600D Flame-Retardant Polyester Oxford Fabric with PVC Coating
Custom woven polyester fabric for heavy-duty bags, equipment covers, awnings and industrial soft goods. Typical finished weight 400-550 gsm, with flame-retardant and PVC coating options developed to the buyer's end-use requirements.
600D Flame-Retardant Polyester Oxford Fabric with PVC Coating Designed for B2B fabric sourcing where durability, coating construction and flame-test requirements must be coordinated before production. The fabric uses a woven 100% polyester base and can be customized for color, hand feel, water resistance and finishing route.
Material: 100% woven polyester Construction: 600D Oxford Coating: PVC, customizable Typical finished weight: 400-550 gsm (customizable; final weight depends on yarn, density and coating build) Standard finished width: 150 cm / 58-60 in; other widths subject to confirmation Color: custom-dyed to approved lab dip Water resistance: customizable; target hydrostatic pressure must be confirmed
Recommended applications: heavy-duty bags, equipment covers, awnings and industrial soft goods. Suitability must be evaluated on the complete product construction, including seams, accessories, coatings and intended service conditions.
Available options: finished weight, width, color, weave density, PVC coating build, water resistance, hand feel, anti-UV treatment and packaging. MOQ, lead time and sample charges depend on the confirmed construction.
Flame-retardant performance is customized to the buyer's target application. The required standard, test method, specimen conditioning, coating construction and acceptance criteria must be confirmed before sampling and bulk production. Final compliance is subject to testing of the actual supplied construction. ASTM D6413/D6413M is a textile vertical-flame test method, while NFPA 701 addresses flame propagation of textiles and films; neither reference alone defines suitability for every end use. References: https://store.astm.org/d6413_d6413m-22.html ; https://link.nfpa.org/all-publications/655/2023