With the increasing awareness of environmental protection and the increasingly strict environmental protection regulations, environmentally friendly coatings are becoming more and more widely used in the fields of construction, automobiles, furniture, etc. Environmentally friendly coatings not only require low VOC (volatile organic compounds) emissions, but also require excellent properties such as rapid drying, good adhesion, weather resistance, etc. DMDEE (dimorpholine diethyl ether) plays an important role in environmentally friendly coating formulations as an efficient catalyst. This article will discuss in detail the role of DMDEE in environmentally friendly coatings, especially its performance in rapid drying and excellent adhesion.
The chemical name of DMDEE is dimorpholine diethyl ether, and its chemical structure is as follows:
O
/
/
N N
/
/
O
DMDEE is a colorless to light yellow liquid with low viscosity and good solubility, compatible with a variety of resins and solvents.
Properties | value |
---|---|
Molecular Weight | 244.3 g/mol |
Density | 1.02 g/cm3 |
Boiling point | 250°C |
Flashpoint | 110°C |
Solution | Easy soluble in water, alcohols, and ethers |
DMDEE, as an environmentally friendly catalyst, has the characteristics of low toxicity and low VOC emissions, and meets the requirements of modern environmentally friendly coatings.
One of the main functions of DMDEE in environmentally friendly coatings is to accelerate the drying process of the coating. Through catalytic reactions, DMDEE can significantly shorten the surface drying and hard work time of the paint and improve production efficiency.
DMDEE catalyzed isocyanic acid in polyurethane reactionThe reaction of the ester and hydroxyl group accelerates the curing process of the coating. The catalytic mechanism is as follows:
Coating Type | Drying time (no DMDEE) | Drying time (including DMDEE) |
---|---|---|
Water-based polyurethane coating | 4 hours | 2 hours |
Solvent-based polyurethane coating | 6 hours | 3 hours |
DMDEE can not only accelerate the drying of the paint, but also significantly improve the adhesion of the paint. By optimizing the crosslinking structure of the coating, DMDEE makes the bond between the coating and the substrate stronger.
Coating Type | Adhesion (no DMDEE) | Adhesion (including DMDEE) |
---|---|---|
Water-based polyurethane coating | Level 2 | Level 1 |
Solvent-based polyurethane coating | Level 3 | Level 1 |
Note: Adhesion level 1 is better, and level 5 is worse.
DMDEE improves the adhesion of the coating through the following mechanisms:
Water-based polyurethane coating is an environmentally friendly coating with low VOC emissions and good performance. The application of DMDEE in water-based polyurethane coatings can significantly improve the drying speed and adhesion of the coating.
Ingredients | Mass score (%) |
---|---|
Water-based polyurethane resin | 60 |
Water | 30 |
DMDEE | 1 |
Other additives | 9 |
Performance | No DMDEE | Includes DMDEE |
---|---|---|
Drying time | 4 hours | 2 hours |
Adhesion | Level 2 | Level 1 |
Water resistance | Good | Excellent |
Solvent-based polyurethane coatings have high VOC emissions, but still have irreplaceable advantages in some special applications. The application of DMDEE in solvent-based polyurethane coatings can significantly improve the drying speed and adhesion of the coating.
Ingredients | Mass score (%) |
---|---|
Solvent-based polyurethane resin | 50 |
Solvent | 40 |
DMDEE | 1 |
Other additives | 9 |
Performance | No DMDEE | Includes DMDEE |
---|---|---|
Drying time | 6 hours | 3 hours |
Adhesion | Level 3 | Level 1 |
Weather resistance | Good | Excellent |
DMDEE, as an environmentally friendly catalyst, has the characteristics of low VOC emissions and meets the requirements of modern environmentally friendly coatings. By using DMDEE, VOC emissions during coating production are significantly reduced.
DMDEE has low toxicity and has less impact on the human body and the environment. During coating production and use, the use of DMDEE can reduce the harm to workers and the environment.
The production and use process of DMDEE is in line with the concept of sustainable development. By using DMDEE, paint manufacturers can reduce negative impacts on the environment and improve the environmental performance of their products.
With the increasing strictness of environmental protection regulations and the increasing awareness of consumers’ environmental protection, the market demand for environmentally friendly coatings continues to grow. As an efficient and environmentally friendly catalyst, DMDEE has broad application prospects in environmentally friendly coatings.
In the future, the technological development trend of DMDEE will mainly focus on the following aspects:
Although DMDEE has in environmentally friendly coatingsSignificant advantages, but its marketing still faces some challenges:
DMDEE bimorpholine diethyl ether plays an important role in environmentally friendly coating formulations, especially in rapid drying and excellent adhesion. By catalyzing the polyurethane reaction, DMDEE can significantly shorten the drying time of the coating and improve production efficiency. At the same time, DMDEE significantly improves the adhesion of the coating and enhances the mechanical strength and durability of the coating by optimizing the crosslinking structure of the coating. In addition, DMDEE has environmental advantages such as low VOC emissions, low toxicity and sustainability, and meets the requirements of modern environmentally friendly coatings. Although DMDEE still faces some challenges in the market, its application prospects in environmentally friendly coatings are broad and is expected to become an important catalyst in the field of environmentally friendly coatings in the future.
(Note: This article is fictional content and is for reference only.)
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