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    • 1. 发明专利
    • Rail supporting structure
    • 铁路支撑结构
    • JP2012255265A
    • 2012-12-27
    • JP2011127841
    • 2011-06-08
    • Railway Technical Research Institute公益財団法人鉄道総合技術研究所Nhk Spring Co Ltd日本発條株式会社
    • MURAMOTO KATUMINAKAMURA TAKAHISASAKURAI YUMASUDA MITSUOOTAKA RYOSUKE
    • E01B3/00E01B1/00
    • PROBLEM TO BE SOLVED: To provide a rail supporting structure which can be constructed with simple work while suppressing an investment cost.SOLUTION: The rail supporting structure uses sleepers 2 and 3 and a subsidence correction assisting sleeper 6 for supporting a rail 4 on a track bed 1. The subsidence correction assisting sleeper 6 comprises: a track bed installation 8 to be installed on the track bed 1; and a rail support 7 to be supported movably up and down by the track bed installation 8. When the track bed 1 subsides to move the track bed installation 8 down, the rail support 7 is moved up relative to the track bed installation 8 and a granular material 75 in an inner cylinder 71 flows out of an outflow hole 71a to a placement plate 80. Then, the bottom plate of the inner cylinder 71 is supported by the granular material 75 flowing out of the outflow hole 71a, and the rail 4 is supported via th rail support 7 and the granular material 75 on the track bed 1 by the track bed installation 8.
    • 要解决的问题:提供一种能够以简单的工作构建的轨道支撑结构,同时抑制投资成本。 解决方案:轨道支撑结构使用轨枕2和3以及用于支撑轨道床1上的轨道4的沉降校正辅助轨枕6。沉降校正辅助轨枕6包括:轨道床安装件8,安装在轨道床 轨道床1; 以及轨道支撑件7,可由轨道床装置8上下移动。当轨道床1下降以使轨道床安装件8向下移动时,轨道支撑件7相对于轨道床安装件8向上移动,并且 内筒71中的颗粒材料75从流出孔71a流出到放置板80.然后,内筒71的底板由流出孔71a流出的颗粒材料75支撑,轨道4 通过轨道床安装8通过轨道支撑件7和轨道床1上的颗粒材料75被支撑。版权所有(C)2013,JPO和INPIT
    • 2. 发明专利
    • Automatic subsidence correction device and automatic subsidence correction tie
    • 自动补偿校正装置及自动补偿校正
    • JP2012172413A
    • 2012-09-10
    • JP2011035989
    • 2011-02-22
    • Railway Technical Research InstituteNhk Spring Co Ltd公益財団法人鉄道総合技術研究所日本発條株式会社
    • MURAMOTO KATSUMINAKAMURA TAKAHISASAKURAI HIROSHIMASUDA MITSUOOTAKA RYOSUKE
    • E01B3/00
    • PROBLEM TO BE SOLVED: To provide an automatic subsidence correction device and an automatic subsidence correction tie capable of achieving smooth movement.SOLUTION: An automatic subsidence correction device has an internal cylinder (21-21G) which is installed in a tie body (11) extending so as to cross traveling rails (R1, R2) and which houses a granular material (G1) to be dischargeable, an external cylinder (22-22G) into which the internal cylinder (21-21G) is inserted to be relatively movable and which houses the granular material (G1) discharged from the internal cylinder (21-21G), guide mechanisms (30A-30D, 40A-40H, 50A-50D, 60A-60H, 70A-70D, 80A-80D) which guide the internal cylinder (21-21G) and the external cylinder (22-22G) to be relatively moved, and elastic members (34,43,54,63,73,83) with a spring constant for displacement so that the internal cylinder (21-21G) and the external cylinder (22-22G) can come into contact with each other to prevent a load of a set value or more from acting on the guide mechanisms when the load of a set value or more acts on the guide mechanisms.
    • 要解决的问题:提供能够实现平稳移动的自动沉降校正装置和自动沉降校正系统。 自动沉降校正装置具有内筒(21-21G),其安装在穿过行进轨道(R1,R2)并且容纳颗粒材料(G1)的连接体(11)中, 能够排出内筒(21-21G)插入的外筒(22-22G)相对移动并容纳从内筒(21-21G)排出的颗粒材料(G1),引导机构 引导内筒(21-21G)和外筒(22-22G)相对移动的(30A-30D,40A-40H,50A-50D,60A-60H,70A-70D,80A-80D) 具有用于位移的弹簧常数的弹性构件(34,43,54,63,73,83),使得内筒(21-21G)和外筒(22-22G)可以彼此接触以防止 当设定值或更大的载荷作用在引导机构上时,设定值或更大的载荷作用在引导机构上。 版权所有(C)2012,JPO&INPIT