Aquastop TPO – Heat-Weldable TPO Roofing Waterproofing Membrane

Description

Aquastop TPO is a high-performance thermoplastic polyolefin (TPO) waterproofing membrane engineered for modern roofing systems. Designed for both new construction and re-roofing applications, it delivers superior durability, flexibility, and long-term weather resistance.

Manufactured using advanced polymerization and hot-melt extrusion technology, the membrane ensures complete scrim encapsulation, resulting in enhanced mechanical strength and reliability. Its heat-weldable properties enable seamless surface fusion, eliminating weak joints and ensuring a continuous waterproof barrier.

Aquastop TPO provides exceptional resistance to UV radiation, ozone, extreme temperatures, and environmental pollutants, making it ideal for exposed roofing conditions. Reinforced with polyester fabric, it offers excellent tear resistance and dimensional stability, ensuring long-lasting performance even under mechanical stress and thermal movement.

  • Type: Thermoplastic Polyolefin (TPO) membrane
  • Application: Roofing (new construction and re-roofing)
  • Installation Method: Heat-welded seams
  • Reinforcement: Polyester fabric reinforced
  • Roll Size: 30.48 m (100 feet)
  • UV Resistance: Excellent
  • Temperature Resistance: High resistance to extreme temperatures
  • Chemical Resistance: Resistant to acids, bases, and exhaust emissions
  • Fire Resistance: High
  • Impact Resistance: Excellent
  • Ozone Resistance: Excellent

Advanced Polymerization Technology

  • Ensures superior flexibility, durability, and long-term performance under harsh environmental conditions.

Heat-Weldable Seam Technology

  • Provides seamless fusion of joints, eliminating leakage risks and ensuring complete waterproofing integrity.

Hot-Melt Extrusion Process

  • Delivers full scrim encapsulation for enhanced structural strength and uniform membrane thickness.

Polyester Fabric Reinforcement

  • Improves tear resistance, dimensional stability, and mechanical strength under stress.

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