Quick-setting cement-based repairing material and preparation method thereof

By developing a fast-setting cement-based repair material, using low-viscosity epoxy resin and specific fillers to reduce the linear expansion coefficient, the problems of long curing cycle and large viscosity of repair materials in the prior art are solved, and the repair effect of high bonding and durability is achieved.

CN119977417AActive Publication Date: 2025-05-13XI'AN UNIVERSITY OF ARCHITECTURE AND TECHNOLOGY
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Patent Information

Application Number
CN202510309943.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2025-05-13
Estimated Expiration
2045-03-17

AI Technical Summary

Technical Problem

The conventional silicate cement concrete materials used in road repair in the prior art have a long curing cycle and long road closure time, which affects smooth traffic. The epoxy resin has a large viscosity and short gelling time, making it difficult to effectively repair small-width cracks.

Method used

Develop a fast-setting cement-based repair material, using low-viscosity epoxy resin, epoxy polyurethane, diluent, iron tailings sand, ceramic powder, medium sand and curing agent as raw materials, and use specific preparation steps to make low-viscosity epoxy resin, combined with iron tailings sand and ceramic powder to reduce the linear expansion coefficient and improve bonding.

Benefits of technology

The material has a lower viscosity, can better enter small-width cracks, have high bonding strength, and good bonding properties, which reduces the difference in linear expansion coefficient between the repair material and the original road, and improves the durability of use.

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Abstract

The invention discloses a quick-setting cement-based repairing material and a preparation method thereof, and belongs to the technical field of light building materials, the quick-setting cement-based repairing material comprises the following raw materials by weight: 100-120 parts of low-viscosity epoxy resin, 5-8 parts of epoxy polyurethane, 5-10 parts of a diluent, 50-80 parts of iron tailing sand, 80-100 parts of ceramic powder, 300-500 parts of medium sand, and 30-50 parts of a curing agent; the added iron tailing sand and ceramic powder can reduce the linear expansion coefficient of the repairing material, so that the linear expansion coefficient of the repairing material is closer to the linear expansion coefficient of original road concrete, the bonding property of the repairing material and an original road can be improved, and the use durability is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of lightweight building materials, and in particular to a quick-setting cement-based repair material and a preparation method thereof. Background Art

[0002] In recent years, the transportation and logistics industries have developed rapidly, and the load on roads has become increasingly heavy, and damage has become more and more frequent. Road damage often starts from a small part. If it is not repaired in time, it may cause traffic accidents and larger areas of damage. Therefore, road repair projects are one of the important tasks of municipal engineering and road management departments. Road repair materials play a decisive role in the entire repair process and repair effect. For cement concrete roads, if the existing ordinary silicate cement concrete materials are used for repair, there will be problems such as long maintenance cycles and long road closures, which seriously affect smooth traffic. Therefore, it is very important to use repair materials with fast-hardening and early-strengthening characteristics to repair roads. Epoxy resin mortar, as a material with fast hardening, high strength, good adhesion and strong corrosion resistance, is an ideal road repair material.

[0003] However, due to the high viscosity of epoxy resin, excessive viscosity means that the fluidity of the repair material is poor. For cracks with relatively small widths, it is difficult for the repair material to enter the cracks, resulting in the repair material and the crack interface not being bonded together; the shorter gel time means that in actual construction operations, the time given for construction operations is shorter. Summary of the invention

[0004] In order to solve the above technical problems, the present invention provides a quick-setting cement-based repair material and a preparation method thereof.

[0005] The purpose of the present invention can be achieved through the following technical solutions: A quick-setting cement-based repair material comprises the following raw materials in parts by weight: 100-120 parts of low-viscosity epoxy resin, 5-8 parts of epoxy polyurethane, 5-10 parts of diluent, 50-80 parts of iron tailings sand, 80-100 parts of ceramic powder, 300-500 parts of medium sand, and 30-50 parts of curing agent; The low-viscosity epoxy resin is prepared by the following steps: Step S1, adding cardanol and zinc acetate into a three-necked flask, introducing nitrogen to expel air, heating to 80-90° C., slowly dropping a 35% by mass aqueous formaldehyde solution, and keeping the temperature and reacting for 4 hours after the addition is completed. After the reaction is completed, washing the obtained product with 55° C. deionized water three times to obtain a reaction product 1; In step S1, cardanol is first condensed with formaldehyde to prepare a reaction product 1; Step S2, adding the obtained reaction product 1 and epichlorohydrin into a four-necked flask, adding tetrabutylammonium bromide, introducing nitrogen to expel air, stirring at a uniform speed and heating to 90-95° C., keeping the temperature for reaction for 4 hours, cooling to 60° C. after the reaction is completed, adding sodium hydroxide, and continuing the reaction for 3 hours. After the reaction is completed, washing the obtained product with deionized water until it is neutral and then rotary distilling to obtain reaction product 2; In step S2, the reaction product 1 reacts with epichlorohydrin to introduce epoxy groups to prepare an intermediate product 2, which is an epoxy resin containing a cardanol structure.

[0006] Step S3, adding the reaction product 2 and KH570 to N,N-dimethylformamide, raising the temperature to 55-65° C., adding azobisisobutyronitrile, stirring at a uniform speed and reacting for 4-6 hours, and obtaining a low-viscosity epoxy resin after the reaction is completed.

[0007] In step S3, azobisisobutyronitrile is used as an initiator to polymerize reaction product 2 and KH570, and siloxane is introduced into the structure of reaction product 2 to obtain a low-viscosity epoxy resin. On the one hand, the epoxy resin structure has a cardanol structure. The internal plasticizing effect of the cardanol C15 alkyl chain makes the epoxy resin have a lower viscosity, which is more suitable for the application of repair materials. On the other hand, the introduced siloxane structure can be hydrolyzed and then attached to the surface of the filler, thereby improving the compatibility of the inorganic filler and the epoxy resin and ensuring the uniform performance of the system.

[0008] Furthermore, the diluent is anhydrous ethanol or ethyl acetate.

[0009] Furthermore, the curing agent is phenalkamine T31 or polyamide resin.

[0010] Furthermore, in step S1, the dosage ratio of cardanol, zinc acetate and formaldehyde aqueous solution is controlled to be 1-2 g: 0.015-0.02 g: 15-25 mL.

[0011] Furthermore, in step S2, the dosage ratio of the reaction product 1, epichlorohydrin, sodium hydroxide and tetrabutylammonium bromide is controlled to be 0.5-1g:2-3g:0.2-0.4g:20mL.

[0012] Furthermore, in step S3, the dosage ratio of the reaction product 2, KH570, azobisisobutyronitrile and N,N-dimethylformamide is controlled to be 1-2 g: 0.5-1.2 g: 0.08-0.12 g: 10 mL.

[0013] A method for preparing a quick-setting cement-based repair material comprises the following steps: The raw materials are mixed, stirred evenly, and solidified to obtain a cement-based repair material.

[0014] Beneficial effects of the present invention: The invention prepares a quick-setting cement-based repair material. The linear expansion coefficient of the repair material can be reduced by adding iron tailings sand and ceramic powder, so that the linear expansion coefficient of the repair material is closer to that of the original road concrete, and the combination of the repair material and the original road can be improved, and the durability of use can be improved. In addition, a low-viscosity epoxy resin is prepared. On the one hand, the epoxy resin structure has a cardanol structure. The internal plasticization effect of the cardanol C15 alkyl chain makes the epoxy resin have a lower viscosity and is more suitable for the application of the repair material. On the other hand, the introduced siloxane structure can be hydrolyzed and then attached to the surface of the filler, thereby improving the compatibility of the inorganic filler and the epoxy resin and ensuring the uniform performance of the system. In addition, the present application also adds an epoxy polyurethane, which has good compatibility with low-viscosity epoxy resin, so that the epoxy polyurethane has a good toughening effect. DETAILED DESCRIPTION

[0015] The technical solutions in the embodiments of the present invention are described clearly and completely below. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0016] Example 1: A quick-setting cement-based repair material, comprising the following raw materials in parts by weight: 100 parts of low-viscosity epoxy resin, 5 parts of epoxy polyurethane (refer to Preparation and Performance Study of Epoxy Resin Toughened and Modified by End-Epoxy Polyurethane, Tan Yanfang, Zhao Haipeng, etc.), 5 parts of diluent, 50 parts of iron tailings sand, 80 parts of ceramic powder, 300 parts of medium sand, and 30 parts of curing agent; A method for preparing a quick-setting cement-based repair material comprises the following steps: The raw materials are mixed, stirred evenly, and solidified to obtain a cement-based repair material.

[0017] The low-viscosity epoxy resin is prepared by the following steps: Step S1, add cardanol and zinc acetate into a three-necked flask, introduce nitrogen to expel air, heat to 80°C, slowly drop 35% formaldehyde aqueous solution by mass, keep warm and react for 4 hours after the addition is completed, wash the obtained product three times with 55°C deionized water to obtain reaction product 1, and control the amount ratio of cardanol, zinc acetate and formaldehyde aqueous solution to be 1g:0.015g:15mL; Step S2, adding the obtained reaction product 1 and epichlorohydrin into a four-necked flask, adding tetrabutylammonium bromide, introducing nitrogen to expel air, stirring at a uniform speed and heating to 90° C., keeping the temperature for reaction for 4 hours, cooling to 60° C. after the reaction is completed, adding sodium hydroxide, and continuing the reaction for 3 hours. After the reaction is completed, washing the obtained product with deionized water until it is neutral and then rotary evaporating to obtain reaction product 2, and controlling the amount ratio of reaction product 1, epichlorohydrin, sodium hydroxide and tetrabutylammonium bromide to be 0.5g:2g:0.2g:20mL; Step S3, adding the reaction product 2 and KH570 to N, N-dimethylformamide, heating to 55°C, adding azobisisobutyronitrile, stirring at a uniform speed and reacting for 4-6 hours, and obtaining a low-viscosity epoxy resin after the reaction is completed, and controlling the amount ratio of the reaction product 2, KH570, azobisisobutyronitrile and N, N-dimethylformamide to be 1g:0.5g:0.08g:10mL.

[0018] The diluent is anhydrous ethanol or ethyl acetate.

[0019] The curing agent is phenalkamine T31 or polyamide resin.

[0020] Example 2: A quick-setting cement-based repair material, comprising the following raw materials in parts by weight: 110 parts of low-viscosity epoxy resin, 6 parts of epoxy polyurethane (refer to Preparation and Performance Study of Epoxy Resin Toughened and Modified by End-Epoxy Polyurethane, Tan Yanfang, Zhao Haipeng, etc.), 8 parts of diluent, 60 parts of iron tailings sand, 90 parts of ceramic powder, 400 parts of medium sand, and 40 parts of curing agent; A method for preparing a quick-setting cement-based repair material comprises the following steps: The raw materials are mixed, stirred evenly, and solidified to obtain a cement-based repair material.

[0021] The low-viscosity epoxy resin is prepared by the following steps: Step S1, add cardanol and zinc acetate into a three-necked flask, introduce nitrogen to expel air, heat to 85°C, slowly drop 35% formaldehyde aqueous solution by mass, keep warm and react for 4 hours after the addition is completed, wash the obtained product three times with 55°C deionized water to obtain reaction product 1, and control the amount ratio of cardanol, zinc acetate and formaldehyde aqueous solution to be 1.5g:0.018g:20mL; Step S2, adding the obtained reaction product 1 and epichlorohydrin into a four-necked flask, adding tetrabutylammonium bromide, introducing nitrogen to expel air, stirring at a uniform speed and heating to 94° C., keeping the temperature for reaction for 4 hours, cooling to 60° C. after the reaction, adding sodium hydroxide, and continuing the reaction for 3 hours. After the reaction, washing the obtained product with deionized water until neutral and then rotary evaporating to obtain reaction product 2, and controlling the amount ratio of reaction product 1, epichlorohydrin, sodium hydroxide and tetrabutylammonium bromide to be 0.8 g:2.5 g:0.3 g:20 mL; Step S3, adding the reaction product 2 and KH570 to N, N-dimethylformamide, heating to 60°C, adding azobisisobutyronitrile, stirring at a uniform speed and reacting for 5 hours, and obtaining a low-viscosity epoxy resin after the reaction is completed, and controlling the amount ratio of the reaction product 2, KH570, azobisisobutyronitrile and N, N-dimethylformamide to be 1.5g:1g:0.1g:10mL.

[0022] The diluent is anhydrous ethanol or ethyl acetate.

[0023] The curing agent is phenalkamine T31 or polyamide resin.

[0024] Example 3: A quick-setting cement-based repair material, comprising the following raw materials in parts by weight: 20 parts of low-viscosity epoxy resin, 8 parts of epoxy polyurethane (refer to Preparation and Performance Study of Epoxy Resin Toughened and Modified by End-Epoxy Polyurethane, Tan Yanfang, Zhao Haipeng, etc.), 10 parts of diluent, 80 parts of iron tailings sand, 100 parts of ceramic powder, 500 parts of medium sand, and 50 parts of curing agent; A method for preparing a quick-setting cement-based repair material comprises the following steps: The raw materials are mixed, stirred evenly, and solidified to obtain a cement-based repair material.

[0025] The low-viscosity epoxy resin is prepared by the following steps: Step S1, add cardanol and zinc acetate into a three-necked flask, introduce nitrogen to expel the air, heat to 90°C, slowly drop 35% formaldehyde aqueous solution by mass, keep warm and react for 4 hours after the addition is completed, wash the obtained product with 55°C deionized water three times to obtain reaction product 1, and control the amount ratio of cardanol, zinc acetate and formaldehyde aqueous solution to 2g:0.02g:25mL; Step S2, adding the obtained reaction product 1 and epichlorohydrin into a four-necked flask, adding tetrabutylammonium bromide, introducing nitrogen to expel air, stirring at a uniform speed and heating to 95° C., keeping the temperature for reaction for 4 hours, cooling to 60° C. after the reaction, adding sodium hydroxide, and continuing the reaction for 3 hours. After the reaction, washing the obtained product with deionized water until neutral and then rotary evaporating to obtain reaction product 2, and controlling the amount ratio of reaction product 1, epichlorohydrin, sodium hydroxide and tetrabutylammonium bromide to be 1g:3g:0.4g:20mL; Step S3, adding the reaction product 2 and KH570 to N, N-dimethylformamide, heating to 65°C, adding azobisisobutyronitrile, stirring at a uniform speed and reacting for 4-6 hours, and obtaining a low-viscosity epoxy resin after the reaction is completed, and controlling the amount ratio of the reaction product 2, KH570, azobisisobutyronitrile and N, N-dimethylformamide to be 2g:1.2g:0.12g:10mL.

[0026] The diluent is anhydrous ethanol or ethyl acetate.

[0027] The curing agent is phenalkamine T31 or polyamide resin.

[0028] Comparative Example 1: Compared with Example 1, this comparative example uses commercially available epoxy resin E51 instead of the low-viscosity epoxy resin of the present invention, and the rest is the same as Example 1.

[0029] Comparative Example 2: Compared with Example 1, this comparative example uses commercially available thermoplastic polyurethane instead of the epoxy polyurethane of the present invention.

[0030] According to the tensile bond strength test method and the frost resistance test method in JGJ / T70-2009 "Basic Performance Test Methods of Building Mortar", the performance of the quick-setting cement-based repair materials prepared in Examples 1-3 and Comparative Examples 1-2 was tested, and the results are shown in Table 1 below: Table 1

[0031] It can be seen from Table 1 above that the repair materials prepared in Examples 1-3 of the present invention have good mechanical properties.

[0032] The above contents are merely examples and explanations of the concept of the present invention. The technicians in this technical field may make various modifications or additions to the specific embodiments described or replace them in a similar manner. As long as they do not deviate from the concept of the invention or exceed the scope defined by the claims, they should all fall within the protection scope of the present invention.

Claims

1. A quick-setting cement-based repair material, characterized in that: The raw materials include the following parts by weight: 100-120 parts of low-viscosity epoxy resin, 5-8 parts of epoxy polyurethane, 5-10 parts of diluent, 50-80 parts of iron tailings sand, 80-100 parts of ceramic powder, 300-500 parts of medium sand, and 30-50 parts of curing agent; The low-viscosity epoxy resin is prepared by the following steps: Step S1, adding cardanol and zinc acetate into a three-necked flask, introducing nitrogen to expel air, heating to 80-90° C., slowly dropping a 35% by mass aqueous formaldehyde solution, and keeping the temperature and reacting for 4 hours after the addition is completed. After the reaction is completed, washing the obtained product with 55° C. deionized water three times to obtain a reaction product 1; Step S2, adding the obtained reaction product 1 and epichlorohydrin into a four-necked flask, adding tetrabutylammonium bromide, introducing nitrogen to expel air, stirring at a uniform speed and heating to 90-95° C., keeping the temperature for reaction for 4 hours, cooling to 60° C. after the reaction is completed, adding sodium hydroxide, and continuing the reaction for 3 hours. After the reaction is completed, washing the obtained product with deionized water until it is neutral and then rotary distilling to obtain reaction product 2; Step S3, adding the reaction product 2 and KH570 to N,N-dimethylformamide, raising the temperature to 55-65° C., adding azobisisobutyronitrile, stirring at a uniform speed and reacting for 4-6 hours, and obtaining a low-viscosity epoxy resin after the reaction is completed.

2. A quick-setting cement-based repair material according to claim 1, characterized in that: The diluent is anhydrous ethanol or ethyl acetate.

3. The quick-setting cement-based repair material according to claim 1, characterized in that: The curing agent is phenalkamine T31 or polyamide resin.

4. The quick-setting cement-based repair material according to claim 1, characterized in that: In step S1, the dosage ratio of cardanol, zinc acetate and formaldehyde aqueous solution is controlled to be 1-2 g: 0.015-0.02g:15-25mL.

5. The quick-setting cement-based repair material according to claim 1, characterized in that: In step S2, the dosage ratio of the reaction product 1, epichlorohydrin, sodium hydroxide and tetrabutylammonium bromide is controlled to be 0.5-1g:2-3g:0.2-0.4g:20mL.

6. The quick-setting cement-based repair material according to claim 1, characterized in that: In step S3, the dosage ratio of the reaction product 2, KH570, azobisisobutyronitrile and N,N-dimethylformamide is controlled to be 1-2 g: 0.5-1.2g: 0.08-0.12g: 10mL.

7. The method for preparing a quick-setting cement-based repair material according to claim 1, characterized in that: The steps include: The raw materials are mixed, stirred evenly, and solidified to obtain a cement-based repair material.

Citation Information

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