Core Advantages of HY-9100RM Resin – Designed for Road Marking Applications Apr 29, 2025

Exceptional Weather Resistance

  • UV Degradation Resistance: Through deep hydrogenation, HY-9100RM’s molecular structure ensures high stability, resisting long-term UV exposure to prevent marking yellowing or chalking, extending service life by over 30%.

  • Humidity, Heat, and Oxidation Resistance: Maintains film integrity in high-temperature, high-humidity environments, ideal for coastal or rainy regions.

Superior Thermal Stability (Softening Point: 95-110°C)

  • Compatible with high-temperature processing in thermoplastic road marking coatings (180-200°C melting), ensuring smoke-free, odorless application without decomposition or yellowing.

  • Excellent compatibility with base materials like petroleum asphalt and EVA wax, enabling uniform melting and smooth application.

Fast Drying & Strong Adhesion

  • Rapid solvent release in solvent-based formulations reduces surface drying time (≤5 minutes), minimizing road closure periods.

  • Robust adhesion to asphalt or concrete substrates, reducing peeling risks under heavy traffic.

High Transparency & Low Impurity

  • Gardner Color 0-1 (near water-white), ensuring vibrant pigment dispersion for vivid markings.

  • Ash content ≤0.1% and acid value ≤1.0 mg KOH/g, eliminating impurities that compromise coating stability or corrode substrates.

Environmental Adaptability

By adjusting resin-to-elastic polymer ratios (e.g., blending with SBS), HY-9100RM enhances low-temperature flexibility (crack-free at -20°C), ideal for frigid northern climates.

How HY-9100RM Solves Industry Challenges?

  Traditional Issues

  HY-9100RM Solutions

  Fading/chalking of markings   UV-resistant molecular structure enhances weather resistance by 2-3x 
  Yellowing/smoke during high-temperature processing   Adjustable softening point (95-110°C) ensures thermal stability, no decomposition
  Low-temperature cracking/poor adhesion   Elastic polymer blending improves flexibility, adhesion ≥3 MPa
  Rapid loss of glass bead reflectivity   High-transparency matrix protects beads, extending retroreflection durability

 

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