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Tooth-shaped-section pressure-resisting armor layer for composite hoses

A technology of composite hose and armored layer, applied in the direction of hose, pipe, pipe/pipe joint/pipe fitting, etc., can solve the problems of increased creep of the inner lining layer, loss of cross-section interlocking function, etc., and achieve bending flexibility. Enhanced, flexible, and prevent slipping out of each other

Active Publication Date: 2013-02-13
CHINA NAT OFFSHORE OIL CORP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

After the compression armor layer is wound, there is a certain gap between the adjacent sections, which can ensure the flexibility of the hose, and the larger the gap between the adjacent sections, the better the bending flexibility of the layer, but it also brings There is a hidden danger, because the increase of the gap causes the increase of the creep of the inner liner, and when the bending is too large or the axial movement is too large, the movement between the adjacent sections is too large, and there is a gap between the adjacent sections. Possibility of slipping out of each other, resulting in loss of interlocking function of the sections

Method used

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  • Tooth-shaped-section pressure-resisting armor layer for composite hoses
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  • Tooth-shaped-section pressure-resisting armor layer for composite hoses

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Embodiment Construction

[0014] The present invention will be described in detail below in conjunction with the accompanying drawings and embodiments.

[0015] Such as figure 1 As shown, the composite hose structure involved in the present invention sequentially includes a skeleton layer 1, an inner lining layer 2, a compression armor layer 3, a first wear-resistant extruded layer 4, a first tensile strength layer from the inner layer to the outer layer. Armor layer 5 , second wear-resistant extruded layer 6 , second tensile armor layer 7 , third wear-resistant extruded layer 8 , heat insulating layer 9 , outer cladding layer 10 . Among them, the skeleton layer 1 is wound by interlocking steel strips, which is used to prevent the crushing of the inner lining layer 2, and the skeleton layer 1 transports fluid; the inner lining layer 2 is a sealing layer for conveying fluid, and the inner lining layer 2 is wound with a Layers can also be wound with multiple layers of anti-pressure armor layer 3, the an...

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Abstract

The invention relates to a tooth-shaped-section pressure-resisting armor layer for composite hoses. The tooth-shaped-section pressure-resisting armor layer is characterized by being formed by winding and interlocking a profiled bar, wherein the section of the profiled bar is tooth-shaped; the section comprises a girder; the girder comprises a first bottom wall and a second bottom wall along the length direction; an end tooth-shaped structure is integrally arranged at two ends of the second bottom wall toward the same side respectively; two middle tooth-shaped structures are arranged at intervals on the second bottom wall between the two end tooth-shaped structures; end depressed areas are formed between the middle tooth-shaped structures and the adjacent end tooth-shaped structures; a middle depressed area is formed between the two middle tooth-shaped structures; the two end tooth-shaped structures are bent toward the same side; middle tooth-shaped structures of an adjacent profiled bar are inserted into the end depressed areas of the profiled bar; end tooth-shaped structures of two adjacent profiled bars are inserted into the middle depressed area of the profiled bar; the adjacent profiled bars are mutually meshed. The tooth-shaped-section pressure-resisting armor layer has the advantages of strengthening the bending flexibility of the pressure resisting armor layers and effectively preventing the adjacent sections of the pressure resisting armor layers from mutually sliding out, thus being widely applied to the structure setting of the marine composite hoses.

Description

technical field [0001] The invention relates to an armor layer, in particular to a compression-resistant armor layer of a marine composite hose tooth-shaped section. Background technique [0002] Traditional and conventional submarine pipelines are mainly made of steel pipes, and the overall construction, installation and follow-up maintenance work cycle is long and expensive. In recent years, flexible composite pipelines that have emerged abroad have good corrosion resistance, strong adaptability to submarine topography, and fast laying speed. , low cost, not easy to wax and can be reused and other advantages began to be applied to the transportation of subsea oil, gas and water. Flexible composite pipes include adhesive composite hoses and non-adhesive composite hoses; among them, the adhesive composite hoses are generally extruded into one by a polymer layer and a metal reinforcement layer, and are used after extrusion molding through a special process. A higher bond str...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F16L11/12
Inventor 曹静陈严飞陈星李新仲谢彬沙勇周巍伟张恩勇宋平娜
Owner CHINA NAT OFFSHORE OIL CORP
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