槽47仅与吸入口43A连通的与高压侧压缩室26对应的吸入口43A的窄通道50面对。 宽通道51的第一后端50b和第二前端51a在旋转阀41的旋转方向上小于高压槽47和出口45之间的密封区域S的密封宽度W b。 这样可以减小每个压缩室中的气体吸入损失量,并提高压缩效率,同时提前进入压缩室内的气体吸入开始的时刻。
    • 4. 发明授权
    • Piston type compressor
    • 活塞式压缩机
    • US06544006B2
    • 2003-04-08
    • US09952660
    • 2001-09-14
    • Naoya YokomachiTatsuya KoideMasakazu MuraseYoshio Taneda
    • Naoya YokomachiTatsuya KoideMasakazu MuraseYoshio Taneda
    • F04B2708
    • F04B27/1081
    • A gasket 36 is interposed between an end face 341 of a front housing 11 and an end face 351 of a rear housing 12. A coned disc spring 37 is interposed between an end face 192 of a cylinder 19 and the end face 341 of the front housing 11. When the end faces 341, 351 are caused to approach each other so as to be joined together, the coned disc spring 37 is first held by the end face 341 of the front housing 11 and the end face 192 of the cylinder 19. When the end faces 341, 351 are caused to approach each other further so as to be joined together, the gasket 36 is held between the end faces 341, 351. Thus, it is ensured that the cylinder and the seal material interposed between the first housing and the second housing are held therebetween.
    • 垫片36插入在前壳体11的端面341和后壳体12的端面351之间。碟形弹簧37插入在气缸19的端面192和前端的端面341之间 壳体11.当使端面341,351彼此靠近接合在一起时,碟形弹簧37首先由前壳体11的端面341和气缸19的端面192保持 当使端面341,351进一步接近而连接在一起时,垫圈36保持在端面341,351之间。因此,确保了气缸和密封材料插入在 第一壳体和第二壳体保持在其间。