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Antibacterial polyvinyl chloride plastic tube and preparation method thereof

A technology for polyvinyl chloride and plastic pipes is applied in the field of pipes, which can solve the problems of bonding, less groups, and carbon nanotubes dispersed in carbon nanotubes, so as to achieve the effects of improving antibacterial and anticorrosion properties, prolonging service life and improving mechanical strength.

Inactive Publication Date: 2016-07-20
安徽玉发塑业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Since carbon nanotubes can improve the mechanical properties, electrical properties and other properties of composite materials, carbon nanotube / rubber composites have attracted more and more attention. In order to achieve the purpose of strengthening, there are two problems to be solved: one is Dispersion of carbon nanotubes, another problem is the interface between carbon nanotubes and the matrix. Since the surface of carbon nanotubes is relatively inert, and the specific surface area is relatively large, it is easy to cause agglomeration, so the effect of carbon nanotubes reinforced polymers is not very obvious. Based on For this reason, many people began to treat carbon nanotubes physically or chemically. Among these methods, the method of acid treatment to generate oxygen-containing groups is a common and efficient method, because it can provide effective reaction sites, so as to interact with the matrix. Resin achieves chemical bond connection, but, in most cases, this method often produces very few groups, which cannot provide enough connection and matrix bonding;

Method used

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Embodiment Construction

[0024] A kind of antibacterial polyvinyl chloride plastic pipe, it is made up of the raw material of following parts by weight:

[0025] Isothiazolinone 0.1, polybenzimidazole 0.7, calcium propionate 2, alkanolamide 0.1, palm wax 1, dibutyl maleate 3, polyoxypropylene glyceryl ether 0.2, sodium diacetate 1, carbon nanotube 3 , 90% sulfuric acid 40, 95% nitric acid 60, acryloyl chloride 1, 1,4 dioxane 0.01, azobisisobutyronitrile 0.2, hydroxyethyl acrylate 6, triethylamine 7, liquid EPDM Rubber 10, dicumyl peroxide 1, polyvinyl chloride 100, attapulgite 10.

[0026] A kind of preparation method of described antibacterial polyvinyl chloride plastic pipe, comprises the following steps:

[0027] (1) Add the above-mentioned alkanolamide to deionized water 40 times its weight, stir evenly, add 60% of the weight of attapulgite, keep stirring at 80°C for 10 minutes, mix with the above-mentioned carbon nanotubes, and stir to room temperature , filtered with suction, washed the filter...

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Abstract

The invention discloses an antibacterial polyvinyl chloride plastic tube and a preparation method thereof. The antibacterial polyvinyl chloride plastic tube consists of the following raw materials in parts by weight: 0.1-0.2 part of isothiazolinone, 0.7-1 part of polybenzimidazole, 2-3 parts of calcium propionate, 0.1-0.3 part of alkanolamide, 1-3 parts of palm wax, 3-5 parts of dibutyl maleate, 0.2-0.4 part of polypropylene oxide glyceryl ether, 1-2 parts of sodium diacetate, 3-4 parts of carbon nanotubes, 40-60 parts of 90-93% sulfuric acid, 60-70 parts of 95-97% nitric acid, 1-2 parts of acryloyl chloride, 0.01-0.02 part of 1,4-dioxane, 0.2-0.3 part of azodiisobutyronitrile, 6-10 parts of hydroxyethyl acrylate, 7-8 parts of triethylamine, 10-14 parts of a liquid ethylene propylene diene monomer, 1-1.2 parts of dicumyl peroxide, 100-120 parts of polyvinyl chloride and 10-15 parts of attapulgite. By adopting the antibacterial polyvinyl chloride plastic tube, the antibacterial and anti-corrosion properties of a finished tube product are effectively improved, the adaptability of the tube to the environment is improved, and the service life of the tube is prolonged.

Description

technical field [0001] The invention relates to the technical field of pipes, in particular to an antibacterial polyvinyl chloride plastic pipe and a preparation method thereof. Background technique [0002] Carbon nanotubes have strong axial strength, toughness and elastic modulus. After theoretical calculations, it is concluded that the Young's modulus of carbon nanotubes can reach 5TPa, which is an order of magnitude higher than that of ordinary fibers; its theoretical tensile strength is 50- 20OGPa, which is 100 times that of steel, but the density is only one-sixth of steel. In addition, the hollow cage-like structure of carbon nanotubes can undergo a certain volume deformation when subjected to strong external forces, and then shows good flexibility. It can be regarded as a very excellent fiber, and the tension and strain of carbon nanotubes will not show brittle fracture, plastic deformation fracture or bond fracture, so the structure of carbon nanotubes is stronger t...

Claims

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Application Information

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IPC IPC(8): C08L27/06C08L23/16C08L79/04C08K13/06C08K9/02C08K9/04C08K7/24C08K3/34C08K5/47C08K5/09C08K5/098
CPCC08K2201/011C08L27/06C08L2203/18C08L2205/035C08L23/16C08L79/04C08K13/06C08K9/02C08K9/04C08K9/08C08K7/24C08K3/346C08K5/47C08K5/09C08K5/098
Inventor 舒峰季琨姚艳芳张宗运王克兰舒玉法胡克文马勇
Owner 安徽玉发塑业有限公司
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