Brief: We tested it—see the highlights and what to expect in real operation. This video showcases the manufacturing and application process of our High-Efficiency UV Curing Liner for trenchless pipe repair. You'll see how automated weaving machines produce fiberglass matting, the composite stage for resin impregnation, and the UV curing technology in action during installations.
Related Product Features:
Engineered for trenchless repair of underground sewers using resin and fiberglass materials.
Manufactured from core raw glass fibers with a highly automated and integrated process.
Utilizes ten sets of advanced automatic weaving machines for premium fiberglass matting production.
Enhanced composite stage integrates short chopped fibers to improve resin impregnation.
Features ten dedicated UV liner production lines for perfect curing with ultraviolet technology.
Achieves maximum daily productivity of 1.3 kilometers to meet high-volume demands.
Designed for superior product consistency, reliability, and strong bond formation.
Controlled and scalable process ensures performance and efficiency in pipeline repair.
FAQs:
What is the primary function of the High-Efficiency UV Curing Liner?
The liner is designed for trenchless repair of underground sewers, providing a durable and efficient solution without the need for extensive excavation.
What materials are used in the UV Curing Liner?
It is constructed from resin and fiberglass, starting with core raw glass fibers that are processed through automated weaving and composite stages for optimal performance.
How does the manufacturing process ensure product quality?
The process uses ten sets of automatic weaving machines and dedicated composite machines to enhance resin impregnation, resulting in strong bonds and consistent, high-quality liners.
What is the production capacity of the UV Curing Liner?
With ten dedicated UV liner production lines, the system achieves a maximum daily productivity of 1.3 kilometers, enabling reliable fulfillment of large orders and tight deadlines.