CN110684461A - Layered inorganic nano-material modified corona-resistant polyesterimide wire enamel and preparation method thereof - Google Patents

Layered inorganic nano-material modified corona-resistant polyesterimide wire enamel and preparation method thereof Download PDF

Info

Publication number
CN110684461A
CN110684461A CN201911043723.9A CN201911043723A CN110684461A CN 110684461 A CN110684461 A CN 110684461A CN 201911043723 A CN201911043723 A CN 201911043723A CN 110684461 A CN110684461 A CN 110684461A
Authority
CN
China
Prior art keywords
parts
modified
wire enamel
corona
solvent
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201911043723.9A
Other languages
Chinese (zh)
Inventor
涂张应
付金栋
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Anhui Sheng Sheng Insulation Materials Co Ltd
Anhui Shengran Insulation Materials Co Ltd
Original Assignee
Anhui Sheng Sheng Insulation Materials Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Anhui Sheng Sheng Insulation Materials Co Ltd filed Critical Anhui Sheng Sheng Insulation Materials Co Ltd
Priority to CN201911043723.9A priority Critical patent/CN110684461A/en
Publication of CN110684461A publication Critical patent/CN110684461A/en
Pending legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09DCOATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS; FILLING PASTES; CHEMICAL PAINT OR INK REMOVERS; INKS; CORRECTING FLUIDS; WOODSTAINS; PASTES OR SOLIDS FOR COLOURING OR PRINTING; USE OF MATERIALS THEREFOR
    • C09D179/00Coating compositions based on macromolecular compounds obtained by reactions forming in the main chain of the macromolecule a linkage containing nitrogen, with or without oxygen, or carbon only, not provided for in groups C09D161/00 - C09D177/00
    • C09D179/04Polycondensates having nitrogen-containing heterocyclic rings in the main chain; Polyhydrazides; Polyamide acids or similar polyimide precursors
    • C09D179/08Polyimides; Polyester-imides; Polyamide-imides; Polyamide acids or similar polyimide precursors
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08GMACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS
    • C08G73/00Macromolecular compounds obtained by reactions forming a linkage containing nitrogen with or without oxygen or carbon in the main chain of the macromolecule, not provided for in groups C08G12/00 - C08G71/00
    • C08G73/06Polycondensates having nitrogen-containing heterocyclic rings in the main chain of the macromolecule
    • C08G73/10Polyimides; Polyester-imides; Polyamide-imides; Polyamide acids or similar polyimide precursors
    • C08G73/1067Wholly aromatic polyimides, i.e. having both tetracarboxylic and diamino moieties aromatically bound
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09DCOATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS; FILLING PASTES; CHEMICAL PAINT OR INK REMOVERS; INKS; CORRECTING FLUIDS; WOODSTAINS; PASTES OR SOLIDS FOR COLOURING OR PRINTING; USE OF MATERIALS THEREFOR
    • C09D7/00Features of coating compositions, not provided for in group C09D5/00; Processes for incorporating ingredients in coating compositions
    • C09D7/40Additives
    • C09D7/60Additives non-macromolecular
    • C09D7/61Additives non-macromolecular inorganic
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09DCOATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS; FILLING PASTES; CHEMICAL PAINT OR INK REMOVERS; INKS; CORRECTING FLUIDS; WOODSTAINS; PASTES OR SOLIDS FOR COLOURING OR PRINTING; USE OF MATERIALS THEREFOR
    • C09D7/00Features of coating compositions, not provided for in group C09D5/00; Processes for incorporating ingredients in coating compositions
    • C09D7/40Additives
    • C09D7/60Additives non-macromolecular
    • C09D7/63Additives non-macromolecular organic
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01BCABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
    • H01B3/00Insulators or insulating bodies characterised by the insulating materials; Selection of materials for their insulating or dielectric properties
    • H01B3/18Insulators or insulating bodies characterised by the insulating materials; Selection of materials for their insulating or dielectric properties mainly consisting of organic substances
    • H01B3/30Insulators or insulating bodies characterised by the insulating materials; Selection of materials for their insulating or dielectric properties mainly consisting of organic substances plastics; resins; waxes
    • H01B3/308Wires with resins
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUse of inorganic or non-macromolecular organic substances as compounding ingredients
    • C08K2201/00Specific properties of additives
    • C08K2201/011Nanostructured additives

Landscapes

  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Wood Science & Technology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Medicinal Chemistry (AREA)
  • Polymers & Plastics (AREA)
  • Health & Medical Sciences (AREA)
  • Physics & Mathematics (AREA)
  • Spectroscopy & Molecular Physics (AREA)
  • Inorganic Chemistry (AREA)
  • Organic Insulating Materials (AREA)
  • Macromolecular Compounds Obtained By Forming Nitrogen-Containing Linkages In General (AREA)

Abstract

A corona-resistant polyesterimide wire enamel modified by layered inorganic nano materials and a preparation method thereof. The formula comprises the following components in parts by weight: 40-50 parts of a seik modified polyesterimide resin; 40-50 parts of a solvent; 5-35% of a diluent; 0.1-3.0% of a catalyst; 0.2-5.0% of an auxiliary agent. Compared with the prior art, the material shows excellent performance. The product prepared by the invention is suitable for electromechanical industry.

Description

Layered inorganic nano-material modified corona-resistant polyesterimide wire enamel and preparation method thereof
Technical Field
The invention relates to an enameled wire enamel and a preparation method thereof, in particular to a layered inorganic nano-material modified corona-resistant polyesterimide enameled wire enamel and a preparation method thereof, and belongs to the technical field of chemical industry.
Background
Since the end of the twentieth century, variable frequency ac speed-regulating motors have been widely used because of their energy-saving, high-efficiency and easy-to-control features. According to measurement and calculation, the variable-frequency speed regulating motor saves about 30% of energy compared with a common motor, has important significance of energy conservation and environmental protection, and is also greatly promoted to be applied in China. However, the pulse square wave generated by the IGBT speed regulating device adopted by the alternating-current variable-frequency motor is different from a power frequency sine wave, the alternating-current variable-frequency motor has extremely high charging and discharging speed and sharp peak voltage, and corona formed by partial discharge generated after the turn-to-turn voltage of the winding exceeds the initial corona voltage (PDIV) generates a strong corrosion damage effect on an enameled wire insulating layer, so that a large amount of variable-frequency motor turn-to-turn insulation early damage is caused.
In the early stage, researchers of insulating materials have improved the corona resistance life of enameled wires by adding inorganic fillers into the insulated wire enamel, and have achieved certain effects, which represent companies such as p.d. george, Phelps Dodge, and Syntel, Italy, etc. in the United states. However, the inorganic filler can only be dispersed to the micron level by adopting a physical addition method, the stability of the insulating paint is poor, sedimentation can be generated in a short period, the insulating paint needs to be stirred again before use, the enameled wire made of the material has opaque appearance and brittle paint film, only the enameled wire with a three-layer structure can be adopted, the corona resistance service life of the enameled wire is improved only to a limited extent, and the requirements of the latest national standard can not be met.
In order to solve the above disadvantages of the first generation corona resistant wire enamel, DuPont company (Herberts company, germany) in the united states applies nanotechnology to the development of corona resistant wire enamel, nano-scale (<100nm) inorganic particles and an insulating varnish resin structure are chemically combined, the prepared corona resistant wire enamel system is stable and has no sedimentation, a two-layer structure can be adopted to produce the wire enamel, the wire enamel is transparent in appearance and is close to a common wire enamel, the corona resistant time of the wire enamel is greatly improved, and the reliability of a variable frequency motor produced by using the wire enamel is greatly improved. The corona-resistant wire enamel of the variety depends on import for a long time, has high price which is 4-5 times of that of the common wire enamel, and causes the cost of downstream users to be difficult to control.
After 2000 years, the research and development of corona-resistant wire enamel are carried out by domestic wire enamel research institutions and manufacturers with great investment, but generally the simulation of the first generation and the second generation products is weak in understanding and research foundation of nanotechnology, and although the cost is reduced, the performance is different from the foreign advanced level.
Disclosure of Invention
The invention aims to provide layered inorganic nano-material modified corona-resistant polyesterimide wire enamel and a preparation method thereof, so as to overcome the defects of the prior art.
The project aims to develop a layered inorganic nano material modified corona-resistant polyesterimide wire enamel and a preparation method thereof, and the wire enamel uses an inorganic-organic nano dispersion and composite technology, has transparent appearance, has performance reaching or exceeding the international advanced level, and has obviously reduced cost. After the variety is put into the market, the technical level and the reliability of the corona-resistant enameled wire and the variable frequency motor can be obviously improved, the cost pressure of downstream users is reduced, and the economic benefit and the social benefit are obvious.
The principle of the invention is as follows: the invention selects the seik modified polyester-imide resin, mainly utilizes the heat resistance and corona resistance of the seik modified polyester-imide resinIs one of the best modified transparent materials in the world at present.
The technical problem to be solved by the invention can be realized by the following technical scheme:
as a first aspect of the invention, a layered inorganic nano-material modified corona-resistant polyesterimide wire enamel is characterized in that the wire enamel comprises the following components in parts by weight:
40-50 parts of a seik modified polyesterimide resin;
40-50 parts of a solvent;
5-35% of a diluent;
0.1-3.0% of a catalyst;
0.2-5.0% of an auxiliary agent.
Wherein the mosaic modified polyester-imide resin comprises the following components:
Figure BDA0002253556490000021
Figure BDA0002253556490000031
wherein, the solvent is any one or combination of cresol, phenol and aromatic solvent naphtha.
Wherein, the diluent comprises any one or a mixture of at least two of xylene, 1000# solvent oil and 1500# solvent oil.
Wherein, the catalyst includes but is not limited to any one or the mixture of two of n-butyl titanate and zinc acetate.
Wherein the auxiliary agent is an isocyanate blocking substance.
The optimized layered inorganic nano-material modified corona-resistant polyesterimide wire enamel is characterized in that: the formula comprises the following components in parts by weight:
the following modified polyester-imide resins:
Figure BDA0002253556490000032
solvent:
15-20 parts of cresol;
15-15% of phenol;
10-15 parts of aromatic solvent oil;
diluent agent:
3-15 parts of dimethylbenzene;
1-10% of 1000# solvent oil;
1-10 parts of 1500# solvent oil;
catalyst:
0.1-1.5 parts of n-butyl titanate;
0.1-1.5 parts of zinc acetate;
auxiliary agent:
0.2-5.0 parts of isocyanate sealing material.
As a second aspect of the invention, a preparation method of a layered inorganic nano-material modified corona-resistant polyesterimide wire enamel is characterized by comprising the following steps:
(1) cresol and a monomer for synthesizing the mosaic modified polyesterimide are added into a reaction kettle and are stirred uniformly;
(2) gradually raising the temperature and distilling off reaction by-products, water and/or methanol during the raising of the temperature;
(3) after the distilled reaction byproducts reach the required quantity, cooling, and adding a solvent and a diluent to dissolve and cool;
(4) adding catalyst and assistant, stirring, filtering and barreling.
Wherein the seek modified polyesterimide resin in the step (1) is synthesized by adopting a one-step method, and dimethyl terephthalate (DMT) 15-18 is added at room temperature; 5-10 parts of ethylene glycol; 5-10 g of mosaic (heat resistance); 5-10 parts of 4, 4' -diaminodiphenylmethane; 10-12 parts of trimellitic anhydride (TMA); and the temperature was increased during the addition.
Wherein, the cooling in the step (3) adopts a natural cooling, water cooling or oil cooling mode, and the solvent and the diluent are added in sequence of adding the solvent first and then adding the diluent; solvents include, but are not limited to, any one or a mixture of at least two of cresols, phenols and aromatic mineral spirits; the diluent comprises any one or a mixture of at least two of xylene, 1000# solvent oil and 1500# solvent oil;
wherein, the catalyst in the step (4) comprises but is not limited to any one or mixture of two of butyl orthotitanate and zinc acetate, and the auxiliary agent is isocyanate closure; stirring for 2-8 hr after adding all materials, filtering with bag filter with filtering precision of 1 μm, and packaging.
The invention has the beneficial effects that:
a production technology of layered inorganic nano-material modified corona-resistant polyesterimide wire enamel. As the basis of corona-resistant wire enamel, the production capacity of layered inorganic nano-material modified corona-resistant polyesterimide wire enamel is required. The polyester-imide wire enamel is required to have a thermal level of more than 200, good paint film adhesion and flexibility, good coatability and the like.
And (4) selecting inorganic powder materials. The inorganic powder materials for developing corona-resistant wire enamel are various, different powder types, particle sizes, surface states, preparation methods, quality stability of manufacturers and the like influence the processing technology and the final product performance of new products, screening and screening must be carried out on the basis of the characteristics of familiar materials, otherwise, the performance of the final product is seriously influenced, the research and development period is very long, and the project cannot be completed within a specified time.
The dispersion of inorganic powder material in organic system and the combination of inorganic powder surface and organic resin. The final performance of the enameled wire made of the corona-resistant wire enamel is closely related to the dispersion state of inorganic materials and the interface combination between the inorganic materials and the organic materials. Only if the nano-scale dispersion of the inorganic powder material is really achieved, and the inorganic material and the organic resin have good compatibility and generate the combination of chemical bonds, hydrogen bonds and the like, the breakthrough in performance can be realized, and the nano modified material with excellent performance is prepared.
And controlling the cost. The advanced performance and reliable quality of the nanometer material depends on import in a large amount for a long time, but the price is high. In recent years, some manufacturers start industrial production of nano materials, but the quality is not uniform, and different samples need to be compared and tested.
Detailed Description
The present invention will be further described with reference to the following examples. It should be understood that the following examples are illustrative only and are not intended to limit the scope of the present invention.
Examples 1 to 3
The formula of the layered inorganic nano-material modified corona-resistant polyesterimide wire enamel comprises the following components in parts by weight:
40-50 parts of a seik modified polyesterimide resin;
40-50 parts of a solvent;
5-35% of a diluent;
0.1-3.0% of a catalyst;
0.2-5.0% of an auxiliary agent.
The corona-resistant modified polyesterimide wire enamel with the layered inorganic nano-material comprises the following components in parts by weight:
the following modified polyester-imide resins:
Figure BDA0002253556490000051
Figure BDA0002253556490000061
solvent:
15-20 parts of cresol;
15-15% of phenol;
10-15 parts of aromatic solvent oil;
diluent agent:
3-15 parts of dimethylbenzene;
1-10% of 1000# solvent oil;
1-10 parts of 1500# solvent oil;
catalyst:
0.1-1.5 parts of n-butyl titanate;
0.1-1.5 parts of zinc acetate;
auxiliary agent:
0.2-5.0 parts of isocyanate sealing material.
TABLE 1 formulation units
Figure BDA0002253556490000062
As can be seen from Table 1, the invention is achieved by examples 1 to 3, and comparative examples 1 to 3 are commercially available conventional products.
Example 4
A preparation method of layered inorganic nano-material modified corona-resistant polyesterimide wire enamel comprises the following steps:
(1) cresol and a monomer for synthesizing the mosaic modified polyesterimide are added into a reaction kettle and are stirred uniformly;
(2) gradually raising the temperature to 220 ℃ at most, and distilling reaction byproducts, water and/or methanol while controlling the temperature to be 70-103 ℃; thus obtaining a seek modified polyesterimide resin solution;
(3) after the distilled reaction byproducts reach the required quantity, cooling, and adding a solvent and a diluent to dissolve and cool; the cooling adopts a natural cooling, water cooling or oil cooling mode, and a solvent and a diluent are added for dissolving and cooling, wherein the solvent and the diluent are added in the sequence of adding the solvent first and then adding the diluent;
(4) adding a catalyst and an auxiliary agent, wherein the catalyst is 0.1-1.5 of n-butyl titanate and/or 0.1-1.5 of zinc acetate; the auxiliary agent is 0.2-5.0 parts of isocyanate closure; stirring uniformly, filtering and barreling.
Table 2 the properties of the products were examined.
TABLE 2 units of experimental results
Figure BDA0002253556490000071
As can be seen from Table 2, the product obtained by the process of the present invention is excellent in properties.
While the present invention has been described with reference to the specific embodiments, the present invention is not limited thereto, and various changes may be made without departing from the spirit of the present invention.

Claims (10)

1. The corona-resistant polyesterimide wire enamel modified by the layered inorganic nano materials is characterized by comprising the following components in parts by weight:
40-50 parts of a seik modified polyesterimide resin;
40-50 parts of a solvent;
5-35% of a diluent;
0.1-3.0% of a catalyst;
0.2-5.0% of an auxiliary agent.
2. The layered inorganic nanomaterial-modified corona-resistant polyesterimide wire enamel according to claim 1, wherein:
the modified polyester-imide resin comprises the following components in parts by weight:
Figure FDA0002253556480000011
3. the layered inorganic nanomaterial-modified corona-resistant polyesterimide wire enamel according to claim 1, wherein: the solvent is any one or combination of cresol, phenol and aromatic solvent oil according to parts by weight.
4. The layered inorganic nanomaterial-modified corona-resistant polyesterimide wire enamel according to claim 1, wherein: the diluent comprises any one or a mixture of at least two of xylene, 1000# solvent oil and 1500# solvent oil according to parts by weight.
5. The layered inorganic nanomaterial-modified corona-resistant polyesterimide wire enamel according to claim 1, wherein: the catalyst includes but is not limited to any one or two of butyl orthotitanate and zinc acetate according to the weight portion.
6. The layered inorganic nanomaterial-modified corona-resistant polyesterimide wire enamel according to claim 1, wherein: the auxiliary agent is an isocyanate closure in parts by weight.
7. The layered inorganic nanomaterial-modified corona-resistant polyesterimide wire enamel according to any one of claims 2 to 6, wherein: the formula comprises the following components in parts by weight:
the following modified polyester-imide resins:
Figure FDA0002253556480000021
solvent:
15-20 parts of cresol;
15-15% of phenol;
10-15 parts of aromatic solvent oil;
diluent agent:
3-15 parts of dimethylbenzene;
1-10% of 1000# solvent oil;
1-10 parts of 1500# solvent oil;
catalyst:
0.1-1.5 parts of n-butyl titanate;
0.1-1.5 parts of zinc acetate;
auxiliary agent:
0.2-5.0 parts of isocyanate sealing material.
8. The preparation method of the layered inorganic nanomaterial-modified corona-resistant polyesterimide wire enamel according to claim 1, comprising the following steps:
(1) cresol and a monomer for synthesizing the mosaic modified polyesterimide are added into a reaction kettle and are stirred uniformly;
(2) gradually raising the temperature and distilling off reaction by-products, water and/or methanol during the raising of the temperature;
(3) after the distilled reaction byproducts reach the required quantity, cooling, and adding a solvent and a diluent to dissolve and cool;
(4) adding catalyst and assistant, stirring, filtering and barreling.
9. The preparation method of claim 8, wherein the modified polyesterimide resin obtained in step (1) is synthesized by a one-step method, and dimethyl terephthalate (DMT) 15-18 parts by weight is added at room temperature; 5-10 parts of ethylene glycol; 5-10 g of mosaic (heat resistance); 5-10 parts of 4, 4' -diaminodiphenylmethane; 10-12 parts of trimellitic anhydride (TMA); and the temperature was increased during the addition.
10. The preparation method according to claim 8, wherein the temperature reduction in the step (3) adopts a natural cooling mode, a water cooling mode or an oil cooling mode, and the solvent and the diluent are added in sequence of adding the solvent first and then adding the diluent; solvents include, but are not limited to, any one or a mixture of at least two of cresols, phenols and aromatic mineral spirits; the diluent comprises any one or a mixture of at least two of xylene, 1000# solvent oil and 1500# solvent oil; the catalyst in the step (4) comprises but is not limited to any one or mixture of butyl orthotitanate and zinc acetate, and the auxiliary agent is isocyanate closure; stirring for 2-8 hr after adding all materials, filtering with bag filter with filtering precision of 1 μm, and packaging.
CN201911043723.9A 2019-10-30 2019-10-30 Layered inorganic nano-material modified corona-resistant polyesterimide wire enamel and preparation method thereof Pending CN110684461A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201911043723.9A CN110684461A (en) 2019-10-30 2019-10-30 Layered inorganic nano-material modified corona-resistant polyesterimide wire enamel and preparation method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201911043723.9A CN110684461A (en) 2019-10-30 2019-10-30 Layered inorganic nano-material modified corona-resistant polyesterimide wire enamel and preparation method thereof

Publications (1)

Publication Number Publication Date
CN110684461A true CN110684461A (en) 2020-01-14

Family

ID=69114637

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201911043723.9A Pending CN110684461A (en) 2019-10-30 2019-10-30 Layered inorganic nano-material modified corona-resistant polyesterimide wire enamel and preparation method thereof

Country Status (1)

Country Link
CN (1) CN110684461A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112226154A (en) * 2020-10-20 2021-01-15 安徽晟然绝缘材料有限公司 High-strength polyesterimide wire enamel and preparation method thereof

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101613572A (en) * 2009-07-22 2009-12-30 常州市智通树脂有限公司 A kind of polyesterimide wire enamel and preparation method thereof
CN104130699A (en) * 2014-07-18 2014-11-05 上海晟然绝缘材料有限公司 High adhesion and solvent resistant insulating paint for polyester imide enameled wire and preparation method thereof
CN109021817A (en) * 2018-08-20 2018-12-18 安徽晟然绝缘材料有限公司 A kind of transparent Inverter fed motor polyesterimide wire enamel of nano modification and preparation method thereof
CN109251657A (en) * 2018-08-20 2019-01-22 安徽晟然绝缘材料有限公司 A kind of high softening breakdown match gram modified poly ester imide wire coating enamel and preparation method thereof

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101613572A (en) * 2009-07-22 2009-12-30 常州市智通树脂有限公司 A kind of polyesterimide wire enamel and preparation method thereof
CN104130699A (en) * 2014-07-18 2014-11-05 上海晟然绝缘材料有限公司 High adhesion and solvent resistant insulating paint for polyester imide enameled wire and preparation method thereof
CN109021817A (en) * 2018-08-20 2018-12-18 安徽晟然绝缘材料有限公司 A kind of transparent Inverter fed motor polyesterimide wire enamel of nano modification and preparation method thereof
CN109251657A (en) * 2018-08-20 2019-01-22 安徽晟然绝缘材料有限公司 A kind of high softening breakdown match gram modified poly ester imide wire coating enamel and preparation method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112226154A (en) * 2020-10-20 2021-01-15 安徽晟然绝缘材料有限公司 High-strength polyesterimide wire enamel and preparation method thereof

Similar Documents

Publication Publication Date Title
JP5649955B2 (en) Method for improving the thermal properties of wire enamel
US20120247806A1 (en) Corona discharge-resistant insulating varnish composition comprising surface-treated silica and insulated wire having insulated layer formed using the same
JP2002206060A (en) Varnish composition, method for manufacturing the composition, coated winding wire and resultant coil
US20230079070A1 (en) Atf oil and corona-resistant enameled wire for electric vehicle motor and preparation method thereof
CN107936572A (en) A kind of high transparency heat oxygen aging resistance add-on type liquid silicon rubber and preparation method thereof
CN102732147A (en) Preparation method for nanometer mesoporous particle modified corona resistance wire enamel
CN109021817A (en) A kind of transparent Inverter fed motor polyesterimide wire enamel of nano modification and preparation method thereof
CN110684461A (en) Layered inorganic nano-material modified corona-resistant polyesterimide wire enamel and preparation method thereof
CN112375255B (en) Nano-filler and epoxy composite insulating material, preparation method thereof and epoxy composite insulating part
Yang et al. Enhanced ultra violet resistance of epoxy nanocomposites filled with liquid-like graphene oxide/silicon dioxide nanofluid
JP2014129466A (en) Insulation resin material for high voltage equipment, and high voltage equipment using the same
CN108659242A (en) A kind of corona-resistant polyimide film and preparation method thereof
CN110698977A (en) Layered inorganic nano-material modified corona-resistant polyamideimide wire enamel and preparation method thereof
CN110628320A (en) Special polyamideimide enameled wire insulating varnish for small flat wire and preparation method thereof
CN111004507B (en) Preparation method and application of cross-linked polyetherimide dielectric composite film
CN109825231B (en) Flame-retardant ultraviolet-resistant epoxy encapsulating adhesive and preparation method thereof
CN110713788A (en) High-breakdown-voltage polyesterimide wire enamel and preparation method thereof
CN104130700A (en) Preparation method of flexible polyester imide enameled wire insulating paint
WO2017092412A1 (en) Nano-silica hybrid vinyl phenyl silicon intermediate, preparation method therefor and use thereof in environmentally-friendly insulating paint
EP3854858A1 (en) Electrodeposition coating material and insulating coating film
CN105670415A (en) Special insulating coating for high-voltage electric wires
CN106118163A (en) A kind of wire enamel of mixed with nano-silicon dioxide and preparation method thereof
CA1168857A (en) Corona-resistant resin compositions
CN114773789B (en) Epoxy resin for closed combined electrical appliance and preparation method thereof
CN111808528A (en) Nano material modification method for high-viscosity coating, and preparation method and application of corona-resistant composite coating

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20200114

WD01 Invention patent application deemed withdrawn after publication