Panneau de revêtement de sol en WPC
longueur faite sur commande composée résistante de Decking de WPC de pourriture de 150*25mm
150*25mm Rot resistant custom length traditional composite WPC decking Product Summary This professional layout introduces the rot resistant, custom length traditional composite WPC decking engineered for demanding municipal boardwalks, public parks, and eco-tourism trails. By deeply blending wood fibers with protective polymers, it completely eliminates fungal decay and rot. Supporting fully customized length specifications, it significantly reduces on-site cutting waste and
140 mm haute résistance à la flexion revêtement de sol en WPC en relief résistant au gel et au dégel
140mm Freeze-thaw resistant high flexural strength Co-extruded WPC decking Product Summary This heavy-duty engineering layout introduces the freeze-thaw resistant, high flexural strength Co-extruded WPC decking built for high-latitude municipal boardwalks, commercial plazas, and public infrastructure exposed to sub-zero freeze cycles and intense loads. Featuring a 360-degree hermetically sealed polymer cap, it cuts off moisture penetration, ensuring zero structural fractures
140 mm*20 mm Poids lourd en WPC pour terrasses extérieures résistant à l'usure
140mm*20mm Heavy duty wear resistant solid traditional WPC decking Product Summary This professional layout introduces the heavy duty, wear resistant solid traditional WPC decking engineered for high-traffic commercial plazas, public docks, and high-load scenic boardwalks. Utilizing a premium solid cross-section and dense composite core, it delivers exceptional structural load-bearing capacity and flexural strength. The surface is engineered to withstand non-stop foot traffic
Drainage rapide résistant au dégel du gel extérieur traditionnel de Decking de WPC
Freeze thaw resistant fast drainage traditional WPC decking Product Summary This engineering-grade layout introduces the freeze-thaw resistant, fast drainage traditional WPC decking built for high-latitude boardwalks, marine docks, and public infrastructure exposed to sub-zero climates. Engineered with a highly dense, cross-linked polymer matrix, it survives hundreds of rapid freeze-thaw cycles without internal structural shearing or micro-cracking. Simultaneously, the deep