Preparation method of asphalt concrete warm mixing rutting and cracking resisting agent

A kind of asphalt concrete, warm mixing technology, applied in the field of asphalt concrete additives, can solve the problems that it is difficult to take into account the high, low temperature and water damage performance of asphalt mixture, the fluidity of asphalt mixture is reduced, and the degree of compaction is insufficient, so as to improve workers The effect of working environment quality, improving softening point, and reducing processing procedures

Active Publication Date: 2017-07-04
SHANXI PROVINCIAL RES INST OF COMM +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Low temperature construction will have a water stability problem. The temperature is low, the fluidity of the asphalt mixture is reduced, it is not easy to compact, the degree of compaction is insufficient, the void ratio after compaction is too large, and water damage is prone to occur
Moreover, the function of the current warm mix agent is single, and it is difficult to take into account the high, low temperature and water damage performance of the asphalt mixture while satisfying the warm mix.

Method used

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  • Preparation method of asphalt concrete warm mixing rutting and cracking resisting agent
  • Preparation method of asphalt concrete warm mixing rutting and cracking resisting agent

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] 1) 80 parts by mass of modified polyethylene wax, 10 parts by mass of oxidized polyethylene wax, 5 parts by mass of Fischer-Tropsch wax, 5 parts by mass of hot-melt EVA and 1 part by mass of dicumyl hydroperoxide at 160°C Fully mix in the kettle, and react for 30 minutes to obtain a modified mixture;

[0028] 2) Then 3 parts by mass of ethylenediamine, 5 parts by mass of tallow amine, 1 part by mass of adipate, 4 parts by mass of n-butanol and 1 part by mass of tall oil are added to the above mixture for melt blending and control The temperature is 135-140°C, and then through the granulation tower to obtain the warm-mix anti-rutting agent.

Embodiment 2

[0030] 1) With 85 parts by mass of modified polyethylene wax, 10 parts by mass of epoxidized polyethylene wax, 5 parts by mass of Fischer-Tropsch wax, 5 parts by mass of abietic acid and 1.5 parts by mass of dicumyl hydroperoxide, at 160 ° C Fully mix in the reaction kettle, and react for 30 minutes to obtain the modified mixture;

[0031] 2) Then 2 parts by mass of fatty glycerol, 8 parts by mass of fatty acid amide, 1 part by mass of glycerol, 4 parts by mass of n-butanol and 1 part by mass of tall oil pitch are added to the above mixture, melt blending, and control The temperature is 135-140°C, and then through the granulation tower to obtain the warm-mix anti-rutting agent.

Embodiment 3

[0033] 1) With 85 parts by mass of modified polyethylene wax, 10 parts by mass of epoxidized polyethylene wax, 5 parts by mass of Fischer-Tropsch wax, 5 parts by mass of abietic acid and 1.5 parts by mass of dicumyl hydroperoxide, at 160 ° C Fully mix in the reaction kettle, and react for 30 minutes to obtain the modified mixture;

[0034] 2) Then 2 parts by mass of fatty glycerine, 8 parts by mass of pyrimethanil acetate, 1 part by mass of citric acid ester, 4 parts by mass of n-butanol and 1 part by mass of tall oil pitch are added to the above mixture for melting Blending, controlling the temperature at 135-140°C, and then passing through a prilling tower to obtain a warm-mix anti-rutting agent.

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Abstract

The invention relates to a preparation method of an asphalt concrete warm mixing rutting and cracking resisting agent. The preparation method concretely comprises the following steps: fully mixing wax, resin and a cross-linking agent in a reaction kettle to obtain a modifying mixture; and adding a surfactant, a plasticizer and assistant to the modifying mixture, carrying out melt blending, and granulating the mixture through a granulating tower or a rotary belt condensation granulator to obtain the warm mixing rutting and cracking resisting agent. Compared with the prior art, the preparation method disclosed in the invention has the advantages of simplicity in operation, easiness in industrial generation, facilitation of reduction of the mixing temperature and the compacting temperature of asphalt concrete, reduction of the discharge of harmful gases, improvement of the moisture resistance, and high-temperature viscosity reducing and low-temperature viscosity increasing effects on asphalt; and the prepared warm mixing rutting and cracking resisting agent obviously improves the softening point, the ductility and the 60 DEG C viscosity of the asphalt, reduces the mixing and lying temperature, and improves the rutting resistance, the low-temperature cracking resistance and the water damage resistance of the asphalt concrete.

Description

technical field [0001] The invention belongs to the technical field of asphalt concrete additives, and in particular relates to a preparation method of a warm-mix anti-rutting agent for asphalt concrete. Background technique [0002] The mixing temperature of ordinary asphalt is about 160 degrees, and that of modified asphalt is about 180 degrees. Under hot mixing conditions, too high temperature of asphalt will accelerate aging and affect road performance, and asphalt will emit toxic gases during heating. , the higher the temperature, the more discharged. The warm mix asphalt mixture mainly uses certain technical measures to make the asphalt well coated on the aggregate at a relatively low temperature, and has good bonding and lubricating effects, so that the asphalt can be used at a relatively low temperature. Stirring and construction at low temperature, while maintaining the performance of the mixture not lower than HMA. Currently on the market, the mixing technology t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B24/34C04B24/36
Inventor 赵队家马德崇赵云川王威丰功吉舒兴旺樊长昕李雪莲
Owner SHANXI PROVINCIAL RES INST OF COMM
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