Found 12 results
A condition-based dryer-fabric maintenance guide covering contamination, seams, edges, tracking, tension and cleaning without promising a fixed life extension.
Understand the key factors affecting fabric life and discover practical tips for extending replacement intervals.
Recycled furnish can change contamination, abrasion, drainage and cleaning demand; quantify the effect from the mill baseline instead of assuming a fixed life reduction.
Dryer-fabric life depends on position, heat, hydrolysis, contamination, seam, edges, tension, alignment and cleaning; use condition and cost trends, not fixed days.
PAPTEX SSB (Surface-Support-Binder) Triple Layer Forming Fabric represents the pinnacle of forming fabric technology. Engineered with a proprietary self-binding weave structure, it combines a fine pap
PAPTEX Double Layer Forming Fabric strikes the ideal balance between performance and cost-effectiveness for medium-speed paper machines. The dual-layer construction features a fine paper-side warp for
PAPTEX Triple Layer Forming Fabric with self-binding technology represents our heavy-duty forming solution for demanding applications. Unlike conventional triple-layer designs that use separate binder
PAPTEX Spiral Dryer Fabric is engineered for the most demanding dryer section positions — high-temperature, high-tension applications where conventional flat yarn fabrics fall short. The spiral yarn c
PAPTEX BOM (Batt-on-Mesh) Press Fabric represents the industry standard for modern press section dewatering. A fine needled batt layer is anchored to a robust woven mesh base fabric, combining superio
PAPTEX Laminated Press Fabric is built for the most extreme press section conditions — high nip loads, abrasive furnishes, and applications where standard BOM fabrics fail prematurely. Multiple base f
The customer experienced frequent sheet breaks (5 per day) and short fabric service life (45 days) on their high-speed tissue machine. The existing SSB forming fabric could not maintain stable dewater
Frequent dryer fabric replacement (every 6 months) was causing excessive maintenance costs and production downtime. The existing flat yarn fabric showed premature edge wear and uneven air permeability