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Adhere to"Innovative Self-Development"Our R&D philosophy is committed to the meticulous research, design, and production of each detail in the industry of powder processing, ensuring the accuracy of the formulated solutions.


 

Concept Introduction 

According to molecular structure, epoxy resins can generally be divided into five major categories:

1. Ethylene Glycol Ether Type Epoxy Resin

2. Epoxy resins of glycerol esters

3. Aminoplasty Epoxy Resins

4. Linear alkyl aromatic epoxy resin

5. Aromatic epoxies

The epoxy resin varieties widely used in the composite materials industry, as mentioned above, are primarily the diglycidyl ether type, with bisphenol A epoxy resin being the most common. Next in line are the diglycidyl amine type epoxy resins.


Primary Applications 

Epoxy engineering plastics primarily include epoxy molding compounds and epoxy laminates used in high-pressure molding, as well as epoxy foams. Epoxy engineering plastics can also be considered a general category of epoxy composite materials. Epoxy composites mainly consist of epoxy glass fiber reinforced plastics (general-purpose composites) and structural composites such as extruded epoxy profiles, wound hollow rotary products, and high-performance composites. Epoxy composites are important structural and functional materials in high-tech fields such as chemical engineering and aerospace.


Cautionary Notes 

Generally, after curing,Plastic PowderThe epoxy resin system boasts excellent alkaline, acidic, and solvent resistance. Like other properties of the cured epoxy system, chemical stability depends on the chosen resin and hardener. Appropriately selecting epoxy resins and hardeners can confer special chemical stability properties.


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