Anti-corrosion and abrasion-resistant steel plastic surface pipeline
A surface pipeline, anti-corrosion and wear-resistant technology, applied to pipes, rigid pipes, pipes/pipe joints/fittings, etc., can solve problems such as limitations in high temperature resistance, partial wear of sucker rods, etc., and achieve high wear resistance and good performance. High self-lubricating properties and fatigue strength
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Embodiment 1
[0034] (1) Weigh the following raw materials in parts by weight: 100 parts of ultra-high molecular weight polyethylene, 1 part of polypropylene, 2,5-dimethyl-2,5-bis(tert-butyl peroxide)-3-hexyne 2 2 parts, 2 parts of acrylic siloxane, 1 part of aluminum oxide, 2 parts of glass beads, 2 parts of glass fiber, 1 part of molybdenum disulfide, 1 part of acicular wollastonite, and 1 part of diatomaceous earth. In this embodiment, the viscosity-average molecular weight of the ultra-high molecular weight polyethylene is about 1.6 million, and the polypropylene is a copolymerized polypropylene with a melt index of 5 g / min.
[0035] (2) Mix the raw materials weighed in step (1) evenly in a high-speed mixer to obtain a mixture;
[0036] (3) Add the mixture to the extruder, feed 1 part by weight of sulfur dioxide during the extrusion process, and add it to the molding die after extrusion to obtain an ultra-high molecular weight polyethylene lined pipe after molding. The extrusion temper...
Embodiment 2
[0038] (1) Weigh the following raw materials in parts by weight: 100 parts of ultra-high molecular weight polyethylene, 3 parts of polypropylene, 2,5-dimethyl-2,5-bis(tert-butyl peroxide)-3-hexyne 4 4 parts of vinyl siloxane, 2 parts of aluminum oxide, 1 part of glass microspheres, 2 parts of glass fiber, 2 parts of molybdenum disulfide, 1 part of acicular wollastonite, and 2 parts of diatomaceous earth. In this embodiment, the viscosity-average molecular weight of the ultra-high molecular weight polyethylene is about 1.9 million, and the polypropylene is a copolymerized polypropylene with a melt index of 5 g / min.
[0039] (2) Mix the raw materials weighed in step (1) evenly in a high-speed mixer to obtain a mixture;
[0040] (3) Add the mixture to the extruder, feed 2 parts by weight of sulfur dioxide during the extrusion process, and add it to the molding die after extrusion to obtain an ultra-high molecular weight polyethylene lined pipe after molding. The extrusion temper...
Embodiment 3
[0042] (1) Weigh the following raw materials in parts by weight: 100 parts of ultra-high molecular weight polyethylene, 2 parts of polypropylene, 2,5-dimethyl-2,5-bis(tert-butyl peroxide)-3-hexyne 3 Parts, 2 parts of tetramethyltetravinyl cyclotetrasiloxane, 1 part of aluminum oxide, 1 part of glass microspheres, 2 parts of glass fiber, 2 parts of molybdenum disulfide, 1 part of acicular silica lime, diatomaceous earth 2 servings. The viscosity-average molecular weight of the ultra-high molecular weight polyethylene in this embodiment is about 1.8 million, and the polypropylene is a copolymerized polypropylene with a melt index of 5 g / min.
[0043] (2) Mix the raw materials weighed in step (1) evenly in a high-speed mixer to obtain a mixture;
[0044](3) Add the mixture to the extruder, feed 2 parts by weight of sulfur dioxide during the extrusion process, and add it to the molding die after extrusion to obtain an ultra-high molecular weight polyethylene lined pipe after mold...
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