Abstract:
The present invention provides a tether (1) containing strands (2) comprising high strength fibers and a plurality of conductors (4), wherein each conductor (4) is separated from any other conductor along its length by at least one of said strands. The tether (1) can be used for transporting electrical power from a high altitude wind energy generator or a wave and tidal energy generator to a ground station.
Abstract:
A securing device is provided comprised of a reactive fiber component and at least one of a terminating fiber component and an initiating fiber component. The reactive fiber component includes at least one of the following: an undrawn polymer fiber and a substantially undrawn polymer fiber, wherein the first reactive fiber component is operative to stretch responsive to a load. The terminating fiber component is in a compressed state and is operative to elongate to a length at which the terminating fiber component is operative to prevent further stretching of the first reactive fiber component responsive to the load. The initiating fiber component is operative to break responsive to a predetermined force and permit the first reactive fiber component to stretch responsive to the load.
Abstract:
A rope structure adapted to engage an external structure comprising a primary strength component and a coating. The primary strength component comprises a plurality of fibers. The coating comprises a lubricant portion and a binder portion that fixes the lubricant portion relative to at least some of the fibers. The coating is applied to the primary strength component such that the lubricant portion reduces friction between adjacent fibers and reduces friction between fibers and the external structure.
Abstract:
A method for forming a helix rope for a trawl comprising the steps of: a) situating upon a portion of a rope a bead of a substance being selected from a group consisting of: (i) a liquid substance; and (ii) a semi-liquid substance. A helix rope (35) for forming portions of a pelagic trawl, the helix rope comprising a braided sheath (398) formed of greater than sixteen strands (397), whereby drag is reduced. A method for forming a high strength synthetic rope useful for towing warps, trawler warps, yachting ropes, mooring lines, anchoring lines, oil derrick anchoring lines, seismic lines, paravane lines, and any other uses for rope, cable or chain.
Abstract:
A rope assembly, according to various embodiments, comprises: (1) a braided rope comprising a plurality of braided strands; and (2) a rope fastener that is adapted to: (A) be attached to the braided rope adjacent a first end of the braided rope; (B) allow a user to selectively form a braided rope loop of a first particular circumference by fitting the rope fastener through the plurality of braided strands at a first particular location on the braided rope; and (C) allow a user to selectively form a braided rope loop of a second particular circumference by fitting the rope fastener through the plurality of braided strands at a second particular location on the braided rope. In various embodiments, the rope fastener is shaped for selectively preventing the rope fastener from returning through the plurality of braided strands after the rope fastener has been fitted through the plurality of braided strands.
Abstract:
A composite cable (10) including a tubular core (12), an outer textile fiber sheath (22) and at least one intermediate layer of a textile material (16, 18) disposed between a tubular core (12) and the outer sheath (22).
Abstract:
A fast rope, which includes a weighted core, a first braid surrounding the core, a second braid surrounding the first braid, and a third braid surrounding the second braid. The core is constructed from lead wires extruded over a polyester yarn, the first braid is strands of polypropylene, the second braid is strands of composite press material, and the third braid is strands of spun polyester.
Abstract:
A flexible abrasion resistant water shedding omnidirectionally reflective rope has a central low-density polymeric closed cell foam core comprising EPDM, Neoprene, SBR, NBR, EVA, PVC, PVC/NBR foam surrounded by cylindrically braided sleeve of reflective strips composed of narrow width reflective strips that comprise a woven or knitted narrow width strip and a flexible nylon retroreflective sheet sewn thereon and covered with abrasion resistant water shedding coating. The flexible retroreflective sheet is formed by thermally bonding corner cube, microsphere retroreflectors, or wide angle exposed retroreflective lenses to a flexible polymeric sheet. Due to its low-density foam core construction, the reflective rope floats on water and sheds water from the surface preserving omnidirectional reflectivity. The rope reflects light omnidirectionally over a large angle of acceptance and provides accurate illumination of the rope floating in water, location of a rope wound buoy and the like when used during dusk, fog or nighttime hours.
Abstract:
A colored suture includes an elongate woven braid of filaments including one or more ends made of an ultra high molecular weight polyethylene (UHMWPE). The suture also includes second and third ends which can be colorable or dyeable before or after incorporation into the elongate woven braid. This invention provides surgeons with improved recognition of suture ends in surgery by construction of a bi-colored co-braid with at least two ends of different color schemes or patterns braided into a UHMWPE construction. One of the colored ends runs continuously from one end of the suture to the other end. The other colored end can be colored only on one half of the end. This provides a suture with two distinguishable ends, while still maintaining a continuous line of color along the length of the suture.
Abstract:
A fire resistant rope and method of making the same. The fire resistant rope comprises a core, a jacket, and a fire retardant coating. The core comprises a plurality of strands. Each core strand comprises a plurality of core yarns, and each core yarn comprises a plurality of high tensile strength fibers. The jacket comprises a plurality of jacket strands. Each jacket strand comprises a plurality of jacket yarns and each jacket yarn comprises a plurality of high temperature resistant fibers. The fire retardant coating formed on at least one of the core and the jacket. The fire retardant coating expands when subjected to temperatures above a state-change level. At least a portion of the expanded coating inhibits transfer of heat to the core. The state-change level is below a failure temperature defined by the materials from which at least some of the fibers forming the core are formed.