Pipeline of polar polymer and poleless polymer composing with metal reinforcement
A composite pipe, metal reinforcement technology, applied in rigid pipes, pipes, pipes/pipe joints/fittings, etc., can solve the problem of difficult bonding and compounding, and achieve the effect of reliable pipe network performance
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Embodiment 1
[0028] Fig. 1 has provided the figure of embodiment 1 of the present invention. Referring to Fig. 1, a φ160mm composite pipe network 1 composed of polar polymers and nonpolar polymers and a metal reinforcement skeleton is composed of three-way pipe fittings 2 and pipes 3 and 4. The pipe wall of the pipe fitting 2 is formed by bonding and coating the inner and outer surfaces of the graft-modified polyolefin continuum 5 with polar groups passing through the holes in the steel reinforcement skeleton 6 with holes. , a layer of non-polar polyolefin layer 7 is compounded on the surface of the inner layer of the pipe wall. The pipe walls of the pipes 3 and 4 are made of graft-modified polyolefin continuums 8 and 9 respectively passing through steel plates with holes and welded cylindrical skeletons 10 or latitudinal steel wires 11 wound radially. The steel wires 12 are welded to form a cylindrical framework 13 and are respectively bonded and clad with the cylindrical framework. A n...
Embodiment 2
[0031] figure 2 A schematic diagram of the pipe structure in Example 2 of the present invention is given. see figure 2 The structure of the skeleton 16 in the pipe 19 is the same as that of the tubular skeleton in Example 1, both of which are steel mesh welded tubular skeletons. The holes in the tubular skeleton are firmly bonded and covered with the skeleton to form a continuous pipe wall 17. The body is non-cross-linked temperature-resistant polyethylene (PE-RT) with polar groups (PE-RT DX800 produced by SK Company in South Korea). According to the following formula, use an extruder to extrude non-cross-linked temperature-resistant polyethylene The grafting rate is 0.5%-0.8%, 100 parts by mass, 2-5 parts of maleic anhydride (MAH), and 0.1-0.4 parts of peroxide grafting initiator (DCP). The inner layer of the pipe wall 17 is compounded with a non-polar non-crosslinked heat-resistant polyethylene layer 18. The pipe 13 is connected with pipe fittings of the same structure to ...
Embodiment 3
[0033] image 3 A schematic diagram of the pipe structure in Example 3 of the present invention is given. see image 3 In the pipe 20, there is a cylindrical metal reinforcement skeleton 21 formed by winding radial steel wires in the latitudinal direction and welding, and the continuum of the pipe wall 22 formed by firmly bonding and covering the metal skeleton through holes is a random structure with polar groups. Copolymerized polypropylene, the inner layer of the pipe wall 22 is compounded with a non-polar random copolymerized polypropylene (PP-R) layer 23 . Extrude and granulate with an extruder according to the following formula to obtain a polypropylene with a polar group with a graft rate of 0.4% to 0.7%. This polypropylene can be used to produce composite pipes for hot water pipe networks. At 80°C, 0.6Mpa long-term operation under conditions. The formula is: 100 parts of random copolymerized polypropylene (PP-R) produced by Beijing Yanshan Petrochemical Co., Ltd. 2...
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Abstract
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