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    • 1. 发明公开
    • IMPROVED HEADLINE SONAR CABLE
    • 改进的HEADLINE SONAR电缆
    • EP2313214A2
    • 2011-04-27
    • EP09750997.0
    • 2009-05-22
    • Hampidjan, HFHampidjan USA, Inc.
    • ERLENDSSON, Hjortur
    • B21C37/04
    • G01V1/201A01K73/025A01K75/00D07B1/147D07B2207/4045D07B2207/4059D07B2207/4072G01V2001/204
    • A production method for a headline sonar cable (20, 120) that exhibits a high breaking-strength and lighter weight than a conventional steel headline sonar cable. Producing the headline sonar cable (20, 120) is characterized by the steps of : a. providing an elongatable internally-located conductive structure (34, 134) that is adapted for data signal transmission; and b. braiding a strength-member jacket layer (52) of polymeric material around the structure (34, 134) while ensuring that the structure (34,134) is slack when surrounded by the jacket layer (52) The structure (34, 134) of the cable (20, 120) retains conductivity upon stretching of the jacket layer (52) surrounding the structure (34,134) that lengthens the cable (20,120). For one embodiment of the method a conductor (20) wrapped around a rod (24) and enclosed within a sheath layer (32) forms the structure (34, 134). For another embodiment of the method a braided conductor (122) enclosed within a braided sheath (124) and a polymeric layer (132) forms the structure (34,134).
    • 一种标题声纳电缆(20,120)的生产方法,其与传统钢标题声纳电缆相比表现出高的断裂强度和更轻的重量。 生产标题声纳电缆(20,120)的特征在于以下步骤:a。 提供适于数据信号传输的可伸长的内部定位的导电结构(34,134) 和b。 在结构(34,134)周围编织聚合物材料的强度构件护套层(52),同时确保当被护套层(52)围绕时结构(34,134)松弛。缆线的结构(34,134) (20,120)在围绕延长所述电缆(20,120)的所述结构(34,134)的所述护套层(52)的拉伸时保持导电性。 对于该方法的一个实施例,缠绕在杆(24)周围并被包围在护套层(32)内的导体(20)形成结构(34,134)。 对于该方法的另一实施例,封闭在编织护套(124)和聚合物层(132)内的编织导体(122)形成结构(34,134)。
    • 7. 发明公开
    • CREEP ALERTING SUPERWIDE
    • 匍匐攀爬
    • EP3207408A1
    • 2017-08-23
    • EP15797714.1
    • 2015-10-19
    • Hampidjan HF
    • ERLENDSSON, Hjortur
    • G01V1/20G01L1/12D07B1/14
    • G01V1/201D07B1/145
    • A creep alerting superwide is formed of a hollow braided strength member formed mainly of synthetic fibers and formed about a solid rod of plastic material where disposed within the solid rod and situated at spatial intervals along the long dimension of the solid rod are a plurality of spatially separated remotely detectable objects. Methods for forming the creep alerting superwide include first coupling the remotely detectable objects with the solid plastic rod, then enclosing both within a flow shield sheath, then enclosing the resultant unit within a hollow braided strength member, followed by subsequently tensing and heating the resultant pre-processed rope until the thermoplastic of the rod is molten, the strength member is elongated and the diameter of the rope is reduced, followed by cooling the rope. The change in length of the spatial interval between consecutive remotely detectable objects is monitored over time to alert operators of the danger of rope failure due to excessive creep.
    • 超范围的蠕变警报由主要由合成纤维形成的中空编织强度构件形成,并且围绕实心杆形成,其中设置在实心杆内并且沿着实心杆的长尺寸以空间间隔设置有多个空间上的 分离远程可检测物体。 用于超范围形成蠕变报警的方法包括首先将可远程探测的物体与固体塑料棒耦合,然后将两者都封闭在流动护套内,然后将所得到的单元封闭在中空的编织强度构件内,随后张紧并加热所得的预制件 处理过的绳索,直到杆的热塑性塑料熔化,强化构件拉长并且绳索的直径减小,随后冷却绳索。 随着时间的推移监测连续的可远程检测物体之间的空间间隔长度的变化,以警告操作员由于过度蠕变而导致绳索失效的危险。