Locked coil wire rope and capacity expansion framework
10640919 ยท 2020-05-05
Assignee
Inventors
- Zhongqu Huang (Guizhou, CN)
- Xiaogang Wang (Guizhou, CN)
- Xiaoyu He (Guizhou, CN)
- Zhiyuan Yan (Guizhou, CN)
- Nan Xia (Guizhou, CN)
Cpc classification
D07B2201/204
TEXTILES; PAPER
D07B1/10
TEXTILES; PAPER
D07B7/06
TEXTILES; PAPER
D07B1/08
TEXTILES; PAPER
International classification
D07B1/06
TEXTILES; PAPER
D07B1/10
TEXTILES; PAPER
Abstract
A locked coil wire rope includes a circular steel wire inner layer, a central metal core, and a Z-shaped steel wire outer layer. The central metal core has a structure of 119W, 119S, 126WS, 131WS, 131SW, 149SWS or 155SWS. The circular steel inner layer includes at least two circular steel wire layers, and a number of steel wires of circular steel wire layer is no less than 18. The Z-shaped steel wire outer layer includes at least one Z-shaped steel wire layer, and a number of steel wires of the Z-shaped steel wire layer is no less than 51. A capacity expansion framework is further disclosed.
Claims
1. A locked coil wire rope, comprising: a circular steel wire inner layer; a central metal core; a Z-shaped steel wire outer layer; and wherein the central metal core has a structure of 119W, 119S, 126WS, 131WS, 131SW, 149SWS or 155SWS; the circular steel inner layer comprises at least two circular steel wire layers, and each of the at least two circular steel wire layers has 18 or more steel wires; and the Z-shaped steel wire outer layer comprises at least one Z-shaped steel wire layer, and the Z-shaped steel wire layer has 51 or more steel wires.
2. The locked coil wire rope of claim 1, wherein the locked coil wire rope has a diameter of 130 mm and the central metal core has a structure of 131WS; the circular steel wire inner layer comprises seven circular steel wire layers; steel wires of the seven circular steel wire layers, from the inside out, are in a 18+24+30+36+42+42+48 form; the Z-shaped steel wire outer layer comprises three Z-shaped steel wire layers, and steel wires of the three Z-shaped steel wire layers, from the inside out, are in a 57+64+71 form.
3. The locked coil wire rope of claim 1, wherein the locked coil wire rope has a diameter of 120 mm and the central metal core has a structure of 131WS; the circular steel wire inner layer comprises six circular steel wire layers, and steel wires of the six circular steel wire layers, from the inside out, are in a 18+24+30+33+39+45 form; the Z-shaped steel wire outer layer comprises three Z-shaped steel wire layers, and steel wires of the three Z-shaped steel wire layers, from the inside out, are in a 51+58+65 form.
4. The locked coil wire rope of claim 1, wherein the central metal core and the circular steel wire inner layer individually have a tensile strength of 1870 MPa or more, and the Z-shaped steel wire outer layer has a tensile strength of 1770 MPa or more; a surface of the locked coil wire rope has a zinc-aluminium alloy coating with an aluminum content of more than 4.2% and a coating weight of more than 255 g/m.sup.2; and a surface of the zinc-aluminium alloy coating is unoiled.
5. The locked coil wire rope of claim 1, wherein a cross section of the steel wires of the Z-shaped steel wire layer has a structure selected from one of Z.sub.3, Z.sub.4, Z.sub.5, Z.sub.6, Z.sub.7 and Z.sub.8.
6. A capacity expansion framework for producing the locked coil wire rope of claim 1, wherein the capacity expansion framework comprises at least six spools, at least six spool axles and a framework body; the spools are arranged on the framework body through the spool axles; the framework body is provided with braking devices configured to brake the spools.
7. The capacity expansion framework of claim 6, wherein the framework body is further provided with at least one roller configured to deliver steel wires evenly.
8. The capacity expansion framework of claim 6, wherein each of the spool axles is arranged on the framework body through a gland, a screw and a nut.
9. The capacity expansion framework of claim 6, wherein shape, size and position of the spools and spacing between the spools are adapted to the framework body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present disclosure will be further described in detail below with reference to the accompanying drawings and specific embodiments.
(2)
(3)
(4)
REFERENCE NUMERALS
(5) 1, steel wires of Z-shaped steel wire outer layer; 2, steel wires of circular steel wire inner layer; 3, steel wires of central metal core; 4, gland; 5, braking device; 6, nut; 7, thimble sleeve; 8, roller; 10, framework body; 20, spool; 30, spool axle.
DETAILED DESCRIPTION OF EMBODIMENTS
(6) The present disclosure will be further described below with reference to specific embodiments.
(7)
(8) In an embodiment, the diameter of the locked coil wire rope is 130 mm, and the structure of the central metal core is 131WS. The circular steel wire inner layer optionally includes seven circular steel wire layers, and the steel wires of the seven circular steel wire layers, from the inside out, is in a 18+24+30+36+42+42+48 form (i.e., seven steel wire layers consisting of a layer of 18 steel wires, a layer of 24 steel wires, . . . and a layer of 48 steel wires). The Z-shaped steel wire outer layer optionally includes three Z-shaped steel wire layers, and the steel wires of the three Z-shaped steel wire layers, from the inside out, is in a 57+64+71 form. For specific applications, the structure of the central metal core can be 131SW, and the structure of steel wires of the locked coil wire rope, from the outside out, is optionally in a 71Z6+64Z6+57Z6+48+42+42+36+30+24+18+31SW form.
(9) In an embodiment, the diameter of the locked coil wire rope is 120 mm, and the structure of the central metal core is 131WS. The circular steel wire inner layer optionally includes six circular steel wire layers, and the steel wires of the six circular steel wire layers, from the inside out, is in a 18+24+30+33+39+45 form. The Z-shaped steel wire outer layer optionally includes three Z-shaped steel wire layers, and the steel wires of the three Z-shaped steel wire layers, from the inside out, is in a 51+58+65 form.
(10) In the above embodiments, the central metal core and the circular steel wire inner layer individually have a tensile strength of 1870 MPa or more, and the Z-shaped steel wire outer layer has a tensile strength of 1770 MPa or more. A surface of the locked coil wire rope has a zinc-aluminium alloy coating with an aluminum content of more than 4.2% and a coating weight of more than 255 g/m.sup.2. The surface of the zinc-aluminium alloy coating is unoiled. When implemented in this manner, the steel wires for the locked coil wire rope may be pre-coated.
(11) By way of example, a method of manufacturing the locked coil wire rope with a diameter of 130 mm includes the following steps:
(12) (1) Manufacture of Zinc-Aluminum Alloy-Coated Steel Wires
(13) Processing parameters of the zinc-aluminum alloy-coated steel wires: drawing steel wires with steel grade 82B; DV value: 120; diameter: 2.0-8.0 mm; zinc temperature: 44050 C.; zinc-aluminum alloy temperature: 45050 C.; working speed: 22 m/min for diameter of 2.58-3.05 mm; 16 m/min for diameter of 4.03-5.15 mm; and the thickness of zinc coating and aluminum content meet requirements of Class A of GB/T20492-2006 standard Zinc-5% aluminum mischmetal alloy-coated steel wire and steel wire strand.
(14) (2) Manufacture of Locked Coil Wire Rope
(15) Qualified zinc-aluminum alloy-coated steel wires are used to strand a core of 131SW on a tubular strander. A single strand of a circular wire then is separately stranded with a series of units. Finally a three-layer Z-shaped steel wire is closed using a closer. A wire separator is used in stranding and closing-up processes. Diameters of die holes of stranding dies are slightly smaller than the diameters of the strand and the steel wire rope by 0.5-2.0 mm. During stranding process, the tension of each wire is ensured to be even so that the steel wire rope is stranded tightly. The manufactured ZZZ- 130 mm zinc-aluminum alloy-coated locked coil wire rope has been tested by Testing Center, and all parameters meet the relevant standards and design requirements, which is suitable for spatial structure, large stadiums, tourism cableway, deep winding and other applications and is more competitive in the market.
(16) It should be understood that in some embodiments, the structure of the central metal core of the locked coil wire rope may be 126WS, 149SWS or 155SWS.
(17) In the manufacture of the above locked coil wire ropes, the central metal core is produced with the tubular strander in a one-stranding manner. A circular steel wire layer is then stranded with a series of multi-frame units by one stranding to form the circular steel wire inner layer. Finally, the Z-shaped steel wire layer is stranded layer by layer on a planetary closer. In specific implementations, the planetary closer may include six, eight or ten frames and each frame is provided with at least two spools.
(18) Since traditional closers can only accommodate a single large spool, an embodiment of the present invention further provides a capacity expansion framework to replace the traditional large spools. The capacity expansion framework is capable of producing the above locked coil wire ropes. By way of example, as shown in
(19) It should be understood that for those of ordinary skills in the art, improvements or variations can be made based on the above descriptions, and such improvements and variations fall within the scope of the appended claims.
(20) The embodiments are only illustrative of the present disclosure, and apparently the implementations are not limited by the above modes. The embodiments described herein and various modifications based on the ideas and technical solutions of the present disclosure fall within the scope of the present application.