Glass-plastic composite geogrid

A composite geotechnical and grid technology, applied in the field of construction, can solve problems affecting on-site construction and later effects, and achieve the effects of resisting biological erosion and climate change, improving adaptability, and improving comprehensive quality.

Inactive Publication Date: 2015-01-14
ANHUI JIEAOMAKE SYNTHETIC MATERIAL TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, the preparation of geogrid materials is relatively simple. Most of them are directly extruded from high molecular polymers and carbon black and other reinforcing agents. With the continuous development and progress of society, the research on soil environment, climate environment, etc. Or indirectly affect the on-site construction and post-effects, therefore, it is necessary to further improve the performance of the traditional simple geogrid;

Method used

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Examples

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Comparison scheme
Effect test

Embodiment 1

[0023] A glass-plastic composite geogrid, which is composed of the following raw materials in parts by weight:

[0024] High-density polypropylene 120, perchlorethylene resin 2, light-burned magnesium powder 4, blast furnace slag 10, polyacrylamide 0.3, rare earth additive 3, glass powder 3, saturated octadecylamide 0.6, barium metaborate 1, tetraboric acid Potassium 0.5, polyether glycol 2, simethicone 0.4, monobutyl tin oxide 0.3, anhydrous calcium chloride 2, methyl nylonate 1;

[0025] Described rare earth additive is made up of the following raw materials of weight part:

[0026] Boron carbide 40, rare earth chloride 6, attapulgite 18, silicic acid 15, aluminum tripolyphosphate 2-3, calcium acetate 1, phosphite 0.8, potassium carbonate 3, polyvinylpyrrolidone 0.4, silane coupling agent KH560 0.2 ,

[0027] Mix calcium acetate and attapulgite, ball mill evenly, add phosphite, keep stirring at 50°C for 6 minutes to obtain a mixture;

[0028] Add aluminum tripolyphosphate...

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Abstract

The invention discloses a glass-plastic composite geogrid. The glass-plastic composite geogrid is prepared from the following raw materials in parts by weight: 107-120 parts of high-density polypropylene, 2-3 parts of perchloro-ethylene resin, 2-4 parts of caustic-burned magnesia powder, 6-10 parts of blast furnace slag, 0.3-1 part of polyacrylamide, 2-3 parts of rare earth auxiliaries, 3-5 parts of glass powder, 0.6-1 part of saturated stearamide, 1-2 parts of barium metaborate, 0.5-1 part of potassium tetraborate, 1-2 parts of polyether glycol, 0.1-0.4 part of simethicone, 0.3-1 part of monobutyltin oxide, 1-2 parts of anhydrous calcium chloride and 1-2 parts of methyl ester nylon acid. According to the glass-plastic composite geogrid, the rare earth auxiliaries, which are formed by thoroughly mixing high-strength boron carbide with attapulgite and rare earth elements and further combining the mixture with a preservative calcium acetate and a stabilizer polyvinylpyrrolidone under the treatment action of a silane coupling agent, have excellent surface strength, toughness, weather fastness and corrosion resistance and good stability, and are capable of effectively improving the comprehensive quality of the finished product, the adaptability to the soil and the resistance to the ambient pressure.

Description

technical field [0001] The invention mainly relates to the construction field, in particular to a glass-plastic composite geogrid. Background technique [0002] At present, the preparation of geogrid materials is relatively simple. Most of them are directly extruded with reinforcing agents such as high molecular polymers and carbon black. With the continuous development and progress of society, the research on soil environment, climate environment, etc. Or indirectly affect the on-site construction and post-effects, therefore, it is necessary to further improve the performance of the traditional simple geogrid; [0003] Blast furnace slag is the waste discharged from the blast furnace when smelting pig iron, the main components are CaO, SiO 2 、Al 2 o 3 , my country produces a lot of blast furnace slag waste every year, which is widely used in highways, airports, foundation projects, railway ballast, concrete aggregate and asphalt pavement, etc., but no blast furnace s...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L23/06C08L27/24C08L39/06C08K13/06C08K9/06C08K3/38C08K3/16C08K3/34C08K3/32C08K5/098C08K3/26
CPCC08L23/12C08K2201/014C08L2201/08C08L2205/035C08L27/24C08L33/26C08L83/04C08L39/06C08K13/06C08K9/06C08K3/38C08K3/34C08K2003/327C08K5/098C08K2003/262
Inventor 叶磊
Owner ANHUI JIEAOMAKE SYNTHETIC MATERIAL TECH
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