If you operate a CNC cutting machine in the European or American market, you know that downtime is not an option. Whether you are cutting textiles, composites, foam, or automotive gaskets, the conveyor belt is not just a “passive table”—it is an active tool for precision.
At Annilte, we have spent 20 years engineering felt conveyor belts specifically for high-speed oscillating and flatbed CNC cutters. Here is why engineers from Germany to the USA are switching to Annilte.
The Pain: Standard PVC or PU belts are too hard. The oscillating knife vibrates against the hard surface, causing burrs on the material underside.
The Annilte Solution: Our needled felt conveyor belt acts as a shock absorber. The dense fiber structure holds the material firmly on top while the knife penetrates smoothly. Result? Zero fraying, zero drag marks—just clean cuts every time.
The Pain: You lose vacuum pressure through rigid belt surfaces, causing material slippage (wasting expensive rolls of carbon fiber or leather).
The Annilte Solution: Our felt belt has a high open porosity rate (controlled air permeability). It creates a sealed vacuum zone right under the knife tip. The belt itself becomes a gasket, increasing holding force by up to 30% compared to standard conveyor belts.
The Pain: In dry cutting environments (CNC routers for composites), friction generates static electricity. This not only shocks operators but attracts fine dust into machine rails.
The Annilte Solution: We embed conductive yarns (anti-static fiber) throughout the belt structure. Surface resistance is controlled to <10⁶ Ohms. Dissipate static instantly—safe for ESD-sensitive environments.
Annilte felt belts are designed as direct replacements for the following industry-leading machines:
*Not on the list? Send us your machine drawing. We have 5,000+ CAD files on hand.*
| Parameter | Value |
|---|---|
| Thickness | 3mm – 8mm (Customizable) |
| Hardness | 65-85 Shore A (Soft on material, hard on wear) |
| Temperature Range | -20°C to 150°C |
| Air Permeability | 80-120 cm³/cm²/s (Optimized for vacuum) |