Achieving consistent ink anchorage and laminating bond strength requires a corona backing roller that can handle extreme plasma atmospheres without thermal or electrical degradation. Our Corona Roll couples high-grade core metallurgy with state-of-the-art dielectric engineering to prevent catastrophic voltage arc-throughs and extend operational lifespans.
High-Dielectric Breakdown Immunity: Whether coated with seamless high-tear silicone or dense ceramic matrices, our insulation layers guarantee a breakdown resistance exceeding 10-15kV/mm, preventing premature layer failures.
Exceptional Ozone & Corona Resistance: Premium synthetic compounds and cross-linked coatings exhibit superior resistance to chemical cracking induced by high-concentration ozone and continuous spark erosion.
Sub-Micron Total Indicator Runout (T.I.R.): Dynamic runout and coaxiality are tightly restricted to within ≤0.01mm. This prevents localized gap variations between the electrode and the roller, eliminating erratic discharge tracks.
Advanced Internal Heat Dissipation: Tailored inner double-shell structures force high-velocity cooling water through internal paths, keeping the outer dielectric surface cold to prevent thermal swelling and preserve web integrity.
| Technical Parameters | Specification Range / Value |
| Total Indicator Runout (T.I.R.) | ≤ 0.01mm |
| Coaxiality / Cylindricity | ≤ 0.01 mm |
| Dielectric Coating Options | High-Insulation Vulcanized Silicone, Plasma-Sprayed Ceramic, Epoxy Composite |
| Dielectric Breakdown Strength | ≥10kV/mm (up to 22kV total voltage rating) |
| Surface Hardness Availability | 70 – 85 Shore A (For Silicone)/≥HV1100 (For ceramic) |
This heavy-duty Corona Roll is fully compatible with premium global surface treating systems and orientation machinery (such as Softal, Vetaphone, Ahlbrandt, Pillar, and Brückner), optimized for:
BOPP / BOPET / CPP High-Speed Film Lines: Activating inert polyolefin and polyester surfaces post-stretching for rapid in-line processing.
Extrusion Coating & Lamination Lines: Pre-treating polymer substrates immediately before anchoring hot melts to secure high peel strength.
High-Speed Flexographic & Rotogravure Printing: Maintaining a flawless grounding face inside primary rewinding treatment stations.
Aluminium Foil & Metallized Film Converting: Deploying specialized insulated rollers to treat conductive webs safely without short-circuiting.
Q1: Which insulation material is better for a Corona Roll: Silicone or Ceramic?
A1: It depends entirely on your operational environment. Silicone rolls offer excellent cost-efficiency, great release properties, and cushion the web gently, making them ideal for standard packaging films. However, they require replacement every few years due to ozone aging. Ceramic rolls are virtually indestructible, highly resistant to knife cuts during film threading, and possess permanent resistance to ozone and heat erosion, making them the gold standard for 24/7 wide-format BOPP/BOPET lines.
Q2: How do your rollers prevent “back-side treatment” (reverse side corona marking)?
A2: Back-side treatment occurs when a microscopic layer of air gets trapped between the film and the backing roll, causing unwanted discharge on the back of the web. We combat this by maintaining an ultra-strict T.I.R. (≤0.01mm) and perfect straightness. This ensures the film hugs the roller surface completely flat, squeezing out all boundary layer air and restricting the corona plasma exclusively to the top face.
Our state-of-the-art manufacturing facility houses heavy-duty CNC cylindrical grinding machines, high-speed dynamic balancing rigs, and advanced fully automated vertical electroplating lines, capable of processing custom rollers up to Ø3500mm in diameter and 12000mm in length. Backed by robust hydrostatic and laser geometric validation systems, we guarantee that every roll delivered delivers peak performance, allowing modern film production lines to operate with absolute confidence.