Polyurethane hard bubbles are a high-performance material widely used in construction, home appliances, automobiles and other fields. Its excellent thermal insulation properties, mechanical strength and durability make it the material of choice in many industries. However, in the production process of polyurethane hard bubbles, reaction speed and foam quality are two key factors, which directly affect the performance and production efficiency of the product. As a highly efficient catalyst, DMAEE (dimethylaminoethoxy) plays a crucial role in the production of polyurethane hard bubbles. This article will discuss in detail the key role of DMAEE in the production of polyurethane hard foam, especially its improvement in reaction speed and foam quality.
DMAEE (dimethylaminoethoxy) is an organic compound with the chemical formula C6H15NO2. It is a colorless to light yellow liquid with a slight ammonia odor. DMAEE is mainly used as a catalyst in the production of polyurethane hard foam, which can significantly improve the reaction speed, improve the foam structure, and improve product quality.
The chemical structure of DMAEE is as follows:
CH3
|
CH3-N-CH2-CH2-O-CH2-CH2-CH2-OH
Its molecule contains two methyl groups (-CH3), an amino group (-NH-), an ethoxy group (-O-CH2-CH2-) and a hydroxy group (-OH).
Properties | value |
---|---|
Molecular Weight | 133.19 g/mol |
Boiling point | 220-222°C |
Density | 0.94 g/cm3 |
Flashpoint | 93°C |
Solution | Easy soluble in water and organic solvents |
The mechanism of action of DMAEE in the production of polyurethane hard bubbles is mainly reflected in the following aspects:
DMAEE, as an efficient catalyst, can accelerate the reaction between isocyanate and polyol and promote the formation of polyurethane chains. Its catalytic effect is mainly achieved through the following steps:
DMAEE can not only accelerate the reaction, but also improve the structure of the foam by regulating the nucleation and growth process of the foam. Specifically manifested as:
Reaction speed is a key parameter in the production of polyurethane hard bubbles, which directly affects production efficiency and product quality. DMAEE significantly improves the response speed by:
Gel reaction is a critical step in the formation of polyurethane hard bubbles, and DMAEE can significantly accelerate this process. Specifically manifested as:
Foaming reaction is another key step in the formation of polyurethane hard bubbles. DMAEE can control the foaming reaction by:
Catalyzer | Gel time (seconds) | Foaming time (seconds) |
---|---|---|
Catalyzer-free | 120 | 90 |
DMAEE (0.5%) | 60 | 45 |
DMAEE (1.0%) | 40 | 30 |
DMAEE (1.5%) | 30 | 20 |
It can be seen from the table that with the increase of DMAEE addition, the gel time and foaming time are significantly shortened, and the reaction speed is significantly improved.
Foam quality is another key factor in the production of polyurethane hard foam, which directly affects the performance and application of the product. DMAEE significantly improves foam quality by:
DMAEE can improve the structure of the foam by regulating the nucleation and growth process of the foam. Specifically manifested as:
DMAEEBy improving the foam structure, the mechanical properties of the foam are significantly enhanced. Specifically manifested as:
Catalyzer | Bubble Distribution | Closed porosity (%) | Compressive Strength (kPa) | Modulus of elasticity (MPa) |
---|---|---|---|---|
Catalyzer-free | Ununiform | 85 | 150 | 0.8 |
DMAEE (0.5%) | More even | 90 | 180 | 1.0 |
DMAEE (1.0%) | Alternate | 95 | 200 | 1.2 |
DMAEE (1.5%) | very even | 98 | 220 | 1.5 |
It can be seen from the table that with the increase of DMAEE addition, the bubble distribution becomes more uniform, the closed cell rate is significantly improved, the compressive strength and elastic modulus are significantly enhanced, and the foam quality is significantly improved.
parameters | value |
---|---|
Appearance | Colorless to light yellow liquid |
Molecular Weight | 133.19 g/mol |
Boiling point | 220-222°C |
Density | 0.94 g/cm3 |
Flashpoint | 93°C |
Solution | Easy soluble in water and organic solvents |
Recommended additions | 0.5%-1.5% |
In the production of building insulation materials, DMAEE is widely used in the production of polyurethane hard bubbles. By adding DMAEE, the reaction speed is significantly improved, the production cycle is shortened, and the thermal insulation performance and mechanical strength of the foam are improved, meeting the high performance requirements of building insulation materials.
In the production of home appliance insulation materials, the application of DMAEE also achieved significant results. By adding DMAEE, the closed cell ratio and uniformity of the foam are improved, the insulation performance and durability of the foam are enhanced, and the high performance requirements of home appliance insulation materials are met.
In the production of automotive interior materials, the application of DMAEE significantly improves the quality and performance of foam. By adding DMAEE, the structural and mechanical properties of the foam are improved, the comfort and durability of the foam are enhanced, and the high performance requirements of automotive interior materials are met.
DMAEE dimethylaminoethoxy plays a crucial role in the production of polyurethane hard bubbles. By accelerating the reaction speed, improving the foam structure and improving the foam quality, DMAEE significantly improves the properties of polyurethane hard foamEnergy and productivity. In practical applications, DMAEE is widely used in construction, home appliances, automobiles and other fields, meeting the needs of high-performance materials. By reasonably controlling the addition amount and use conditions of DMAEE, the production process of polyurethane hard foam can be further optimized, and product quality and market competitiveness can be improved.
References
Extended reading:http://m.gengheonline.cn/archives/category/products/page/71
Extended reading:https://www.bdmaee.net/wp-content/uploads/2022/08/Polyurethane-Catalyst-T-12-CAS-77-58-7-Niax-D-22.pdf
Extended reading:https://www.bdmaee.net/pc-cat-td100-catalyst/
Extended reading:http://m.gengheonline.cn/archives/1114
Extended reading:https://www.bdmaee.net/wp-content/uploads/2021/05/2-6.jpg
Extended reading:https://www.bdmaee.net/dimethylaminoethoxyethanol/
Extended reading:http://m.gengheonline.cn/archives/44992
Extended reading:https://www.cyclohexylamine.net/dibbutyl-stannane-diacetate-bis-acetoxy-dibbutyl-stannane/
Extended reading:http://m.gengheonline.cn/archives/1832
Extended reading:https://www.bdmaee.net/wp-content/uploads/2022/08/-RP205-Addocat-9727P-high-efficiency-amine-catalyst.pdf