Sep. 14, 2026
After assembly, commissioning and quality inspection, the CXWT530 Special Mesh Loom has been loaded and shipped, ready for delivery to the customer for heavy-duty filter mesh production. This delivery demonstrates our company’s R&D and manufacturing capability, delivering stable and intelligent weaving solutions for the environmental filtration industry.
The CXWT530 Special Mesh Loom is developed specifically for heavy press mesh, desulfurization mesh and heavy-duty environmental filter mesh, suitable for industrial environmental protection and material pressing applications. It weaves polyester monofilament of 0.3~1.2 mm, with weft density ranging 40~150 picks /10 cm, reed width 6300 mm–7500 mm, economical speed 40–45 rpm, total installed power approx. 50 kW and machine weight 40T–60T. Its wide weaving capacity and rigid frame guarantee stable mesh quality.
The loom adopts cast iron box-type frame mounted on an integral base. It features dual-side switched reluctance motor coaxial drive, dual heavy-load dobby shedding with 10 heald frames. Servo single rapier weft insertion with 2-colour weft selection is equipped. Multi-section split crank four-bar beat-up mechanism, servo-driven 3-roll positive take-up and servo dual warp-beam positive let-off are integrated, plus an independent off-machine centre winding unit. Precise tension control of let-off and take-up makes it ideal for heavy fabric weaving.
Combined lubrication system of automatic grease feeding and manual refilling is adopted. The machine is controlled by a PLC programmable automatic system. Operators can freely set all weaving parameters; the system provides automatic stop on fault and fault display, ensuring easy operation and convenient maintenance.
The successful shipment of CXWT530 Special Mesh Loom represents customer recognition of our product quality. Going forward, our company will continue to deepen R&D in special weaving equipment, optimize machine performance and support the high-quality development of industrial weaving industry.
