The present invention relates to a mountaineering rope construction and manufacturing method therefor.
For mountain climbing purpose, dynamic ropes with diameter of 10.1 mm to 10.8 mm made of synthetic fibres are mostly used. Important features of the mountaineering rope (further only rope) are light weight and thin diameter, static strength, resistance to dynamic stress and wear resistance for which the thickness of the rope braiding is crucial. The rope with standard diameter has a core involving the number of yarns consistent with both the static strength and the resistance to dynamic stress required. The rope braiding has been made using a circular braiding machine having 48 carrier used in pairs, so-called tandem. Each carrier carries a yarn with the linear density of 3300-5000 dtex. The system with 48 carrier, where each of them is the carrier of one yarn, is the most suitable for making the rope with diameter 10.1 mm to 10.8 mm. The rope like this has the diameter required and thickness of the braiding which is necessary for harder wear resistance of the rope. A disadvantage of these ropes is their heavier weight.
With the aim of reducing the rope weight, compared with the standard rope above mentioned, the rope diameter has to be reduced. Then the number of core yarns is chosen so that to achieve the necessary static strength and resistance to dynamic stress. The rope braiding has been made using the circular braiding machine having 48 carrier used in pairs, so called tandem. Each carrier carries a yarn with the linear density of 2500 dtex to 3800 dtex, which allows creating the inner diameter of the braiding corresponding with the core diameter. The rope like this has the sufficient static strength and resistance to dynamic stress, light weight, compact construction and thinner diameter than the standard rope. Its disadvantage is small thickness of the rope braiding as well as the low wear resistance of the rope resulting in its shorter lifetime.
Above mentioned disadvantages can be eliminated by the mountaineering rope having the diameter 10.1 mm to 10.8 mm made according to a preferred embodiment of the present invention. Its nature is that the rope core consisting braided or twisted cords and having such number of yarns so as to achieve the necessary static strength and resistance to dynamic stress of the rope, has the same diameter as the core of the standard rope with lighter weight. The rope braiding is made using the circular braiding machine having 44 carrier used in pairs, so-called the tandem. Each carrier carries a yarn having the linear density 1500 dtex to 6000 dtex. The rope braiding has the same thickness as the standard rope braiding.
The method of making the mountaineering rope according to a preferred embodiment of the comprises manufacturing a core from braided or twisted cords having the number of yarns necessary for obtaining required static strength and resistance to dynamic stress. Its diameter is the same as the diameter of the standard rope with lighter weight. Then using the circular braiding machine with 44 carrier used in pairs, so-called the tandem, the rope braiding is made around the core having the same thickness as the thickness of the standard rope braiding. The yarn on each carrier has the linear density 1500 dtex to 6000 dtex. Each carrier is the carrier of one, two or three yarns.
The rope according to a preferred embodiment of the invention has necessary static strength and resistance to dynamic stress, satisfactory compactness of the core and braiding design, light weight and harder wear resistance resulting in the long lifetime.
The standard rope 1 with the diameter D1=10.1-10.8 mm (
In
Mountaineering rope 7 according to a preferred embodiment of the invention (
The rope design according to the invention will also have an application in speleology, in works on high or above free depth, in rope access and rescue.
Number | Date | Country | Kind |
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PV 2001-1715 | May 2001 | CZ | national |
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Number | Date | Country | |
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20020170417 A1 | Nov 2002 | US |