Method of accomplishment of a hybrid cord
The present invention relates to a method of accomplishment of a hybrid cord comprising an inner layer ( 1 ) in steel cord, an intermediate layer ( 2 ) in a high module and high toughness fiber and an outer layer ( 3 ) in a Polyolefin fiber. The present invention also refers to its application in an 8 (4×2) cords braided hybrid cable or any other type of hybrid cable presenting another construction, in braided or twisted cables.
1. Hybrid cord comprising:
a steel cord inner layer spirally arranged;
a high modulus fibre intermediate layer that is spirally arranged over said inner layer; and
a polyolefin or a polypropylene or polyethylene fibre outer layer that is spirally arranged over said intermediate layer.
2. Hybrid cord according to claim 1 wherein said steel cord inner layer is formed by steel wire galvanized or not.
3. Hybrid cord according to claim 1 wherein said fibre intermediate layer is one among:
HMPE fibre (High Modulus Polyethylene)
LCP fibre (Liquid Crystal Polymer)
Aramid fibre (Aromatic Polyamide).
4. Hybrid cord according to claim 1 wherein said fibre outer layer is a protective and abrasion resistant layer between said fibre intermediate layer and metal surfaces.
5. The hybrid cord according to claim 1 wherein said intermediate layer is spirally arranged in an opposite configuration as said inner layer and wherein said outer layer is spirally arranged in an opposite configuration as said intermediate layer.
6. The hybrid cord according to claim 1 wherein said steel cord inner layer is about 60% by weight of the total weight of said hybrid cord and wherein said fibre intermediate layer is about 17% by weight of the total weight of said hybrid cord.
7. A hybrid cord comprising:
an inner layer of galvanized or non-galvanized steel wires spirally arranged;
an intermediate layer of high modulus fibre spirally arranged over said inner layer; and
an outer layer of polyolefin, polypropylene or polyethylene fibre spirally arranged over said intermediate layer.
8. The hybrid cord of claim 7 wherein said intermediate layer is made of HMPE fibre (High Modulus Polyethylene), LCP fibre (Liquid Crystal Polymer), or Aramid fibre (Aromatic Polyamide).
9. The hybrid cord of claim 7 wherein said outer layer is a protective and abrasion resistant layer between said intermediate layer and metal surfaces.
10. The hybrid cord of claim 7 wherein said intermediate layer is spirally arranged in an opposite configuration as said inner layer and wherein said outer layer is spirally arranged in an opposite configuration as said intermediate layer.
11. The hybrid cord of claim 7 wherein said steel cord inner layer is about 60% by weight of the total weight of said hybrid cord and wherein said fibre intermediate layer is about 17% by weight of the total weight of said hybrid cord.
12. A cable comprising:
a plurality of hybrid cords, each said hybrid cord having an inner layer of galvanized or non-galvanized steel wires spirally arranged; an intermediate layer of fibre high modulus spirally arranged over said inner layer; and an outer layer of polyolefin, polypropylene or polyethylene fibre spirally arranged over said intermediate layer.
13. The cable of claim 12 having a configuration wherein about fifty percent of each of said plurality of hybrid cords are twisted in a clockwise configuration and about fifty percent of each of said plurality of hybrid cords are twisted in a counter-clockwise configuration.
14. The cable of claim 12 wherein said plurality of hybrid cords is eight.
15. The cable of claim 14 wherein four of said plurality of hybrid cords are twisted in a clockwise configuration and four of said plurality of hybrid cords are twisted in a counter-clockwise configuration.
16. The cable of claim 15 having a braided arrangement of said clockwise configured hybrid cords and said counter-clockwise hybrid cords.