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Synthesis process of a high-performance self-crosslinking waterborne polyurethane self-dulling resin

A water-based polyurethane and synthetic process technology, applied in the direction of polyurea/polyurethane coatings, coatings, etc., can solve the problems of decreased physical and chemical properties of the coating film, poor permeability, economic loss, etc. Good, increase the effect of economic benefits

Active Publication Date: 2021-10-26
安徽圣达生物药业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the latex particles of the coating are relatively large, and the latex particles cannot be well fused during the film forming process, resulting in imperfect film formation, resulting in a decrease in the physical and chemical properties of the coating film, low strength, poor adhesion to the substrate, and poor permeability. To show the color of the coating film substrate, there will be foggy phenomenon. In order to avoid this situation, it is necessary to add a large amount of crosslinking agent, such as aziridine, isocyanate or blocked crosslinking agent, etc., to strengthen the polyurethane particles. Adhesion, improve the film-forming properties of the coating, such as scratch resistance, abrasion resistance, weather resistance, etc.
[0005] Aziridine and isocyanate cross-linking agents are two-component, generally must be used up within 12 hours, expired and invalid, it is extremely inconvenient for customers to use, if they are not used up in time under special circumstances, certain economic losses will be caused; closed delivery The linking agent needs a high temperature above 110°C, and the cross-linking effect can be achieved after about 20 minutes of unsealing, which consumes a lot of energy, so the economic benefit decreases

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] A preparation method of silicone-modified water-based polyurethane self-dulling resin WPU1 containing carboxyl crosslinking groups, specifically comprising the following steps:

[0029] In the reaction flask that stirrer, thermometer, reflux condenser are equipped with, add 222g (1mol) isophorone diisocyanate (polyisocyanate), 481g (0.331mol) molecular weight is the polyoxypropylene glycol of 2000, 111g ( 0.046mol) of ethylene glycol-terminated silicone polyether silicone oil OFX-3667, heated to 85°C for 2 hours of polymerization reaction, cooled to 60°C, then added 1.85g (0.014mol) trimethylolpropane, 11.1g (0.082mol) ) Dimethylolpropionic acid, 72.5g (0.74mol) N-methylpyrrolidone solution, heated to 80°C for polymerization reaction for 4 hours, until the residual amount of -NCO was 6.1%, to obtain the pre-product;

[0030] Add the pre-product to the dispersion equipment, add 0.08mol triethylamine and stir for 2 minutes under high-speed dispersion state, add 24.4g (0.0...

Embodiment 2

[0032] A silicone-modified water-based polyurethane self-matting resin WPU1 containing a carboxyl crosslinking group, comprising the following steps:

[0033] In a reaction flask equipped with a stirrer, a thermometer and a reflux condenser, add 222g (1mol) isophorone diisocyanate (polyisocyanate), 481g (0.331mol) polytetrahydrofuran diol with a molecular weight of 2000, 111g (0.046 g) mol) ethylene glycol terminated organosilicon polyether silicone oil OFX-3667, heated to 85°C for polymerization reaction for 2 hours, cooled to 60°C, then added 1.85g (0.014mol) trimethylolpropane, 11.1g (0.082mol) Dimethylolpropionic acid, 72.5g (0.74mol) N-methylpyrrolidone solution, heated to 80°C for polymerization reaction for 4 hours, until the residual amount of -NCO was 6.3%, to obtain a pre-product;

[0034] Add the pre-product to the dispersing equipment, add 0.08mol triethylamine and stir for 2 minutes under high-speed dispersion state, add 24.4g (0.058mol, moles of active ingredient...

Embodiment 3

[0036] A silicone-modified water-based polyurethane self-matting resin WPU1 containing a carboxyl crosslinking group, comprising the following steps:

[0037] In a reaction flask equipped with a stirrer, a thermometer and a reflux condenser, add 222g (1mol) isophorone diisocyanate (polyisocyanate), 481g (0.331mol) polyoxypropylene glycol with a molecular weight of 2000, 111g ( 0.046mol) ethylene glycol terminated organosilicon polyether silicone oil OFX-3667, heated to 85°C for polymerization reaction for 2 hours, cooled to 60°C, then added 1.85g (0.014mol) trimethylolpropane, 11.1g (0.082mol) ) dimethylolpropionic acid, 72.5g (0.74mol) N-methylpyrrolidone solution, heated to 80 DEG C for polymerization reaction for 4 hours, and the residual amount of -NCO was 5.9% to obtain a pre-product;

[0038] Add the pre-product to the dispersing equipment, add 0.08mol triethylamine and stir for 2 minutes under the high-speed dispersion state, add 24.4g (0.058mol, the number of moles of ...

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Abstract

The invention discloses a synthesis process of a high-performance self-crosslinking waterborne polyurethane self-dulling resin, which comprises the following steps: taking WPU1 and WPU2, adding them to a dispersion device according to the mass ratio of 1:0.1-0.3, and then adding the total mass of WPU1 and WPU2 0.5-2% silicone leveling agent, 0.05-0.1% defoamer, 0.5-2% polyurethane associative thickener, adjust the viscosity at 25°C to 800-2000mPa.s, and obtain high Properties Self-crosslinking waterborne polyurethane self-matting resin. The invention realizes normal temperature cross-linking through the emulsion in the film-forming process to form a relatively sticky polymer-polymer molecule, which increases the effective adhesion between particles and improves the film-forming property and permeability of the coating. Sex, adhesion to the base material, scratch resistance, and good chemical resistance; in the process, the production efficiency has been greatly improved, and the economic benefits have been greatly increased.

Description

technical field [0001] The invention relates to a synthesis process of a high-performance self-crosslinking waterborne polyurethane self-extinction resin, belonging to the field of waterborne polyurethane coatings. Background technique [0002] Leather finishing agent is a product for post-processing synthetic leather to give synthetic leather a special luster and feel. Matting finishing agent has a softer, natural and elegant appearance, and is widely used in leather finishing, paper finishing coating, printing glue, textile coating, special coating, etc. [0003] The traditional matting water-based polyurethane resin is to add fillers, micro-wax powder, inorganic silica and other matting agents to the polyurethane dispersion. After the coating film is dried, the matting agent floats on the surface of the coating film to produce microscopic unevenness, so as to achieve the matting effect. . However, the external addition of matting powder leads to the instability of the s...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09D175/08C09D175/06C09D175/04C08G18/75C08G18/73C08G18/76C08G18/66C08G18/61C08G18/48C08G18/32C08G18/42C08G18/10C08G18/44
CPCC08G18/10C08G18/12C08G18/4063C08G18/4238C08G18/44C08G18/4854C08G18/61C08G18/73C08G18/755C08G18/758C08G18/7671C08L2205/02C08L2205/03C09D175/08C08G18/3206C08G18/348C08G18/3231C08G18/3234C08G18/3228C08G18/3218C08L75/06C08L75/04
Inventor 刘斌许修棋
Owner 安徽圣达生物药业有限公司
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