Water-based three-arm star-shaped multi-block ultraviolet-curing resin and preparation method thereof

A technology of curing resin and ultraviolet light, which is applied in coatings, polyurea/polyurethane coatings, etc., can solve problems such as adverse production effects, affecting coating effects, and difficulty in perfect mutual solubility, and achieves short curing time and reduced coating process difficulty , the effect of shortening the production cycle

Inactive Publication Date: 2018-12-14
HARBIN INST OF TECH WUXI RES INST OF NEW MATERIALS +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, it is difficult for the added inorganic filler and the organic system of the paint to dissolve perfectly, and an unstable state such as separation will inevitably occur after long-term storage. In the later storage and use, the sedimentation of the filler may cause the inorganic filler to be located at the bottom of the container, affecting the later coating. Cloth effect, causing adverse effects on production

Method used

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  • Water-based three-arm star-shaped multi-block ultraviolet-curing resin and preparation method thereof
  • Water-based three-arm star-shaped multi-block ultraviolet-curing resin and preparation method thereof
  • Water-based three-arm star-shaped multi-block ultraviolet-curing resin and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0053] Weigh 13.42g (0.1mol) of trimethylolpropane and place it in a reaction kettle, add 0.01 (changed to 0.0013)g catalyst dibutyltin dilaurate, heat to 60°C, and blow nitrogen. Weigh 66.69 g (0.3 mol) of isophorone diisocyanate and slowly add it into the reaction kettle, the feeding time is 5 hours, and the reaction is kept for 3 hours. Weigh 40.24 g (0.3 mol) of 2,2-dimethylolpropionic acid, slowly add it into the reaction kettle, the feeding time is 3 hours, and the reaction is kept for 3 hours. Weigh 66.69 g (0.3 mol) of isophorone diisocyanate and slowly add it into the reaction kettle, the feeding time is 5 hours, and the reaction is kept for 3 hours. Weigh 600 g (0.3 mol) of polyethylene glycol with a molecular weight of 2000 g / mol, slowly add it into the reaction kettle, the feeding time is 3 hours, and the reaction is kept for 4 hours. Weigh 66.69 g (0.3 mol) of isophorone diisocyanate and slowly add it into the reaction kettle, the feeding time is 5 hours, and the...

Embodiment 2

[0058] Weigh 13.42g (0.1mol) of trimethylolpropane and place it in a reaction kettle, add 0.01 (changed to 0.067)g catalyst tetraisopropyl titanate, heat to 60°C, and blow nitrogen. Weigh 66.69 g (0.3 mol) of isophorone diisocyanate and slowly add it into the reaction kettle, the feeding time is 5 hours, and the reaction is kept for 3 hours. Weigh 40.24 g (0.3 mol) of 2,2-dimethylolpropionic acid, slowly add it into the reaction kettle, the feeding time is 3 hours, and the reaction is kept for 3 hours. Weigh 66.69 g (0.3 mol) of isophorone diisocyanate and slowly add it into the reaction kettle, the feeding time is 5 hours, and the reaction is kept for 3 hours. Weigh 300 g (0.3 mol) of polyethylene glycol with a molecular weight of 1000 g / mol, slowly add it into the reaction kettle, the feeding time is 3 hours, and the reaction is kept for 4 hours. Weigh 66.69 g (0.3 mol) of isophorone diisocyanate and slowly add it into the reaction kettle, the feeding time is 5 hours, and t...

Embodiment 3

[0063] Weigh 13.42g (0.1mol) of trimethylolpropane and place it in a reaction kettle, add 0.01g of catalyst dibutyltin dilaurate, heat to 60°C, and blow nitrogen. Weigh 66.69 g (0.3 mol) of isophorone diisocyanate and slowly add it into the reaction kettle, the feeding time is 5 hours, and the reaction is kept for 3 hours. Weigh 41.14g (0.3mol) of diaminobenzoic acid, slowly add it into the reaction kettle, the feeding time is 3 hours, and keep warm for 3 hours. Weigh 66.69 g (0.3 mol) of isophorone diisocyanate and slowly add it into the reaction kettle, the feeding time is 5 hours, and the reaction is kept for 3 hours. Weigh 900 g (0.3 mol) of polyethylene glycol with a molecular weight of 3000 g / mol, slowly add it into the reaction kettle, the feeding time is 3 hours, and the reaction is kept for 4 hours. Weigh 66.69 g (0.3 mol) of isophorone diisocyanate and slowly add it into the reaction kettle, the feeding time is 5 hours, and the reaction is kept for 3 hours. Weigh 4...

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PUM

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Abstract

The invention discloses water-based three-arm star-shaped multi-block ultraviolet-curing resin and a preparation method thereof. The water-based three-arm star-shaped multi-block ultraviolet curing resin provided by the invention is provided with three crossed long chain segments, and each molecular chain sequentially contains a polyurethane sub-segment, a hydrophilic chain-expanding group, a polyurethane sub-segment, a polyethylene glycol sub-segment, a polyurethane sub-segment, a hydrophilic chain-extension group, a polyurethane sub-segment and an acrylate sub-segment from center to periphery. The preparation process of the water-based three-arm star-shaped multi-block ultraviolet curing resin disclosed by the invention is green and pollution free, has no emission problem of VOC (volatile organic compounds), accords with the low-carbon environment protection idea, and can be used to prepare a single-component coating system. The viscosity of the system can be adjusted, so that the coating process difficulty is greatly reduced. In addition, a good matte effect is generated through different crystallization performance and micro compatibility of different sub-chain segments in theresin molecular chains.

Description

technical field [0001] The invention relates to the field of ultraviolet light curing resins, in particular to a water-based three-arm star-shaped multi-block ultraviolet light curing resin and a preparation method thereof. Background technique [0002] With the upgrading of social industrial level and people's consumption level, consumers have more and more strict requirements on the appearance, touch and experience comfort of daily necessities and industrial products. Many high-end products have begun to attract the attention of the public with their beautiful and comfortable appearance and touch. The application of matte coating also arises at the historic moment. With its beautiful appearance and comfortable human physiological touch, it has gradually occupied a place in the automotive interior, electronic products and other industries, and has gradually gained more favor. Ultraviolet (UV) curing technology has become a new technology of green coating materials with gr...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08G18/67C08G18/66C08G18/48C08G18/34C08G18/32C09D175/14
CPCC08G18/3206C08G18/348C08G18/4833C08G18/6692C08G18/672C09D175/14
Inventor 白永平岳利培李卫东李晶波殷晓芬
Owner HARBIN INST OF TECH WUXI RES INST OF NEW MATERIALS
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