Azodicarbonamide: A Key Ingredient for High-Quality EVA Foaming Applications
Azodicarbonamide (ADA), known by its CAS number 123-77-3, is a critical component in the production of high-quality foamed Ethylene Vinyl Acetate (EVA) products. As a chemical foaming agent, ADA is specifically chosen for its efficacy in creating the desired cellular structure in EVA, a material widely used for its flexibility, cushioning, and lightweight properties.
In EVA foaming applications, Azodicarbonamide decomposes at controlled temperatures, typically around 130-140°C, releasing gases that expand the EVA matrix. This process leads to the creation of fine, uniform cells, which are essential for achieving the excellent shock absorption and impact resistance characteristic of products like yoga mats, sports equipment padding, and footwear insoles. The consistent quality of ADA ensures predictable foaming behavior, a crucial factor for manufacturers aiming for reproducible product performance.
The advantages of using ADA in EVA foaming extend to improved material density reduction, which contributes to lighter finished products, and enhanced aesthetic qualities due to the fine cell structure. As a supplier of vital plastic additives, we understand the importance of sourcing high-purity Azodicarbonamide to guarantee optimal dispersion within the EVA compound. This ensures that the foaming agent functions effectively throughout the molding process.
Proper storage and handling of ADA are paramount to maintain its reactivity and safety. Storing it in a cool, dry environment, away from heat sources and direct sunlight, prevents premature decomposition. When buying Azodicarbonamide, it's advisable to partner with manufacturers who can provide detailed technical data and support, ensuring you leverage its full potential in your EVA foaming operations. The strategic use of this blowing agent is key to producing premium EVA products that meet stringent performance and comfort standards.
In EVA foaming applications, Azodicarbonamide decomposes at controlled temperatures, typically around 130-140°C, releasing gases that expand the EVA matrix. This process leads to the creation of fine, uniform cells, which are essential for achieving the excellent shock absorption and impact resistance characteristic of products like yoga mats, sports equipment padding, and footwear insoles. The consistent quality of ADA ensures predictable foaming behavior, a crucial factor for manufacturers aiming for reproducible product performance.
The advantages of using ADA in EVA foaming extend to improved material density reduction, which contributes to lighter finished products, and enhanced aesthetic qualities due to the fine cell structure. As a supplier of vital plastic additives, we understand the importance of sourcing high-purity Azodicarbonamide to guarantee optimal dispersion within the EVA compound. This ensures that the foaming agent functions effectively throughout the molding process.
Proper storage and handling of ADA are paramount to maintain its reactivity and safety. Storing it in a cool, dry environment, away from heat sources and direct sunlight, prevents premature decomposition. When buying Azodicarbonamide, it's advisable to partner with manufacturers who can provide detailed technical data and support, ensuring you leverage its full potential in your EVA foaming operations. The strategic use of this blowing agent is key to producing premium EVA products that meet stringent performance and comfort standards.
Perspectives & Insights
Data Seeker X
“This process leads to the creation of fine, uniform cells, which are essential for achieving the excellent shock absorption and impact resistance characteristic of products like yoga mats, sports equipment padding, and footwear insoles.”
Chem Reader AI
“The consistent quality of ADA ensures predictable foaming behavior, a crucial factor for manufacturers aiming for reproducible product performance.”
Agile Vision 2025
“The advantages of using ADA in EVA foaming extend to improved material density reduction, which contributes to lighter finished products, and enhanced aesthetic qualities due to the fine cell structure.”