Plastic Modification | Specialized Solutions for Enhancing Polymer Performance

Plastic Modification

Product Introduction

This series is specifically engineered to overcome the performance limitations of conventional polymer systems, effectively improving toughness, structural support, and elasticity.
These integrated material solutions are designed to enhance multiple performance characteristics simultaneously.

Our solutions includes:

  • Engineering plastic modification. (PA/ PC/ ABS/ ABS+PC)
  • Toughness modifiers for PP / PS materials.
  • Performance-enhancing materials for EVA foaming.

Widely applied in consumer products, footwear, industrial components, and sporting goods.

Key Advantages of Plastic Modification Thermoplastic Elastomers (TPEs)

Mechanical Performance Enhancement

Toughness & Impact Resistance Improvement
Increased elongation and reduced brittleness
Enhanced low-temperature crack resistance
Strength & Rigidity Enhancement
Improved tensile strength and flexural modulus
Better structural support performance

Processing Performance Optimization

Improved Flowability
Improved melt flow characteristics
Enhanced injection molding stability
Increased Processing Efficiency
Easier demolding
Smoother surface finish
Cost Optimization
Reduced material cost through filler integration
Improved material utilization efficiency

Applications

Plastic Modification Thermoplastic Elastomers (TPEs) are widely used in:

Automotive applications (impact resistance, heat resistance)
Footwear materials (elasticity, foaming performance)
Packaging materials (transparency, flexibility)
Construction materials (weather resistance)
Electronics (heat resistance, dimensional stability)

Achieving maximum performance enhancement with minimal material modification.

Product Series

M9916 | High-Performance Impact Modifier for Engineering Plastics

M9916 is a high-performance modifier specifically developed for engineering plastics (PA/PC/ABS/ABS+PC/ TPU). It can effectively improve the toughness and impact resistance of engineering plastics, improve the brittleness of materials under low temperature or high stress environments, and maintain excellent processing stability and product appearance quality.

Features

  • Significantly improves material toughness
  • Enhanced impact resistance and crack resistance
  • Improved low-temperature shock performance
  • Good dispersibility and processing stability
  • Improved product reliability and service life
  • Minimal impact on the material's original mechanical properties
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PSN | High Toughness Impact Modifier for Polystyrene (PS)

PSN is a specialized elastomeric modifier developed for Polystyrene (PS) materials. It effectively resolves the inherent brittleness and excessive rigidity of conventional PS, making it especially suitable for recycled PS upgrading and impact-resistant applications.

Features

  • Excellent compatibility with PS
  • Significantly improves impact strength and toughness
  • Flexible addition ratio (approximately 1–10%) for greater formulation freedom
  • Cost-effective PS modification solution balancing performance and economy
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R1010 | High-Performance Impact Modifier for Polypropylene (PP)

P95A is a high-hardness thermoplastic elastomer specifically developed for footwear structural applications, particularly Heel Counter applications. It provides excellent structural support while maintaining outstanding elastic recovery performance.

Key Benefits

  • High hardness (approximately Shore 95A) with excellent support capability
  • Outstanding resilience with reduced long-term deformation and fatigue
  • Excellent weather resistance and dimensional stability
  • Natural white appearance suitable for post-processing and design flexibility

Typical Applications

  • Heel Counters
  • High-rigidity footwear structural components
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TP-36 | EVA Foam Modification Agent

TP-36 EVA Foaming Modifier is a functional material specially designed for EVA foaming systems. It effectively enhances elasticity, durability, anti-slip performance, and dimensional stability of foamed products.

Key Benefits

  • Improves tensile strength and elongation after foaming
  • Reduces compression set and shrinkage
  • Enhances anti-slip performance in both dry and wet conditions
  • Provides more uniform foam cell structure with improved appearance and comfort

Typical Applications

  • EVA foamed footwear materials
  • Yoga mats and sports mats
  • Safety pads, toys, and leisure products
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