Abstract:
A compositie cable ( 10) including a tubular core ( 12) an outer textile fiber sheath (22) and at least one intermediate la\ er of a textile material ( 16 18) disposed between a tubular core (12 ) and the outer sheath (22).
Abstract:
Die Erfindung betrifft ein Seil aus textilem Fasermaterial, welches in an sich bekannter Weise in einer Mantel/Kern-Konstruktion vorliegt. Das erfmdungsgemäße Seil ist dadurch gekennzeichnet, dass die spezifische Festigkeit des Seils F S (in [daN/g Kern/m Seil]) in Abhängigkeit vom Durchmesser des Seils DM (in [mm]) folgender Formel genügt: F S ≥ 212 - DM.
Abstract:
A clamped connection (10) couples together at least first and second sections (12, 14) of at least one line (11) which mesh mechanically. The clamped connection (10) includes a ferrule (16) which receives the sections (12, 14), and a gripping pad (22) situated between them. Swaging the ferrule (16) meshes the sections (12, 14) through the gripping pad (22) so compressive forces applied to the sections (12, 14) required to prevent their slippage relative to one another are reduced, and breaking strength retention of the line (11) is improved. A method for forming the clamped connection includes the steps of: (i) situating within the ferrule (16) the two sections (12, 14); (ii) situating the gripping pad (22) within the ferrule (16) between the sections (12, 14); and (iii) swaging the ferrule (16).
Abstract:
A clamped connection (10) couples together at least first and second sections (12, 14) of at least one line (11) which mesh mechanically. The clamped connection (10) includes a ferrule (16) which receives the sections (12, 14), and a gripping pad (22) situated between them. Swaging the ferrule (16) meshes the sections (12, 14) through the gripping pad (22) so compressive forces applied to the sections (12, 14) required to prevent their slippage relative to one another are reduced, and breaking strength retention of the line (11) is improved. A method for forming the clamped connection includes the steps of: (i) situating within the ferrule (16) the two sections (12, 14); (ii) situating the gripping pad (22) within the ferrule (16) between the sections (12, 14); and (iii) swaging the ferrule (16).
Abstract:
A rope with high stiffness and breaking strength is provided. The rope is produced by providing a stiff core (1) and fibre rope jacket (4) surrounding the core and by changing the phase condition of the core while stretching the rope, such that inside vacancies between the fibre rope jacket (4) and the core (1)are eliminated permanently. A method and apparatus for producing such rope are provided, wherein the core (1) is heated up and stretched such that it will be permanently elongated. In a preferred embodiment the thermoplastic core (1) changes from solid phase to liquid phase by means of heating. While in liquid phase the core material adapts to the encapsulating space of the surrounding sheet. The rope is then cooled down under tension until the core has returned to solid phase.
Abstract:
Sleeves (10) of braided monofilament formed from resilient materials are fabricated incorporating flexible, non-resilient (i.e. relatively limp) multifilament warp yarns. Monofilaments braided from strands (11, 12) of high modulus engineered plastic materials provide enhanced pushbak and springback properties in sleeves formed of the braided material and the incorporation of relatively limp warp yarns such as spun or texturised yarns impart body, coverage and improved tensile strength without sacrifice of springback properties. "Loopies" which are characteristic of the use of monofilament warp yarns are avoided.