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    • 62. 发明专利
    • STRAIGHTENING DEVICE FOR LINEAR BODY
    • JPH01107932A
    • 1989-04-25
    • JP26490987
    • 1987-10-20
    • HITACHI CABLE
    • NAITO MASAHARUHORIGUCHI TADASHIOKUBO HIROBUMI
    • H02G1/06B21C47/26B21D3/05B21F1/02
    • PURPOSE:To move and fix a pressure roller and to eliminate the winding way of a linear body by placing a linear body supporting roller and a feeding-out guide in the front and the rear of a base body and in the rear of a rear part supporting roller, respectively, and also, providing a linear body pressure roller and a ratchet mechanism through an operating lever between both these supporting rollers. CONSTITUTION:By laying down an operating lever 5 to a base plate 11 side, a pressure roller 6 is displaced to one of a passing straight line X1. Subsequently, a trolley wire T is fed in between collared rolling bodies 21, 22 of a leading-in side supporting roller 2 through a guide 8. Next, said wire is moved along the passing straight line X1, allowed to pass through between collared rolling bodies 31, 32 of a feeding-out side supporting roller 3, and the trolley wire T is supported by both the supporting rollers 2, 3. Thereafter, the pressure roller 6 is moved in the direction as indicated with an arrow so as to apply lateral pressure to the trolley wire T by a raising operation in the direction as indicated with an arrow of the operating lever 5. In such a way, the trolley wire T is curved and the winding way is eliminated. In this case, the pressure roller 6 receives reaction force but caught by a lock by a ratchet mechanism 7, and prevented from moving backward.
    • 63. 发明专利
    • TENSION STABILIZING DEVICE FOR LINEAR BODY
    • JPS63185781A
    • 1988-08-01
    • JP1586587
    • 1987-01-26
    • HITACHI CABLE
    • HORIGUCHI TADASHIONO TAKAOHORII KOJIISHII JUNICHI
    • B65H59/36
    • PURPOSE:To keep the tension of a linear body constant by putting said linear body around a fixed sheave and a movable sheave which is energized in a tension applying direction by means of a spring and varying the braking force of said fixed sheave in accordance with the change of position of said movable sheave. CONSTITUTION:An upper course side linear body W0 is put on from a first rotary sheave 52 which is rotatably supported by a moving part 53 which is being pulled in a tension energizing direction by a spring 57, to a second sheave 44 which is rotatably supported by a stand 41 and which has a brake drum 43 and, then, the linear body is sent out as a lower course side linear body W1. When the tension of either the linear body W0 or W1 is increased, the moving part 53 is moved leftward against the spring 57, causing a brake cord 62 which is put around the brake drum 43 stretchedly installed between the moving part 53 and a fixed part 63 to be loosened, to relieve increase in tension, and vice versa when the tension is reduced. Thereby, the tension of a linear body can be stabilized with a simple structure.
    • 70. 发明专利
    • Manufacturing device of heat-shrinkable resin tube
    • 热缩树脂管的制造装置
    • JPS6119334A
    • 1986-01-28
    • JP13937384
    • 1984-07-05
    • Hitachi Cable Ltd
    • SATOMOTO MICHIOHORIGUCHI TADASHIABE KEIZOUAIUCHI OSAMUKISHI YOSHINORISHIROTORI MUTSUMI
    • B29C55/28B29C55/24B29C61/08B29K105/02
    • B29C55/24B29K2995/0049
    • PURPOSE:To enable to lead out continuously a heat-shrinkable resin tube from a molded tube by making friction with an inner wall of the molded tube decrease, by a method wherein a crystalline polymer resin tube in which pressurized air is fed is heated by a medium liquid on the outside of the tube and the medium liquid after heat radiation is discharged into the open air. CONSTITUTION:Internal pressure through which expansion molding can be perfomed at the specific temperature of more than the softening point and less than a flow-point is applied to crystalline polymer resin tube 3. The above is fed to a resin tube molding part 8 and led to a pressing and heating chamber 14. Pressure at the inside and outside of the tube is made to balance by a pressurized medium liquid from an inlet 14' of the medium liquid and heated up to the temperature of more than the softening point and less than the flow-point by the pressurized medium liquid based on heating by a heat source 15. When the pressurized medium liquid after heat radiation is discharged into the open air through fine hole 20 of a conical part 16, the crystalline polymer resin tube 3 is expanded by the pressure in the inside of the tube. The crystalline polymer resin tube 3 is brought into contact with an inner wall of the conical part 16 and an expanded inner wall of the inside of a molded tube 17, and simultaneously with molding it is cooled, cured and made into a heat-shrinkable resin 9. Friction, therefore, with the inner wall of the molded tube is reduced and it becomes possible to lead out flawlessly, continuously and easily the heat-shrinkable resin tube.
    • 目的:为了通过与模制管的内壁摩擦而使模制管中的热收缩树脂管连续地引出,通过其中加压加压空气的结晶聚合物树脂管被加热的方法, 管外侧的介质液体和散热后的介质液体排出到外部空气中。 构成:将结晶聚合物树脂管3的特定温度以上的软化点和小于流动点的膨胀成形体的内压施加到树脂管成型部8上,并将其导入 通过加压介质液体从介质液体的入口14'平衡,并加热到高于软化点的温度,并且小于 基于通过热源15的加热的加压介质液体的流动点。当热辐射后的加压介质液体通过锥形部分16的细孔20排出到空气中时,结晶聚合物树脂管3膨胀 通过管内的压力。 结晶聚合物树脂管3与锥形部分16的内壁和模制管17内部的膨胀内壁接触,同时成型时被冷却,固化并制成热收缩树脂 因此,与模制管的内壁摩擦减少,并且可以无缝地,连续地且容易地引出热收缩树脂管。