Polyester Spiral Mesh Conveyor Belt for Roll-to-Roll UV Printing Machine
A Polyester Spiral Mesh Conveyor Belt designed for roll-to-roll UV printing machines is a specialized belt engineered to ensure smooth, stable, and precise material transport during high-speed UV printing processes.
Product Overview
The polyester spiral mesh conveyor belt is woven from high-quality polyester monofilament yarns formed into spiral loops. These loops are interlinked by crosswise pintle wires or connector rods, creating a stable, air-permeable mesh structure ideal for roll-to-roll UV printing systems.
Key Features
High Dimensional Stability: Maintains precise alignment and tension during continuous printing cycles.
Excellent Air Permeability: Allows efficient UV curing and heat dissipation without trapping ink vapors or heat.
Smooth, Flat Surface: Ensures even substrate support, preventing wrinkles or print defects.
Anti-Static Options Available: Reduces dust attraction and static buildup common in UV curing environments.
Heat and Chemical Resistance: Suitable for use under intense UV light and curing temperatures.
Non-Marking Design: Leaves no impression or contamination on sensitive substrates like films, foils, or textiles.
Typical Applications
Roll-to-roll UV digital printers
Sublimation transfer printing systems
Screen printing dryers and textile finishing lines
Packaging and coating lines requiring UV or IR curing
Technical Specifications (Typical)
Property Value
Material 100% Polyester Monofilament
Structure Spiral Mesh with Pin Joint
Thickness 1.0–2.5 mm
Air Permeability 5,000–20,000 L/m²·s (customizable)
Operating Temperature Up to 180°C
Color White / Blue / Custom
Joint Type Seamless Spiral or Pin Seam
Advantages for UV Printing
Supports consistent belt tracking for high-precision image registration.
Prevents heat distortion and substrate slippage.
Offers long service life with low maintenance needs.
Compatible with leading roll-to-roll UV printers (e.g., EFI, Mimaki, Mutoh, etc.).


English
中文
Russian
Spanish
Arabic
German




