CAS · 1675-54-3
Product Overview
Bisphenol A diglycidyl ether is a high-purity resins supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance: | Light yellow liquid |
|---|---|
| Assay (GC): | 85% min |
Applications
1. Epoxy Resin Production
Primary monomer for producing epoxy resins, widely used in coatings, adhesives, sealants, and composites.
Reacts with curing agents (amines, acids, anhydrides) to form highly cross-linked thermoset polymers.
2. Protective Coatings
Applied in industrial and marine coatings for excellent chemical, thermal, and moisture resistance.
Used in can coatings to protect food and beverages from metal contamination (although under increasing scrutiny for BPA migration).
3. Adhesives and Sealants
Serves as a key component in strong, chemically resistant adhesives, especially for metal, glass, and ceramics.
Common in construction, aerospace, and electronics applications.
4. Composites and Encapsulation
Used to produce fiberglass-reinforced plastics and other composite materials with high mechanical strength.
Essential in electronic encapsulation to protect sensitive components from moisture, heat, and corrosion.
5. 3D Printing and Advanced Materials
Increasingly used in UV-curable or thermosetting formulations for additive manufacturing and high-performance plastics.
Benefits
Excellent Mechanical Strength: Produces resins with high adhesion, toughness, and dimensional stability.
Thermal and Chemical Resistance: End products withstand harsh environments and chemicals.
Versatile Reactivity: Compatible with a wide range of curing agents and fillers.
Durability: Ensures long service life for industrial and protective coatings.
Broad Industrial Utility: A cornerstone material across construction, electronics, automotive, and aerospace sectors.
Conclusion
Bisphenol A Diglycidyl Ether (CAS 1675-54-3) is a vital building block for epoxy resins, known for producing high-performance materials with strong adhesion, thermal resistance, and chemical durability. Widely used in coatings, adhesives, electronics, and composites, BADGE plays a foundational role in industrial chemistry, despite growing health and environmental scrutiny that has led to innovations in BPA-free and safer alternatives.
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