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Production process for anti-fouling water-borne glue

A production process, water-based coating technology, applied in the direction of adhesives, non-polymer organic compound adhesives, etc., can solve the problems of not wide application, can not be used in many fields, large limitations, etc., to enhance storage stability, Reduce glue toxicity, good use effect

Inactive Publication Date: 2019-09-10
浙江安吉朝辉新材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The present invention provides an anti-fouling water-based glue coating production process, which aims to solve the above-mentioned existence with certain toxic and side effects, which will cause certain harm to the human body if it is used for home use, and the glue coating function is relatively single, the scope of application is not wide, and it cannot be used In many fields, very limited problems

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0017] The present invention provides a technical solution: a production process of antifouling water-based glue coating, which is made of the following raw materials in parts by weight:

[0018] 4-8 parts of isopropyl acrylate, 12-16 parts of terpene resin, 40-60 parts of water, 12-24 parts of benzoyl peroxide, 10-20 parts of dibutyl phthalate, 8-16 parts of polyester 20-30 parts of butanediol acrylate, 4-6 parts of trimethylolpropane, 10-20 parts of butanediol, 10-20 parts of methoxyphenol, 8-12 parts of acrylamide, 10-20 parts of styrene 20 parts, 15-25 parts of butyl acetate, 4-6 parts of tert-butyl peroxybenzoate, 1-3 parts of oxazolidine, 4-6 parts of silane coupling agent A-151, 1-3 parts of zinc acetate;

[0019] Concrete preparation comprises the following steps:

[0020] Step 1, respectively put methoxyphenol and dibutyl phthalate into the reaction kettle for mixing, add butanediol acrylate and isopropyl acrylate; then mix 80% of the total amount of water with the t...

Embodiment 2

[0025] In parts by weight, each raw material component is: 6 parts of isopropyl acrylate, 14 parts of terpene resin, 50 parts of water, 18 parts of benzoyl peroxide, 15 parts of dibutyl phthalate, 12 parts of polyester , 25 parts of butanediol acrylate, 5 parts of trimethylolpropane, 15 parts of butanediol, 15 parts of methoxyphenol, 10 parts of acrylamide, 15 parts of styrene, 20 parts of butyl acetate, benzoic acid peroxide 5 parts of tert-butyl ester, 2 parts of oxazolidine, 5 parts of silane coupling agent A-151, 2 parts of zinc acetate;

[0026] Concrete preparation comprises the following steps:

[0027] Step 1, respectively put 15 parts of methoxyphenol and 15 parts of dibutyl phthalate into the reactor for mixing, then add 25 parts of butanediol acrylate and 6 parts of isopropyl acrylate into the reactor; Mix 40 parts of water with 7.5 parts of butanediol, then add it into the reactor to stir it, and gradually heat it up; that is, mix the compatible methoxyphenol and ...

Embodiment 3

[0032] In parts by weight, the raw material components are: 4 parts of isopropyl acrylate, 12 parts of terpene resin, 40 parts of water, 12 parts of benzoyl peroxide, 10 parts of dibutyl phthalate, and 8 parts of polyester , 20 parts of butanediol acrylate, 4 parts of trimethylolpropane, 10 parts of butanediol, 10 parts of methoxyphenol, 8 parts of acrylamide, 10 parts of styrene, 15 parts of butyl acetate, benzoic acid peroxide 4 parts of tert-butyl ester, 1 part of oxazolidine, 4 parts of silane coupling agent A-151, 1 part of zinc acetate

[0033] Concrete preparation comprises the following steps:

[0034] Step 1, respectively put 10 parts of methoxyphenol and 10 parts of dibutyl phthalate into the reactor for mixing, then add 20 parts of butanediol acrylate and 4 parts of isopropyl acrylate into the reactor; Mix 1 part of water with 5 parts of butanediol, then add it into the reactor to stir, and gradually heat up; control the stirring speed to 110r / min, and the heating ...

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Abstract

The invention discloses a production process for anti-fouling water-borne glue. The anti-fouling water-borne glue is prepared from the following raw materials: in parts by weight, 4-8 parts of isopropyl acrylate, 12-16 parts of terpene resin, 40-60 parts of water, 12-24 parts of benzoyl peroxide, 10-20 parts of dibutyl phthalate, 8-16 parts of polyester, 20-30 parts of butanediol acrylate, 4-6 parts of trimethylolpropane, 10-20 parts of butanediol, 10-20 parts of methoxyphenol, 8-12 parts of acrylamide, 10-20 parts of styrene, 15-25 parts of butyl acetate, 4-6 parts of tert-butyl peroxybenzoate, 1-3 parts of oxazolidine, 4-6 parts of a silane coupling agent A-151 and 1-3 parts of zinc acetate. The production process has the advantages of simple manufacture, low toxicity, small impact on the environment, a good application effect of glue, environmental protection and storage stability, and is mainly applied to production of water-borne glue.

Description

technical field [0001] The invention belongs to the technical field of chemicals, and in particular relates to an antifouling water-based glue production process. Background technique [0002] Glue plays a very important role in production and life. It is widely used in various fields. The coating film formed by glue can decorate, protect and mark objects. Although most of the glue on the market is simple to make and cheap It is cheap but has certain toxic and side effects at the same time. It will cause certain harm to the human body if it is used for home use, and the glue application function is relatively simple, the scope of application is not wide, and it cannot be used in many fields, with great limitations. Contents of the invention [0003] The invention provides an antifouling water-based glue coating production process, which aims to solve the above-mentioned existence with certain toxic and side effects, which will cause certain harm to the human body if it...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09J4/02C09J4/06
CPCC09J4/06
Inventor 刘成新
Owner 浙江安吉朝辉新材料有限公司
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