Abstract:
A wire rope including at least one metal wire and at least one fluoropolymer fiber. Preferably, the fluoropolymer fiber is present in an amount less than about 25 weight %, and in alternative embodiments less than 20 weight %, 15 weight %, 10 weight %, and 5 weight %. The fluoropolymer fiber is preferably PTFE, and most preferably expanded polytetrafluoroethylene (ePTFE). The wire rope is useful in tensioned and bending applications.
Abstract:
The present invention includes a nontwisted composite tether comprising one or more composite rods encased in a jacket and a method for manufacturing same. A portion of the rods may be bundled into one or more strands, provided however that the rods comprising the strands are not twisted into twisted strands in the assembled nontwisted tether. Such untwisted strands, if any, additionally are not twisted relative to each other. Temporary and/or permanent buoyancy may be to the tether. The present invention includes methods for preparing, transporting, and installing a composite tether on a floating platform. The tether, preferably assembled at a waterfront, is launched into the water and towed to an offshore installation site, where the tether is upended and connected via a bottom end connector on the tether to an anchor foundation in the seabed and connected a top end connector on the tether to the floating platform.
Abstract:
A plastic impregnated wire rope is provided with plastic bands between its core and its outer strands so as to prevent contact between the wires of the core and those of the outer strands during flexing of the rope. This produces a substantial increase in the life of the rope. The method for manufacturing such rope involves wrapping plastic bands on the core just prior to laying outer strands on the core and on top of the plastic bands. Thereafter, the so formed rope is impregnated with molten plastic, which is then allowed to solidify.
Abstract:
In order to improve visibility and hence to reduce the risk of accidents, a rope, for example a wire rope, is equipped with a number of luminous elements. A luminous element may in this case assume the position of a wire or of a braid, may be integrated in an insert, or may be guided in the spaces between wires or braids and preferably within the theoretical rope circumference. The luminous element may also itself be composed of luminous elements which are twisted together, are twisted or are laid. For strain relief, the luminous elements may be equipped with a reinforcement in the form of a strand, or with a mesh. The luminous element is intended to be connected to a source. In the state when it is fed, the luminous element is actively luminous. Owing to the improved visibility, rope lights may be used not only for a safety function but also for an aesthetic appearance.
Abstract:
A fishing line comprising a core (10) and a sheath (20) encompassing the core (10). the core (10) as well as also the sheath (20) are constructed of high-strength filaments (11, 12, 21, 22). The core (10) is entwined with the filaments (21, 22) forming the sheath (20). the composite of the filaments (11, 12, 21, 22) is set by bonding by means of a fusion-adhesive yarn (19) placed parallel to the filaments (11, 12) forming the core (10). In this way a fishing line can be produced which meets the highest requirements and is simultaneously cost effective.
Abstract:
A cable structure includes a plurality of insulated conductors, an exterior jacket and at least one support member within the jacket and between the insulated conductors. Each support member is made of a material which has good thermal conductivity and which is rigid to resist crushing of the cable and damage to the conductors or their insulation. Variously shaped support members are disclosed.
Abstract:
A method for manufacturing a rope includes providing at least one pre-manufactured elongated load bearing member for the rope and at least one pre-manufactured elongated surface part for the rope, guiding together said at least one pre-manufactured elongated load bearing member and said at least one pre-manufactured elongated surface part such that their sides lean against each other, and fixing said at least one pre-manufactured elongated load bearing member and said at least one pre-manufactured elongated surface part to each other. A rope obtained with the method, and an elevator including the rope obtained with the method are also disclosed.
Abstract:
In a rope of a type of filling a resin constituting other member between strands, there is provided a wire rope for a running wire capable of promoting fatigue life by reducing a wire breakage at a point of being contacted to a core rope by precisely constraining a movement of a wire and reducing an elongation.A rope having a core rope and a plurality of pieces of side strands arranged at an outer periphery thereof and twisted together, and a resinous spacer interposed between the side strands, in which the core rope includes a rope main body and a resin coating layer outwardly surrounding the core rope main body, the core rope main body and the side strand are separated by the resin coating layer, and the resin spacer is provided with a contour in correspondence with an outer layer wire of the side strand and invades between the wires.
Abstract:
In order to improve visibility and hence to reduce the risk of accidents, a load-carrying rope, for example a wire rope, is equipped with a number of luminous elements. A luminous element may in this case assume the position of a wire or of a braid, may be integrated in an insert, or may be guided in the spaces between wires or braids and preferably within the theoretical rope circumference. The luminous element may also itself be composed of luminous elements which are twisted together, spiralled, or laid in so as to form braids. For strain relief, the luminous elements may be equipped with a reinforcement in the form of a strand, or with a mesh.