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    • 1. 发明申请
    • BRAIDED ROPE, SUITABLE TO BE USED AS A TOWING WARP, COMPRISING CHANGING PROPERTIES IN THE LENGTH DIRECTION THEREOF
    • 适用于适用于长度方向的变形属性的BRAIDED ROPE
    • WO2012107939A1
    • 2012-08-16
    • PCT/IS2012/050002
    • 2012-02-06
    • HAMPIDJAN HF.ERLENDSSON, Hjortur
    • ERLENDSSON, Hjortur
    • D07B5/00D04C1/12
    • D07B5/00D04C1/12D07B5/005D07B2201/1012D07B2201/1024D07B2201/1096
    • Disclosed is a tow warp construction and a process for forming such tow warp construction where such tow warp construction has a longer life span, that is retains its useful dimensions and characteristics longer than known tow warp constructions and consequently has a longer useful life span than known tow warp constructions. Most broadly the construction of the tow warp construction of the present disclosure and process for forming such includes gradually and progressively introducing fibers from a second group of fibers (or "second group of linear elements") into an otherwise conventional stranding process where fibers from a first group of fibers (or "first group of linear elements") are being stranded to form strands (or "third group of linear elements"), so as to either or both increase the diameter of the strands and/or substitute the first group of fibers by fibers from the second group of fibers, so as to: a) in the first instance, increase the diameter of the formed strands and subsequently of a strength member formed of the strands, especially for increasing the diameter and strength of the tow warp's strength member in and about the splice braid zone where it connects to a towed object such as a paravane; and b) in the second instance, substitute in a predetermined region on the long dimension of the strands and subsequently in a predetermined region on a long dimension of a strength member formed of the strands fibers of higher creep and/or lower melting points by fibers of lower creep and/or higher melting points, especially for increasing the resistance of the tow warps strength member to bending fatigue.
    • 公开了一种丝束经纱结构和用于形成这种丝束经纱结构的方法,其中这种丝束经纱构造具有更长的寿命,其保持其比已知的丝束经向构造更长的有用尺寸和特性,因此具有比已知的长的使用寿命 牵引经纱结构。 最广泛地,本公开的丝束经向结构的构造和用于形成的方法包括逐渐逐渐地将来自第二组纤维(或“第二组线性元件”)的纤维引入另外常规的绞合过程中,其中来自 第一组纤维(或“第一组线性元件”)正在被绞合以形成股线(或“第三组线性元件”),以便增加股线的直径和/或替代第一组 的纤维由第二组纤维的纤维制成,以便:a)首先增加所形成的股线的直径,随后增加由股线形成的强度部件,特别是为了增加丝束的直径和强度 在连接到拖曳物体(例如paravane)的接合辫状区域中及其附近的翘曲强度构件; 和b)在第二种情况下,在股线的长尺寸上的预定区域中,并且随后在由纤维形成的强度部件的长尺寸的预定区域中代替,所述强度部件由较高蠕变和/或较低熔点的纤维制成,纤维 较低的蠕变和/或更高的熔点,特别是为了增加丝束翘曲强度部件对弯曲疲劳的阻力。
    • 7. 发明申请
    • A FLEXIBLE COMPLIANT LINE FOR PROVIDING A LINKAGE BETWEEN A FIRST STRUCTURE AND A SECOND STRUCTURE
    • 用于提供第一结构和第二结构之间的链接的灵活的符合线
    • WO2017144858A1
    • 2017-08-31
    • PCT/GB2017/050382
    • 2017-02-14
    • TEQNIQA SYSTEMS LTD
    • GORDON, Peter CroninNEWSAM, David
    • B63B21/00F15B15/10
    • B63B21/502B63B2021/203D04C1/06D07B1/12D07B2201/1024D07B2201/1096D07B2201/2063D07B2201/2069D07B2401/2005D07B2501/2061F15B1/021F15B15/103D07B2801/24
    • The invention concerns an elongate, flexible line (16) for providing a linkage between a first structure (10) and a second structure (14). The line may be a mooring line. It has an elongate tubular sheath (18) of braided material, the sheath being able to change reversibly and repeatedly in length and its braided structure being such that an increase in length of the sheath is accompanied by a decrease in its lateral dimension. Within the sheath is an impervious flexible bladder (28). The bladder defines a fluid-containing internal chamber (36) which is acted on by the sheath so that the volume of the chamber varies with the length of the sheath. A pressure source (42) is arranged to pressurise the chamber. A passage (40) communicates with the chamber and incorporates a restriction (44). In operation the pressurised bladder urges the sheath to expand laterally and so to contract in length. An increase in extension of the sheath causes fluid to be exhausted from the chamber through the restriction, increasing chamber pressure and providing a damping force opposed to the sheath's extension.
    • 本发明涉及用于提供第一结构(10)和第二结构(14)之间的连接的细长柔性线(16)。 该线可能是系泊线。 它具有编织材料的细长管状护套(18),护套能够可逆地并且重复地改变长度,并且其编织结构使得护套长度的增加伴随着其横向尺寸的减小。 护套内是一个不透水的柔性气囊(28)。 该囊限定了一个含有流体的内室(36),该内室由外壳加载,从而室的容积随外壳的长度而变化。 压力源(42)布置成对腔室加压。 通道(40)与腔室连通并且包含限制部(44)。 在操作中,加压气囊推动护套横向扩张,从而收缩。 鞘管延伸的增加导致流体通过限制从腔室排出,增加腔室压力并提供与鞘管延伸部分相反的阻尼力。
    • 8. 发明申请
    • TAPERED LINE SPLICE SYSTEMS AND METHODS
    • TAPERED LINE SPLICE系统和方法
    • WO2016100390A1
    • 2016-06-23
    • PCT/US2015/065892
    • 2015-12-15
    • SAMSON ROPE TECHNOLOGIES
    • DOWNS, JonathanNEWBOLES, Kurt
    • D07B9/00B65H69/06
    • D07B7/169B65H69/06D07B5/005D07B2201/1024
    • A tapered rope structure (20) comprises a first rope region (24), a second rope region (26), and a splice region (22). The splice region (22) is between the first and the second rope regions (24, 26) and comprises a taper portion (32), a finish portion (34), and an overlap portion (30). The finish portion (34) is arranged between the taper portion (32) and the first rope region (24). The overlap portion (30) is arranged between the taper portion (32) and the second rope region (26). A diameter of the first rope region is smaller than a diameter of the second rope region (26). A diameter of the overlap portion (30) is greater than the diameter of the second rope region (26). A diameter of the splice region (22) generally decreases from the overlap portion (30) to the first rope region (24).
    • 锥形绳结构(20)包括第一绳索区域(24),第二绳索区域(26)和接合区域(22)。 接合区域(22)位于第一和第二绳索区域(24,26)之间,并且包括锥形部分(32),精加工部分(34)和重叠部分(30)。 精加工部(34)配置在锥形部(32)与第一绳索区(24)之间。 重叠部分(30)设置在锥形部分(32)和第二绳索区域(26)之间。 第一绳索区域的直径小于第二绳索区域(26)的直径。 重叠部分(30)的直径大于第二绳索区域(26)的直径。 接合区域(22)的直径通常从重叠部分(30)减小到第一绳索区域(24)。
    • 9. 发明申请
    • BELT USED AS ROPE
    • 皮带用作鞋带
    • WO1994026963A1
    • 1994-11-24
    • PCT/JP1993001908
    • 1993-12-27
    • KIKUCHI WEB TECH CO., LTD.KIKUCHI, KoichiWATANABE, Masao
    • KIKUCHI WEB TECH CO., LTD.
    • D03D01/00
    • D03D1/0005D03D3/02D07B1/22D07B5/005D07B5/04D07B2201/1024D07B2201/20903Y10T428/1362
    • A belt used as a rope which as a strength higher than that of a rope of the same mass and a substantially circular cross section, and which is provided at both sides thereof with belt portions. This belt consists of a narrow woven material (10) composed of warp and weft yarn (6, 7) of synthetic fiber filaments, and has a belt body (2) extending in the lengthwise direction of the belt, a belt portion (4), and a joint portion (3) for connecting the belt body (2) and belt portion (4) together. The belt body (2) is formed by weaving core strings (5) into a hollow weave texture, and the warp yarn density factor of a hollow weave member (22) is set to not more than 0.700. The belt portion (4) has a woven structure in which the warp yarn (6) in the hollow weave member of the belt body (2) and a part or the whole of the core strings (5) in the belt body (2) are interlaced with the weft yarn. The belt portion has a width W not less than 2.0 times as large as that W &cir& _ of the belt body (2). The joint portion (3) is formed so that it transmutes to a woven structure of the belt body (2) or that of the belt portion (4) in a plurality of steps with its weaving width gradually decreasing or increasing.
    • 用作绳索的皮带,其强度高于相同质量的绳索和基本上圆形的横截面,并且在其两侧设置有皮带部分。 该带由合成纤维长丝的经纱和纬纱(6,7)构成的窄编织材料(10)构成,并且具有沿带的长度方向延伸的带体(2),带部分(4) ,以及用于将带体(2)和带部(4)连接在一起的接合部(3)。 带体(2)通过将芯线(5)编织成中空编织织构而形成,中空编织构件(22)的经纱密度因子设定为不大于0.700。 带部分(4)具有编织结构,其中带体(2)的中空编织构件中的经纱(6)和带体(2)中的芯线(5)的一部分或整体, 与纬纱交错。 带部分的宽度W不小于带体(2)的宽度W的2.0倍。 接头部分(3)形成为使得它们的编织宽度逐渐减小或增加,其以多个台阶转变为带体(2)的编织结构或带部分(4)的织造结构。