High-performance environment-friendly single-component pure epoxy resin insulating paint and preparation method thereof
By combining modified silica with epoxy resin, diluent, and toughening agent, an integrated cross-linked structure is formed, which solves the problems of storage stability and curing speed of single-component pure epoxy resin insulating varnish, improves water resistance and corrosion resistance, and meets the insulation performance requirements of electrical equipment.
Patent Information
- Application Number
- CN202510901924.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2045-07-01
AI Technical Summary
Existing single-component pure epoxy resin insulating varnishes suffer from rapid viscosity increase during storage, slow curing speed, insufficient insulation performance and service life of the cured varnish film, poor water resistance and corrosion resistance, and unstable product performance.
It is formulated with modified silica, epoxy resin, reactive diluent, toughening agent and other components, and uses amine latent curing agent. Through the chemical bond between modified silica and epoxy resin, diluent and toughening agent, an integrated cross-linked structure is formed, which improves storage stability and curing speed, and enhances water resistance and corrosion resistance.
This invention achieves environmentally friendly single-component pure epoxy resin insulating varnish with good storage stability, fast curing speed, good film flexibility, strong water resistance and corrosion resistance, meeting the insulation performance requirements of electrical equipment and extending its service life.
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Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of paint technology, in particular to a high-performance environmentally friendly single-component pure epoxy resin insulating paint and a preparation method thereof. BACKGROUND
[0002] Epoxy resin insulating paint is widely used in the fields of motors, transformers, electronic components, etc. due to its good electrical insulation, mechanical properties and chemical stability. With the increasing awareness of environmental protection and the increasingly stringent environmental protection regulations, the development of environmentally friendly insulating paint has become a trend. Traditional epoxy resin insulating paint is mostly solvent-based, containing a large amount of volatile organic solvents (VOCs), which not only pollutes the environment, but also harms human health, and is flammable and explosive, posing a safety hazard.
[0003] Single-component epoxy resin insulating paint greatly simplifies the process flow and saves operation time due to its convenience of use and no need for on-site blending. This type of product is of great significance to the improvement of production efficiency, the rapid completion of emergency repair, and relatively small on-site construction environment, and therefore is favored in practical applications. Single-component epoxy resin insulating paint has been widely used in the fields of winding impregnation of various motors such as generators and motors, insulation treatment of transformer coils, encapsulation and coating of electronic components such as transformers, and metal parts requiring insulation protection; especially in scenarios requiring rapid turnaround or mass production, its dispensing-free feature becomes a key factor for significantly improving production efficiency, reducing labor costs and operation error rate.
[0004] However, existing single-component pure epoxy resin insulating paint still has some performance deficiencies, such as rapid increase in storage viscosity, slow curing speed, which seriously affects the use process and production efficiency; reduced insulation performance and service life of the cured film; poor water resistance and corrosion resistance, and the insulation performance is easily affected in humid and corrosive environments. In addition, improper selection of raw materials and process control during the preparation of some single-component pure epoxy resin insulating paint leads to unstable product performance and uneven quality.
[0005] Therefore, it is of great practical significance to develop a new high-performance environmentally friendly single-component pure epoxy resin insulating paint product. SUMMARY
[0006] Therefore, the present application provides a high-performance environmentally friendly single-component pure epoxy resin insulating paint and a preparation method thereof. The single-component insulating paint is prepared by compounding modified silicon dioxide, epoxy resin, and additives, etc. It has good storage stability, fast curing speed, good film flexibility, strong water resistance and corrosion resistance, etc. The preparation method is simple and the ingredients are environmentally friendly, overcoming the problems in the prior art.
[0007] One object of the present application is to provide a high-performance environmentally friendly single-component pure epoxy resin insulating paint, which comprises the following components by mass fraction:
[0008] Epoxy resin 60-80%
[0009] Active diluent 5-10%
[0010]
[0011] The modified silica is silica modified by alkyl acid and silane coupling agent.
[0012] The high-performance environmentally friendly single-component pure epoxy resin insulating paint of the present application does not use volatile organic solvents at all, reduces pollution to the environment and harm to the health of construction personnel, and meets environmental protection requirements; and the ingredients are selected from low-toxicity or non-toxic raw materials, such as epoxy resin, active diluent, modified silica, etc., thereby reducing the toxicity of the product from the source.
[0013] Further, the epoxy resin is an epoxy resin with an epoxy value of 0.4-0.6 mol / 100g.
[0014] Further, the active diluent is selected from active diluents containing epoxy groups.
[0015] Further, the curing agent is selected from amine latent curing agents.
[0016] The latent curing agent can maintain good storage stability at room temperature, and can initiate a curing reaction only under specific temperature or conditions, facilitating storage and transportation, and also meeting the needs of different construction processes. The amine latent curing agent is used in the present application to be compounded with other ingredients, realizing rapid curing at a lower temperature, reducing energy consumption, and improving production efficiency. Compared with traditional single-component epoxy resin insulating paint, the curing time can be shortened by 30-50%, and it is also suitable for some temperature-sensitive substrates or occasions.
[0017] Further, the toughening agent is selected from one or more of carboxyl-terminated butyl nitrile rubber and polyether polyol.
[0018] Preferably, the toughening agent is carboxyl-terminated butyl nitrile rubber (CTBN).
[0019] The carboxyl-terminated butyl nitrile rubber toughening agent with flexible segments can chemically react with components such as epoxy resin, introducing flexible segments into the crosslinked network, effectively improving the flexibility of the paint film, thereby preventing paint film cracking and improving the service life of the insulating paint. The paint film can be bent 50-100 times, and there is no obvious cracking after 100 cycles of -45℃-155℃ temperature impact test.
[0020] Further, the other auxiliary agents include dispersants, defoamers and leveling agents.
[0021] The thixotropic agent of fumed silica and modified silica are mixed in different mesh ratios, which can make the insulating paint have better fluidity during construction, facilitate impregnation and penetration, and quickly increase viscosity when static to prevent sagging and dripping, ensure that the resin can be retained in the relaxed winding and other parts, and improve the film thickness on the enameled wire and insulating tape.
[0022] The present application improves the electrical insulation performance of the insulating paint by optimizing the formula and preparation process, has high insulation resistance, low dielectric loss and other characteristics, and the volume resistivity can reach 10 14 -10 15 Ω·m, the normal medium loss factor is 0.1-0.3%, the dielectric strength is 30-40MV / m, which meets the strict requirements of electrical equipment on insulation performance; at the same time, the mechanical strength, toughness, wear resistance of the cured insulating paint are also enhanced, and the chemical stability of acid and alkali resistance, salt spray resistance and aging resistance is improved, the service life and application range of the insulating paint are prolonged. In the water resistance test, the paint film has no blistering, peeling and other phenomena after soaking in water for 72h, and the surface resistance retention rate is more than 90%; in the salt spray corrosion test, the paint film has no obvious corrosion phenomenon after 500h salt spray test, and the adhesion remains good.
[0023] Further, the modified silica is the product obtained by reacting hydroxylated silica with alkyl acid first and then with epoxy silane coupling agent.
[0024] Further, the preparation method of the high-performance environment-friendly single-component pure epoxy resin insulating paint comprises the following steps:
[0025] S1, mixing alkyl acid and hydroxylated silica, and obtaining an intermediate product after ultrasonic heating reaction;
[0026] S2, mixing the intermediate product and epoxy silane coupling agent, and obtaining modified silica after heating reaction;
[0027] S3, mixing active diluent and part of epoxy resin, and obtaining a premix liquid after heating and stirring;
[0028] S4, mixing toughening agent and the remaining epoxy resin, and obtaining toughening agent modified epoxy resin after heating and stirring reaction;
[0029] S5, mixing thixotropic agent, modified silica and the premix liquid, dispersing, and then adding the toughening agent modified epoxy resin, curing agent and other auxiliary agents, and stirring uniformly to obtain the high-performance environment-friendly single-component pure epoxy resin insulating paint.
[0030] Further, the mass ratio of the alkyl acid and the hydroxylated silicon dioxide is (0.1-0.5):1.
[0031] Further, the mass ratio of the intermediate product and the epoxy silane coupling agent is 1:(1-5).
[0032] The present application develops a simple and efficient preparation process, reduces the production steps and time, reduces the production cost, and is beneficial to batch production and other large-scale production processes, has a short process flow, simple operation, reduces energy consumption and waste discharge, and realizes green production.
[0033] Preferably, the preparation method of the hydroxylated silicon dioxide comprises the following steps:
[0034] The fumed silicon dioxide (particle size ≤100 nm) is added into a mixed solution of concentrated sulfuric acid and hydrogen peroxide with a mass ratio of 70:30, heated to 80℃, reacted for 2h, filtered, washed and dried to obtain the hydroxylated fumed silicon dioxide.
[0035] The present application has the following beneficial effects:
[0036] In the high-performance environment-friendly single-component pure epoxy resin insulating paint of the present application, modified silicon dioxide is used as a component to be compounded with epoxy resin, diluent, toughening agent and other components, the modified silicon dioxide is first reacted with hydroxylated silicon dioxide and long-chain alkyl acid, and then further grafted with epoxy silane coupling agent through the remaining hydroxyl groups, thereby introducing alkyl chains and epoxy groups onto the surface of the silicon dioxide. On the one hand, the dispersion effect of the silicon dioxide is enhanced, and the hydrophobic and entanglement effects brought by the long alkyl chain segment are also beneficial to improving the water resistance, stability and mechanical strength of the film layer. On the other hand, the introduced epoxy groups can enable the modified silicon dioxide to be combined with epoxy resin, amine latent curing agent and carboxyl-terminated butyronitrile rubber toughening agent through chemical bonds, further improve the compatibility between the components, and the integrated crosslinked structure formed also enables the film layer to have better comprehensive performance, overcoming the problems in the prior art. DETAILED DESCRIPTION
[0037] In order to more clearly illustrate the technical solutions of the present application, the following examples are listed. The raw materials, reactions and post-treatment methods appearing in the examples are all common raw materials on the market and technical means well known to those skilled in the art, unless otherwise stated.
[0038] The words "preferred" and "preferably" in the application refer to embodiments of the application that can provide certain benefits under certain circumstances. However, other embodiments can also be preferred under the same or other circumstances. Additionally, the recitation of one or more preferred embodiments does not imply that other embodiments are not useful, and is not intended to exclude those other embodiments from the scope of the application.
[0039] It should be understood that, except where noted otherwise, or otherwise evident from context, expressions of amount or all numbers in the specification and claims, such as, for example, amounts of ingredients, are understood as being modified by the term "about". Thus, unless otherwise indicated, the numerical parameters set forth in the following specification and attached claims are approximations.
[0040] The epoxy resin in the embodiment of the application is E51 bisphenol A type epoxy resin.
[0041] The active diluent in the embodiment of the application is HK-66.
[0042] The curing agent in the embodiment of the application is dicyandiamide.
[0043] The toughening agent in the embodiment of the application is CTBN 1300X13.
[0044] The thixotropic agent in the embodiment of the application is a mixture of fumed silica with specific surface area 200 and fumed silica with specific surface area 380 in a mass ratio of 1:1.
[0045] The other auxiliary agent in the embodiment of the application is a mixture of leveling agent BYK-310 and defoaming agent 2410AC in a mass ratio of 1:1.
[0046] Example 1
[0047] A high-performance environmentally friendly single-component pure epoxy resin insulating paint, comprising the following components in mass fraction:
[0048]
[0049] The preparation method of the high-performance environmentally friendly single-component pure epoxy resin insulating paint comprises the following steps:
[0050] S1, stearic acid and hydroxylated silicon dioxide in a mass ratio of 0.1:1 are mixed with toluene as a solvent, and after ultrasonic reaction at 80℃ for 12h, filtration and drying are performed to obtain an intermediate product;
[0051] S2, mixing the intermediate product and KH-560 in a mass ratio of 1:2 with a mixed solution of ethanol and water in a volume ratio of 3:1 as a solvent, refluxing at 90°C for 24h, filtering, washing, and drying to obtain modified silica;
[0052] S3, mixing the active diluent and 1 / 2 mass of epoxy resin according to the above mass fraction, stirring at 200r / min for 30min at 55°C to obtain a premix;
[0053] S4, mixing the toughening agent and the remaining epoxy resin, stirring and reacting at 80°C for 2h to obtain a toughening agent modified epoxy resin;
[0054] S5, mixing the thixotropic agent, the modified silica, and the premix at 1000r / min for 20min, then adding the toughening agent modified epoxy resin, the curing agent, and other additives, stirring at 300r / min for 60min at room temperature to obtain the high-performance environmentally friendly single-component pure epoxy resin insulating paint.
[0055] Example 2
[0056] A high-performance environmentally friendly single-component pure epoxy resin insulating paint, comprising the following components in mass fraction:
[0057]
[0058] A preparation method of the high-performance environmentally friendly single-component pure epoxy resin insulating paint, comprising the following steps:
[0059] S1, mixing stearic acid and hydroxylated silica in a mass ratio of 0.1:1 with toluene as a solvent, ultrasonic reacting at 80°C for 12h, filtering, and drying to obtain an intermediate product;
[0060] S2, mixing the intermediate product and KH-560 in a mass ratio of 1:2 with a mixed solution of ethanol and water in a volume ratio of 3:1 as a solvent, refluxing at 90°C for 24h, filtering, washing, and drying to obtain modified silica;
[0061] S3, mixing the active diluent and 1 / 2 mass of epoxy resin according to the above mass fraction, stirring at 200r / min for 30min at 55°C to obtain a premix;
[0062] S4, mixing the toughening agent and the remaining epoxy resin, stirring and reacting at 80°C for 2h to obtain a toughening agent modified epoxy resin;
[0063] S5, mix the thixotropic agent, the modified silica and the premix liquid, disperse at 1000 r / min for 20 min, then add the toughener modified epoxy resin, curing agent and other auxiliaries, stir at 300 r / min at room temperature for 60 min, to obtain the high-performance environment-friendly single-component pure epoxy resin insulating paint.
[0064] Example 3
[0065] A high-performance environment-friendly single-component pure epoxy resin insulating paint, the high-performance environment-friendly single-component pure epoxy resin insulating paint comprises the following components by mass fraction:
[0066]
[0067] The preparation method of the high-performance environment-friendly single-component pure epoxy resin insulating paint comprises the following steps:
[0068] S1, mix stearic acid and hydroxylated silicon dioxide with a mass ratio of 0.1:1 with toluene as solvent, ultrasonic reaction at 80°C for 12h, then filter, dry, to obtain an intermediate product;
[0069] S2, mix the intermediate product and KH-560 with a mass ratio of 1:2 with a mixture of ethanol and water with a volume ratio of 3:1 as solvent, reflux reaction at 90°C for 24h, filter, wash, dry, to obtain modified silica;
[0070] S3, mix active diluent and 1 / 2 mass of epoxy resin according to the above mass fraction, stir at 200 r / min at 55°C for 30 min, to obtain a premix liquid;
[0071] S4, mix toughener and the remaining epoxy resin, stir and react at 80°C for 2h, to obtain a toughener modified epoxy resin;
[0072] S5, mix the thixotropic agent, the modified silica and the premix liquid, disperse at 1000 r / min for 20 min, then add the toughener modified epoxy resin, curing agent and other auxiliaries, stir at 300 r / min at room temperature for 60 min, to obtain the high-performance environment-friendly single-component pure epoxy resin insulating paint.
[0073] Comparative Example 1
[0074] The difference between Comparative Example 1 and Example 1 is that steps S1-S2 are modified as follows:
[0075] Mix stearic acid and hydroxylated silicon dioxide with a mass ratio of 1:1 with toluene as solvent, ultrasonic reaction at 80°C for 12h, then filter, dry, to obtain modified silica;
[0076] The other components and preparation method are the same as those of Example 1.
[0077] Comparative Example 2
[0078] Comparative Example 2 differs from Example 1 in that steps S1-S2 are modified as follows:
[0079] A mixture of hydroxylated silica and KH-560 in a mass ratio of 1:3 is mixed with an ethanol and water mixture in a volume ratio of 3:1 as a solvent, and refluxed at 90℃ for 24h, filtered, washed, and dried to obtain modified silica;
[0080] The other components and preparation methods are the same as in Example 1.
[0081] Test Example
[0082] The high-performance environmentally friendly single-component pure epoxy resin insulating paint prepared in Example 1 and Comparative Examples 1-2 is subjected to performance testing.
[0083] Test Method:
[0084] The gel time, storage stability, surface drying time, curing volatile matter, medium loss factor, volume resistivity, electrical strength, adhesion strength, temperature shock test, and salt spray resistance test are performed in accordance with the standards of GB / T 15022.2-2017, GB / T 1981.2-2009, GB / T 150.5A-2009, GB / T 2423.17-2008, etc.
[0085] The test results are shown in Table 1.
[0086] Table 1 Performance Test Results
[0087]
[0088] According to Table 1, it can be concluded that the high-performance environmentally friendly single-component pure epoxy resin insulating paint prepared in the example has good stability and corrosion resistance, fast curing speed, and excellent dielectric properties, adhesion, and other properties, and can meet the needs of different application fields. The comparative examples 1-2 replace the modified silica and only use fatty acids or silane coupling agents as modifiers, resulting in reduced bonding strength and compatibility between components, and the synergistic effect between different components is not ideal, and the performance of the paint product decreases to varying degrees.
[0089] It will be obvious to a person skilled in the art that the application is not limited to the details of the above-described exemplary embodiments, but that the application can be implemented in other embodiments without departing from the scope of the application. The embodiments are therefore to be seen as exemplary and in no way restrictive, the scope of the application being defined by the claims below rather than by the above description, and all variations falling within the meaning and range of equivalency of the essential characteristics of the claims are therefore intended to be embraced therein.
[0090] Furthermore, it should be understood that although the present specification describes exemplary embodiments, the application is not limited to only one independent technical solution in each embodiment, and the present specification is described in this way only for the sake of clarity, and a person skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that a person skilled in the art can understand.
Claims
1. A high-performance environmentally friendly single-component pure epoxy resin insulating paint, characterized by, The high-performance environment-friendly single-component pure epoxy resin insulating paint comprises the following components by mass fraction: Epoxy resin 60-80% Active diluent 5-10% Modified silica 5-8% Curing agent 3-10% Toughening agent 3-8% Thixotropic agent 1-3% Other additives 1-3%; The modified silica is silica modified by alkyl acid and epoxy silane coupling agent KH-560. The modified silica is the product of the reaction of hydroxylated silica with alkyl acid and then with epoxy silane coupling agent KH-560. The active diluent is selected from active diluents containing epoxy groups. The toughening agent is carboxyl-terminated butyl nitrile rubber.
2. The high performance environment-friendly single-component pure epoxy resin insulating paint according to claim 1, characterized in that, The epoxy resin is an epoxy resin with an epoxy value of 0.4-0.6 mol / 100 g.
3. The high performance environment-friendly single-component pure epoxy resin insulating paint according to claim 1, characterized in that, The curing agent is selected from amine latent curing agents.
4. The high performance environment-friendly single-component pure epoxy resin insulating paint according to claim 1, characterized in that, The other additives include dispersants, defoamers and leveling agents.
5. The high performance environment-friendly single-component pure epoxy resin insulating paint according to claim 1, characterized in that, The preparation method of the high-performance environment-friendly single-component pure epoxy resin insulating paint comprises the following steps: S1, mixing alkyl acid and hydroxylated silica, ultrasonic heating and reaction to obtain an intermediate product; S2, mixing the intermediate product and epoxy silane coupling agent KH-560, heating and reaction to obtain modified silica; S3, mixing active diluent and part of epoxy resin, heating and stirring to obtain a premix; S4, mixing toughening agent and the remaining epoxy resin, heating and stirring to obtain toughening agent modified epoxy resin; S5, mixing thixotropic agent, modified silica and the premix, dispersing, then adding the toughening agent modified epoxy resin, curing agent and other additives, and stirring uniformly to obtain the high-performance environment-friendly single-component pure epoxy resin insulating paint.
6. The high performance environment-friendly single-component pure epoxy resin insulating paint according to claim 5, characterized in that, The mass ratio of alkyl acid to hydroxylated silica is (0.1-0.5):
1.
7. The high performance environment-friendly single-component pure epoxy resin insulating paint according to claim 5, characterized in that, The mass ratio of the intermediate product to epoxy silane coupling agent KH-560 is 1:(1-5).
Citation Information
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