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Surface Preparation Technology

Laser Cleaning

Fully Automated, Industrial-Grade Technology
Laser cleaning is one of the most advanced and fastest-returning industrial surface preparation technologies available today.

FibeerSX systems remove rust, paint, oxide layers, oil, contamination and production residues completely contact-free, without consumables and with micron-level precision while delivering maximum process stability and minimal maintenance.
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Laser Mold Cleaning System
Efficient removal of plastic residues and mold release agents from injection molds without damaging tool geometry or surface quality.
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Laser Rust Removal System
Selective rust and oxide removal leaving a clean, oxide-free metal surface ready for welding or coating.
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Laser Adhesive & Sealant Removal System
Precise removal of adhesives and sealants without damaging the underlying surface.
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Laser Paint & Coating Removal System
Layer-by-layer paint and coating removal while fully preserving the base material.
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Laser Degreasing & Oil Removal System
Chemical-free removal of grease and oils for bonding, painting and welding preparation.
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Laser Plastic Cleaning System
Gentle and precise cleaning of plastic components while preserving surface structure and dimensions.
About laser cleaning
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TECHNICAL DOCUMENTATION

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Automation laser cleaner
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Contact-Free Surface Processing

Advantages of Laser Cleaning

Completely contact-free process

  • No grinding, scrubbing, blasting or mechanical force
  • The base material remains undamaged
  • No wearing tools or process-related tool replacement
  • No need for post-treatment or surface repair

No consumables, no waste produced during laser cleaning

↻ No sand
No Sand

Sandblasting

  • Surface damage
  • High consumable costs
  • Dust generation
  • Limited precision
↻ No dry ice
No Dry Ice

Dry Ice Cleaning

  • Thermal shock risk
  • High consumable costs
  • Storage requirements
  • Limited process stability
↻ No chemicals
No Chemicals

Chemical Cleaning

  • Chemical residues
  • Hazardous waste
  • High consumable costs
  • Safety concerns
↻ No abrasive media
No Abrasive Media

Abrasive Media Cleaning

  • Surface wear
  • Consumable materials
  • Waste generation
  • Higher operating costs
Laser Cleaning
More Information
Laser Cleaning
Surface Quality Control

Maximum Precision & Repeatability

Uniform cleaning across the entire surface
Micron-level heat input control
Ideal preparation for welding, painting, bonding and NDT
Maintenance Hero
System Reliability

Minimal Maintenance,
Long Lifetime

No wearing blade sets, clogged nozzles or recurring chemical costs.
Industrial-grade laser head and optical components designed for continuous operation.
Preventive maintenance ensures maximum uptime and process reliability.
More Information Outstanding Return on Investment
High Performance

Outstanding Return on Investment (ROI)

  • Consumable-free operation
  • Faster cycle times
  • Reduced scrap rate
  • Minimal maintenance cost
  • Most industrial clients recoup their investment in laser cleaning within 6–18 months.
Laser cleaning return on investment
Laser cleaning return on investment enlarged
Laser Cleaning of Injection Moulds
APPLICATION

Laser Cleaning of Injection Moulds

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Laser Cleaning of Jigs and Hangers
APPLICATION

Laser Cleaning of Jigs and Hangers

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Automation & Process Control

Fully Automated Laser Cleaning, Industrial-Grade Process Control

Automated Laser Cleaning
FibeerSX Automation
Camera-based positioning automatically detects the cleaning area.
Seamless communication with PLC and MES production systems.
Robotic positioning ensures precise laser head movement.
Recipe-driven operation guarantees repeatable results.
Designed for continuous industrial production, including 24/7 operation.
Laser masking
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Industrial Laser Cleaning Systems
Complete Solutions

Industrial LaserCleaning Systems

FibeerSX delivers end-to-end laser cleaning solutions for industrial applications, from sample testing to fully automatic and robotized systems. Our equipment can:

  • operate in manual mode for maintenance tasks and difficult-to-access areas
  • be mounted on a robot arm for precise, high-speed automated cleaning
  • be integrated into fully or semi-automated workstations
  • be connected directly into existing production lines

Laser technology is contact-free, consumable-free and extremely cost-effective, while providing stable, repeatable quality across all industries. The FibeerSX engineering team supports you with custom system design, recipe configuration and full lifecycle technical support.

Industrial Cleaning Technology Comparison

Why Is Laser Cleaning Better than Blasting, Chemical or Dry Ice Methods?

Laser cleaning offers a precise, consumable-free and highly automatable alternative to conventional industrial cleaning technologies.

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Abrasive Process

Blasting vs. Laser Cleaning

Comparison Active
Blasting Laser Cleaning
Large amounts of waste and dust No process waste and clean operation
Wears and erodes the base material Contact-free and material-friendly
Noisy and dusty, with a dedicated blasting area required Low noise and suitable for production environments
High ongoing consumable costs Consumable-free operation
More Information
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Chemical Process

Chemical Cleaning vs. Laser Cleaning

Comparison Active
Chemical Cleaning Laser Cleaning
Ongoing chemical, storage and disposal costs No consumables and no chemical handling
Strict operator safety requirements and PPE Clean and safe operation inside a Class-1 laser cell
Long preparation and changeover times Instant start and fast cycle times
Environmentally burdensome process Sustainable and environmentally friendly technology
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CO₂-Based Process

Dry Ice Cleaning vs. Laser Cleaning

Comparison Active
Dry Ice Cleaning Laser Cleaning
Expensive CO₂ pellets and complex logistics Consumable-free operation
Limited cleaning depth and effectiveness Precise micron-level surface cleaning
Moulds and tools may be affected by thermal stress Gentle, contact-free cleaning process
Difficult to fully automate Fully automatable and robot-ready
Laser Welding
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Ideal Production Environments

  • A large number of parts or tools must be cleaned
  • The same surfaces require repeated cleaning with consistent quality
  • Reducing scrap is critical
  • Inline integration into the production line is required
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Key Features

  • Robot integration
  • PLC and MES communication
  • Camera-based positioning and quality inspection
  • Automatic laser parameter and recipe management
  • Class-1 safety enclosure with full protection
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Typical Industrial Applications

  • Cleaning of tools and moulds
  • Weld seam preparation
  • Removal of paint, oxide and adhesive residues
  • NDT surface preparation
  • Maintenance of injection moulding machines and presses