Eco-Friendly PVC Plasticizer for Enhanced Flame Retardancy
A sustainable solution replacing chlorinated paraffin for superior performance and safety in PVC applications.
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Dioctyl Terephthalate
An advanced, environmentally conscious plasticizer offering significant advantages over traditional alternatives, especially in flame retardant applications for PVC.
- Discover an eco-friendly PVC plasticizer that effectively replaces chlorinated paraffin, contributing to greener manufacturing processes and safer end products.
- Enhance flame retardancy and reduce reliance on antimony trioxide by utilizing this versatile plasticizer in your formulations.
- Benefit from improved mechanical properties like tensile strength, low rigidity, and excellent flexibility, crucial for durable wire insulation and other PVC goods.
- Ensure regulatory compliance with EU REACH, ROHS, and 16 Phthalate standards, making it ideal for export markets and environmentally sensitive applications.
Key Product Advantages
Superior Environmental Profile
As a phthalate-free PVC plasticizer, it offers a safer alternative to traditional compounds, aligning with global sustainability trends.
Enhanced Flame Retardancy
Synergistic effects when combined with flame retardants like antimony trioxide significantly boost the flame resistance rating of PVC products.
Cost-Effective Formulation
This plasticizer helps reduce formulation costs in industries requiring flame retardancy, offering a balance of performance and economy.
Key Applications
Wire and Cable Insulation
Achieve improved tensile strength, elongation, and flexibility for high-performance wire insulation using this eco-friendly PVC plasticizer.
Leather and Film Production
Ideal for applications like artificial leather and calendered films, providing the necessary softness and durability.
Shoe Materials
Enhance the flexibility and wear resistance of shoe materials with this versatile plasticizer for shoe materials.
General PVC Products
Suitable for a wide range of PVC products requiring enhanced flame retardancy and improved physical properties.