Custom Cleaning Brush
Anti-Static Carbon Fiber Printing Brush
Anti-Static Carbon Fiber Printing Brush provides controlled brush contact for precision electronics and static-control cleaning across contacts, slots, and boards. Working width, brush geometry, mounting, and fill are set around the machine path and the way lint, oxide, and flux residue must be released or carried away.
Product Features
Fine carbon fibers remove paper dust while conducting charge — The handheld brush cleans printed sheets, film, press controls, and accessible web-contact areas.
Soft contact limits marking on printed surfaces — Lightweight fibers lift loose particles without rigid scraping.
Conductive bundle can reduce static attraction — Charge dissipation depends on the brush handle and the grounding method used at the workstation.
Narrow head reaches press details — Compact tufting cleans guides, edges, sensor surrounds, and local transfer points during maintenance.
Dry cleaning avoids spreading ink or solvent — The brush is intended for loose dust and fibers rather than heavy cured ink removal.
Built for the printing task — Head width, carbon-fiber length, density, handle material, grounding provision, and protective storage can be customized.
Product Overview
Anti-Static Carbon Fiber Printing Brush is used where repeatable contact is needed across contacts, slots, and boards rather than isolated hand cleaning. The active brush face clears lint, oxide, and flux residue while the holder, shaft, plate, or hub stays outside the interference path and supports the required working width. The brush must control contact load, particle shedding, conductivity, and access to fine features.
Key dimensions start with Brush head diameter 10–200 mm and Brush head length 50–3000 mm. This configuration uses a cylindrical roller or conveyor-brush structure for broad, repeatable contact. The specified interface is shaft-mounted / fixed. Carbon Fiber, Conductive Nylon, and Anti-static Filament are the principal material directions in the current specification. The brush should be specified from the real machine connection and operating speed, not from a generic RPM value.
Technical Specifications
| Working width | 50–3000 mm |
|---|---|
| Brush diameter or trim height | 10–200 mm |
| Filament diameter | 0.03–0.50 mm |
| Holder or shaft | Aluminum channel, plate, bore, keyed shaft, or bracket |
| Surface resistivity | 10³–10⁹ Ω for conductive or antistatic fill |
| Contact setting | Use 1–5 mm engagement and align the brush with web direction, product pitch, or sealing-jaw travel. |
| ESD resistance | 10³–10⁹ ohms where required |
| Electrical resistance | 10³–10⁹ ohms, selected for conductive or static-dissipative duty |
| Fill materials | Carbon Fiber, Conductive Nylon, and Anti-static Filament |
| Cleaning zone | precision electronics and static-control cleaning |
| Contact surface | contacts, slots, boards, terminals, optical end faces, films, carriers, and precision housings |
| Residue class | lint, oxide, flux residue, polishing particles |
| Access and motion | the brush must control contact load, particle shedding, conductivity, and access to fine features |
| Cleaning duty | precision electronics, static-control cleaning on contacts, slots, boards, terminals |
| Variant configuration | Anti-Static Carbon Fiber Printing Brush: hand-held construction with Carbon Fiber, Conductive Nylon, Anti-static Filament fill for precision electronics and static-control cleaning on contacts, slots, boards, terminals. |
Application Areas
Anti-Static Carbon Fiber Printing Brush is primarily mapped to Dust Removal. When adapting this brush to another job, confirm the workpiece surface, how debris will leave the area, and the required finish.
- Anti-Static Carbon Fiber Printing Brush is best suited to printing, packaging, label, scanner, sealing-jaw, web, carton, and machine cleaning or control.
- The strip, wheel, plate, carbon-fiber, sorting, or coating brush follows paper, film, labels, cartons, rollers, scanners, printer paths, sealing bars, and package guides while the fill displaces dust, paper fibers, adhesive, ink mist, static-attracted particles, and sealing residue.
- Use this configuration when the available access supports timed line contact on films, sheets, cartons, seals, jaws, rollers, or product lanes.
Selection Guidance
Structure fit
Match the roller and conveyor brush geometry to contacts, slots, and boards, the available access, and powered operation. Confirm Brush head diameter 10–200 mm and Brush head length 50–3000 mm against the complete working envelope before finalizing the brush.
Contact material
Choose from Carbon Fiber, Conductive Nylon, and Anti-static Filament according to the behavior of lint, oxide, and flux residue, the surface sensitivity, and any wet, chemical, temperature, or hygiene requirements. The material name does not fully describe stiffness. Filament size, free trim length, and density complete the specification.
When to use another solution
For Anti-Static Carbon Fiber Printing Brush, use another cleaning method when lint, oxide, and flux residue cannot be released by controlled filament contact, when contacts, slots, and boards cannot tolerate the selected contact material, or when the access path prevents safe engagement and residue removal.
Customization Options
| Brush Head Diameter (mm) | 10–200 [Industry Reference Range; Legacy Source] |
|---|---|
| Brush Head Length (mm) | 50–3000 [Industry Reference Range; Legacy Source] |
| Handle Length (mm) | Not Applicable (No separate handle in this product configuration) |
| Handle Grip Diameter (mm) | Not Applicable (No explicit grip or handle-diameter dimension in the product specification) |
| Bristle Material | Carbon Fiber, Conductive Nylon, Anti-static Filament |
| Handle Material | 6061 Aluminum Alloy |
| Mounting / Interface | Shaft-Mounted / Fixed |
| Grip Style | Not Applicable (Machine-Mounted Brush) |
| Color | Custom PANTONE Color ([Industry Reference Range]) |
| Logo Process | Laser Engraving / Screen Printing / Pad Printing ([Industry Reference Range]) |
| Surface Treatment | Smooth / Textured / Overmolded / Coated (Depending on Substrate; [Industry Reference Range]) |
Frequently Asked Questions
How should Anti-Static Carbon Fiber Printing Brush be selected?
Start with printing, packaging, label, scanner, sealing-jaw, web, carton, and machine cleaning or control, paper, film, labels, cartons, rollers, scanners, printer paths, sealing bars, and package guides, and dust, paper fibers, adhesive, ink mist, static-attracted particles, and sealing residue. Then set Working width, Brush diameter or trim height, and Filament diameter, choose the fill from the material and residue table, and match the mounting interface and operating condition.
Which dimensions define Anti-Static Carbon Fiber Printing Brush?
The primary dimensions are Working width (50–3000 mm), Brush diameter or trim height (10–200 mm), and Filament diameter (0.03–0.50 mm). Also provide the minimum clearance, working envelope, trim or engagement, and the existing holder, shaft, stem, thread, or handle.
Which filament or contact material is used for Anti-Static Carbon Fiber Printing Brush?
The primary options are Carbon Fiber, Conductive Nylon, and Anti-static Filament. The final choice follows surface sensitivity, residue adhesion, wet or dry use, temperature, chemicals, conductivity, and required cutting action.
When is Anti-Static Carbon Fiber Printing Brush not the best cleaning method?
Anti-Static Carbon Fiber Printing Brush is not the first choice for air, vacuum, ionization, scraper, non-contact sensor cleaning, or roller wiping when filament contact disturbs the web.
What information is required to quote Anti-Static Carbon Fiber Printing Brush?
Send the part or machine drawing, photos of paper, film, labels, cartons, rollers, scanners, printer paths, sealing bars, and package guides, Working width, Brush diameter or trim height, Filament diameter, and motion or use method, the residue description, wet or dry conditions, motion or use method, temperature, preferred Carbon Fiber, Conductive Nylon, and Anti-static Filament, quantity, and the existing interface or sample.
RELATED BRUSH RESOURCES
Recommended Reading & Related Brush Resources
Custom Manufacturing RFQ
Upload the Brush Drawing, Product Photo or Sample Details
To quote this brush accurately, send the size, material, cleaning target, residue, quantity, and any available drawing or sample photo.
Custom Brush RFQ
Send Your Brush Project
Upload a drawing, product photo, or sample photo and provide the core dimensions and cleaning conditions.




