Multilayer reinforced polymeric pipe and system of pipes for water transportation
09920861 · 2018-03-20
Assignee
Inventors
- Miron Isaakovich Gorilovskiy (Moscow, RU)
- Vladimir Vasilyevich Shvabauer (Moscow, RU)
- Aleksandr Yuryevich Shmelev (Moscow, RU)
- Vladislav Vitalyevich Kovriga (Moscow, RU)
- Sergey Vasilyevich Samoilov (Moscow, RU)
- Igor Vasilyevich Gvozdev (Moscow, RU)
Cpc classification
F24D2220/0285
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L9/123
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B32B2597/00
PERFORMING OPERATIONS; TRANSPORTING
F16L2011/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B32B27/12
PERFORMING OPERATIONS; TRANSPORTING
B32B5/028
PERFORMING OPERATIONS; TRANSPORTING
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
Y02E20/14
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16L9/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L11/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L9/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B32B27/12
PERFORMING OPERATIONS; TRANSPORTING
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to the design of a multilayer reinforced polymeric pipe. The multilayer reinforced polymeric pipe comprises a polymeric base layer, at least one barrier layer, at least one reinforcing layer, an adhesive layer and a protective layer. The adhesive layer is made from a material which does not adhere to a material of the reinforcing layer and forms channels for the reversible movement of the fibers of the reinforcing layer. The reinforcing layer is made of high-strength and high-modular polymeric fibers, preferably aramid, polyester, or polyethylene fibers. The barrier layer is made of polar and nonpolar polymers. The protective layer is made of polyethylene of medium density. A system of pipes for transportation of water, preferably hot water in district heating and water supply networks, consisting of two or more multilayer reinforced polymeric pipes.
Claims
1. A multilayer reinforced polymeric pipe comprising: a base layer; a protective layer; a reinforcing layer disposed between the base layer and the protective layer, the reinforcing layer comprising a mesh structure, the mesh structure comprising reinforcing fibers having longitudinal axes, the reinforcing fibers comprising aramid or polyester; and an adhesive layer that extends through the mesh structure of the reinforcing layer and adheres to layers surrounding the reinforcing layer, the layers comprising polyethylene, wherein the adhesive layer as adhered to the layers surrounding the reinforcing layer forms channels about the reinforcing fibers of the mesh structure so that the reinforcing fibers are capable of reversible axial displacement in the channels along the longitudinal axes with respect to the layers surrounding the reinforcing layer, while maintaining the mesh structure of the reinforcing layer and preventing damage to the layers surrounding the reinforcing layer.
2. The multilayer pipe of claim 1, wherein the polyethylene of the base layer is cross-linked or heat-resistant.
3. A system of pipes for transportation of water, the system comprising at least two multilayer pipes as recited in claim 2.
4. The multilayer pipe of claim 1, further comprising a barrier layer.
5. A system of pipes for transportation of water, the system comprising at least two multilayer pipes as recited in claim 4.
6. The multilayer pipe of claim 4, wherein the barrier layer comprises polar and nonpolar polymers.
7. A system of pipes for transportation of water, the system comprising at least two multilayer pipes as recited in claim 6.
8. The multilayer pipe of claim 1, wherein the reinforcing fibers of aramid or polyester are high-strength and high-modular.
9. A system of pipes for transportation of water, the system comprising at least two multilayer pipes as recited in claim 8.
10. The multilayer pipe of claim 1, wherein the protective layer comprises polyethylene of medium density.
11. A system of pipes for transportation of water, the system comprising at least two multilayer pipes as recited in claim 10.
12. The multilayer pipe of claim 1, wherein a thickness of the protective layer is at least 3 mm.
13. A system of pipes for transportation of water, the system comprising at least two multilayer pipes as recited in claim 12.
14. A system of pipes for transportation of water, the system comprising at least two multilayer pipes as recited in claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
DETAILED DESCRIPTION
(3) The technical result is achieved in the proposed multilayer reinforced polymeric pipe which includes a base polymeric layer, at least one barrier layer, at least one reinforcing layer, an adhesive layer and a protective layer, the adhesive layer being made of material which does not adhere to material of the reinforcing layer and forms channels for free movement of the reinforcing layer fibers.
(4) In the proposed pipe design the reinforcing layer fibers are capable of free and reversible axial displacement at fluctuations of the pipe size under the effect of changes in temperature and mechanical load.
(5) The base polymeric layer of the proposed pipe is made of cross-linked or heat-resistant polymer, preferably of polyethylene or polybutene.
(6) The reinforcing layer of the pipe is made of high-strength and high-modular polymeric fibers, preferably aramid, polyester, or polyethylene fibers. The reinforcing layer may consist of a mesh. It may be made by overlapping a few sequential layers of the mesh.
(7) The barrier layer providing resistance to oxygen diffusion and water vapors is made of polar and nonpolar polymers.
(8) The protective layer of the pipe is made of polyethylene of medium density. Thickness of the protective layer is at least 3 mm.
(9) There is proposed a pipe system for transportation of water, preferably hot water, in district heating and water supply networks, consisting of two or more multilayer reinforced polymeric pipes of the proposed design.
(10) Distinctions of the proposed design consist in that the barrier layer of the pipe is meshed with the reinforcing layer made of polymeric fibers, over the reinforcing layer there is applied the adhesive layer made of material which does not adhere to the reinforcing layer and forms channels for fibers of the reinforcing layer to be capable of free and reversible axial displacement at fluctuations of the pipe size under the effect of changes in temperature and mechanical load.
(11)
(12) The multilayer polymeric reinforced pipe contains a polymeric base layer (1), a barrier layer (2) against oxygen diffusion and water vapors, a reinforcing layer (3), an adhesive layer (4) which adheres to the pipe layers, except the reinforcing layer, and a protective layer (5).
(13) The multilayer polymeric reinforced pipe operates in the following way. Installation of a pipeline using a pipe of the proposed design is usually carried out under a scheme including rotations at different angles. When the pipe flexes, the reinforcing fibers and the base layer are displaced with respect to each other. After installation of the pipeline it is tested by increased pressure, when some change of the pipe sizes (its diameter and length) takes place. In course of the size change the pipe polymeric layers are displaced with respect to the reinforcing layer fibers as a result of different modulus of elasticity of the reinforcing layer material and the base layer material. After completion of the testing the testbed pressure is relieved, and reverse displacement of the reinforcing fibers with respect to the polymeric layer takes place. As a result of supply of a heat carrier (hot water), in course of transportation thereof and stoppage of the supply there takes place the same reversible displacement of the reinforcing fibers and the polymeric layers with respect to each other.
(14) The multilayer reinforced polymeric pipe under the invention provides free and reversible displacement of the polymeric layers and the reinforcing fibers with respect to each other in course of installation, test and operation thereof, which ensures a high level and stability of its operating characteristics during the working life.