Bend fatigue resistant blended rope

    公开(公告)号:US11499268B2

    公开(公告)日:2022-11-15

    申请号:US16758816

    申请日:2018-11-01

    申请人: HAMPIDJAN HF.

    摘要: Disclosed is a blended rope having an outer sheath (8) enclosing at least a strength member (7), the strength member (7) having high-strength synthetic fibers, the strength member (7) being a blended strength member (7) formed with a combination of ARAMID fibers and HMPE fibers, the blended strength member comprising a non-homogeneous distribution of the ARAMID and HMPE fibers, wherein the weight ratio of ARAMID to HMPE in the strength member (7) is preferably a minimum of 80:20.

    Multi-strand cable of 1×N structure for protective reinforcement of a tire

    公开(公告)号:US10704195B2

    公开(公告)日:2020-07-07

    申请号:US15546468

    申请日:2016-02-17

    IPC分类号: D07B1/06 D07B5/12 B60C9/20

    摘要: A method is provided for manufacturing a multistrand cable having a 1×N structure and including a single layer of N strands wound in a helix. Each strand includes an internal layer of M internal threads and an external layer of P external threads. The method includes a step of individually assembling each of the N strands, during which, in chronological order, the M internal threads are wound, the P external threads are wound, and the M internal threads and the P external threads are elongated such that a structural elongation associated with the P external threads of each strand is greater than or equal to 0.05%. The method further includes a step of collectively assembling the N strands, during which the N strands are wound to form the cable.

    Corrosion resistant steel filament
    3.
    发明授权
    Corrosion resistant steel filament 失效
    耐腐蚀钢丝

    公开(公告)号:US5822973A

    公开(公告)日:1998-10-20

    申请号:US944223

    申请日:1997-10-06

    IPC分类号: D07B1/06 D07B5/12 D01H13/26

    摘要: A steel cord intended for use to reinforce rubber products is produced by drawing, into a steel filament of 0.10 to 0.40 mm in diameter and more than 3,000 N/mm.sup.2 in strength, a wire rod having a carbon content of more than 0.70% by weight, and twisting a plurality of such steel filaments together. Also a pneumatic tire is provided which employs in at least a portion of a reinforcing member thereof the steel cord improved in corrosion resistance and having an R.sub.1 /R.sub.0 ratio.times.100 which is less than 100, where R.sub.0 is the radius of spiral curvature of the spiraled steel filament resulting from untwisting said steel cord and R.sub.1 is the radius of spiral curvature of said steel filament of which the surface layer inside the spiral is removed by dissolving.

    摘要翻译: 用于加固橡胶制品的钢丝帘线通过拉伸成直径为0.10至0.40mm,强度高于3,000N / mm2的钢丝,碳含量大于0.70重量%的线材 并且将多根这样的钢丝扭曲在一起。 还提供了一种充气轮胎,其至少在其加强构件的一部分中采用提高耐腐蚀性的钢帘线,并且具有小于100的R1 / R0比x100,其中R0是螺旋钢的螺旋曲率的半径 通过解捻所述钢帘线产生的长丝,R1是所述钢丝的螺旋曲率的半径,螺旋中的表面层通过溶解而被除去。

    Fatigue resistant cables
    5.
    发明授权
    Fatigue resistant cables 失效
    耐疲劳电缆

    公开(公告)号:US4481996A

    公开(公告)日:1984-11-13

    申请号:US345585

    申请日:1982-02-04

    摘要: In order to improve the fatigue resistance of a cable, particularly a rubber adherable cable for reinforcing rubber articles such as vehicle tires, substantially uniformly distributed residual compressive stress is induced in substantially the complete peripheric zone of the wires making up the cable. The stress may be induced by submitting lengths of the cable to a number of elementary bending--unbending operations in considerably different planes and simultaneously tensioning the cable.

    摘要翻译: 为了提高电缆的耐疲劳性,特别是用于加强橡胶制品例如车辆轮胎的橡胶密封电缆,在构成电缆的电线的基本上完整的外围区域中引起基本上均匀分布的残余压缩应力。 应力可以通过将电缆的长度提交到在相当不同的平面中的许多基本弯曲 - 弯曲操作并且同时张紧电缆而引起。

    Wire cable
    8.
    发明授权

    公开(公告)号:US2010184A

    公开(公告)日:1935-08-06

    申请号:US68305733

    申请日:1933-07-31

    发明人: VICTOR FURTH

    IPC分类号: D07B5/12 D07B7/02

    摘要: 423,665. Wire cables. FELTEN & GUILLEAUME CARLSWERK EISEN UND STAHL AKT. - GES., Mulheim, Cologne, Germany. July 27, 1933, No. 21123. Convention date, Aug. 5, 1932. [Class 109] Stresses are removed from finished wire cables by loosening the cable structure at one end, applying to the loosened cable elements supporting means which hold each cable element deflected from its normal position, and then either moving the supporting means along the cable, the said means rotating according to the helical form of the elements, or holding the said means stationary and running the cable through it. In Figs. 3 and 4 the supporting means is shown as a split spider c having peripheral incisions and a central bore e which take the cable strands and core f respectively, the cable being wrapped tightly at both ends. The spider is mounted in a ring g which is urged forward by means of handles h attached to a ring r separated from the ring g by a ball-bearing ring. The spider may be unsplit, the strands and core being threaded therethrough at an open end of the cable. The ring r may be omitted, in which case the ring g is provided with handles. Fig. 6 shows a modification in which the spider is replaced by radially adjustable holders k having rollers i. Instead of rollers, rings of balls may be used.