Anti-Slip UV Resistant Rough-Sprayed Geomembrane with Customizable Thickness for Slope Anti-Seepage Projects
Product Description
Product Overview
This rough-sprayed geomembrane is a high-performance anti-seepage material available in single or double rough surface configurations. Manufactured using premium smooth geomembrane base material with precision rough spraying technology, it incorporates double-anti masterbatch for superior UV radiation and oxidation resistance, ensuring extended service life in demanding outdoor environments.
Key Features & Benefits
Superior Anti-Slip Performance: Rough surface design significantly increases friction coefficient between geomembrane and slope soil, preventing slippage and enhancing anti-seepage system stability
Undamaged Base Integrity: Precision spraying process preserves base geomembrane, maintaining stable mechanical properties including tensile strength (12-48 N/mm) and puncture strength (200-800 N)
Customizable Design: Single or double-sided rough surface options to accommodate various slope angles and project specifications
Durable & Reliable: Complies with national standards, offering strong corrosion resistance, aging resistance, and long-term performance stability
Technical Specifications
Property
Specification Range
Tensile Strength
12-48 N/mm
Puncture Strength
200-800 N
Surface Options
Single or Double Rough Surface
Overlap Width
10-15 cm
Application Scenarios
Ideal for slope sections in anti-seepage projects, providing reliable anti-seepage and anti-slip protection for various engineering applications:
Landfill Anti-Seepage (Slope Protection)
Tailings Ponds (Slope Anti-Seepage)
Reservoirs (Bank Slope Reinforcement)
Irrigation Canals (Slope Anti-Seepage)
Project Closure Projects
Installation Guidelines
Lightweight and flexible for easy transport and installation. Material can be cut to fit specific slope contours. Installation requires a flat, clean base surface with 10-15cm overlap between adjacent geomembranes. Secure using hot-melt welding or mechanical fixing methods to ensure joint integrity and overall anti-seepage system stability.