Our high-performance Fiberglass Piping Systems are engineered to provide superior corrosion resistance and structural integrity for the most demanding industrial environments. Whether you require pure fiberglass, sand-filled, insulated, or dual laminate pipes (compatible with PVC, CPVC, PE, PP, and PVDF), our systems are designed to transport aggressive media safely and efficiently.
Utilizing a sophisticated three-layer wall construction—comprising a chemical-resistant liner, a high-strength structural layer, and a protective UV-resistant top coat—our piping solutions ensure long-term operational stability. By adhering to rigorous international standards such as DIN, ASTM, AWWA, and ISO, we deliver a versatile piping infrastructure that outperforms traditional steel and concrete in both weight and durability.
| Material Types | Pure FRP, Sand Pipe, Insulation, Dual Laminate | Liner Options | PVC, CPVC, PE, PP, PVDF, etc. |
|---|---|---|---|
| Standard Lengths | 6m or 12m (Custom lengths available) | Wall Structure | Liner, Structural Layer, Top Coat |
| Compliance | DIN, ASTM, AWWA, ISO Standards | Joint Methods | Butt, Spigot & Bell, Flange, Lock Joint |
| Weight Ratio | <20% of Steel, <10% of Concrete | Thermal Property | Low Thermal Conductivity |
| Surface Finish | UV and Chemical Resistant Top Coat | Testing Protocol | Hydrostatic Pressure Testing |
Tailored liner materials provide optimal resistance to a wide variety of aggressive chemical media.
Significantly reduced long-term upkeep costs compared to metallic piping systems.
Stronger than steel on an equal weight basis, ensuring structural reliability with less mass.
Coefficient of friction is over 25% better than steel, improving flow efficiency.
Excellent resistance to deformation, maintaining precise geometry under operational loads.
Low thermal conductivity prevents heat loss and protects surrounding infrastructure.
Wind mylar, spray resin, and apply surface mat for a stable base.
Creation and curing of the inner liner to ensure chemical resistance.
Integration of mixing materials or mortar to increase structural rigidity.
Precision winding to meet longitudinal and hoop strength requirements.
Advanced far-infrared ray curing for uniform polymerization.
Hydraulic extraction followed by rigorous hydrostatic pressure tests.
| Feature | Fiberglass (FRP) | Traditional Steel |
|---|---|---|
| Installation Speed | Very High (Lightweight) | Slow (Heavy Machinery) |
| Corrosion Life | Extremely Long | Limited (Requires Coating) |
| Maintenance Cost | Very Low | High (Rust Treatment) |
| Fluid Efficiency | High (Smooth Bore) | Moderate (Scale Build-up) |
| Total Cost of Ownership | Low (Long Term) | High (Replacement Cycle) |
Dual laminate pipes combine a thermoplastic liner (like PVC or PVDF) for ultimate chemical resistance with a fiberglass outer layer for mechanical strength, offering the best of both worlds.
Our products are designed and manufactured to meet various national and international standards, including DIN, ASTM, AWWA, and ISO.
We offer several joint methods depending on the application, including butt joints, spigot and bell joints, flange joints, and lock joints.
Yes, while our standard lengths are 6m and 12m, customized lengths can be realized through precision cutting to meet your specific project needs.
FRP pipes are significantly lighter (less than 10% of the weight of concrete) and offer vastly superior corrosion resistance and a lower coefficient of friction.
Every pipe undergoes a strict quality control process, concluding with a hydrostatic test to ensure it is leak-proof and meets pressure requirements before release.