KlearLaser|エコ・レーザークリーニングのエキスパート

Cleaning With Laser Light Industrial Guide

cleaning with laser light

目次

💡 Expert Insight:技術仕様

When selecting cleaning with laser light, always prioritize the laser source brand (JPT/Raycus) over raw wattage for long-term reliability.

Cleaning With Laser Light: Technical Specifications

cleaning with laser light

Deep Dive: Laser Cleaning Physics & Engineering

Wavelengths:

The optimal laser wavelength depends on the target contaminant and substrate. For rust and metal oxides, 1064nm (infrared) penetrates oxides efficiently. For organic coatings or delicate surfaces, 532nm (green) or 355nm (UV) offer better absorption by specific materials. Klear Laser’s systems deliver precise wavelengths matched to your cleaning tasks.

Pulse Energy & Duration:

High pulse energy (>100mJ) rapidly vaporizes thick rust layers. Lower energy (10-50mJ) removes thin contaminants without overheating. Critical pulse width is nanosecond-scale. Ultra-short pulses (ns) limit heat transfer to the substrate, preserving integrity. Klear machines offer adjustable pulse parameters for material-specific tuning.

Cooling Systems:

Active cooling via industrial chillers maintains laser source stability during continuous operation. Passive cooling (air/heat sinks) suits lighter tasks. Klear’s integrated chillers handle high-duty cycles, preventing thermal lensing and ensuring consistent output power.

Comparison Table: Traditional vs. Laser Cleaning

因子 従来の方法(サンドブラスト/化学薬品) Laser Cleaning (e.g., Klear PLM Series)
Abrasion Risk High (surface erosion) Zero (non-contact process)
Chemical Waste Significant (toxic sludge/disposal costs) None (dry process)
Labor Intensity High (manual handling, PPE required) Low (automatable, remote operation)
基板の損傷 Common (surface pitting, warping) Minimal (<10µm heat-affected zone)
Process Control Poor (inconsistent results) Excellent (digitally precise power/duration)
Secondary Cleanup Required (media residue, chemical runoff) None (contaminants captured in filtration)

Klear Laser integrates these principles into our pulsed fiber laser cleaning machines (PLM series), delivering nanosecond pulses at 1064nm with energy up to 3J. Substrate safety is guaranteed via adaptive scanning heads and real-time cooling. Replace abrasive/chemical processes with quantifiable laser precision.

主な特徴と利点

Klear Laser cleaning systems leverage high-peak pulsed fiber lasers, primarily using Raycus or JPT sources, known for their durability and consistent pulse delivery. These laser sources operate at wavelengths of 1064 nm, ideal for targeting contaminants like rust, paint, and oxides without damaging the underlying substrate. The precision pulse control ensures optimal energy delivery, minimizing heat input to sensitive materials.

The scanning head integrates advanced galvanometric optics with adjustable focal points, enabling uniform beam distribution across irregular surfaces. Combined with programmable cleaning paths, the system achieves repeatable results on complex geometries. The airtight head design also prevents dust ingress, ensuring long-term optical performance in industrial environments.

Pulse width is finely tuned in the nanosecond range (typically 80–120 ns), allowing efficient ablation of surface contaminants while preserving base materials such as steel, aluminum, or titanium. This selective removal capability makes the system ideal for aerospace, mold maintenance, and heritage restoration applications.

仕様 Value 説明
レーザー光源 Raycus / JPT MOPA Pulsed Fiber High peak power, stable pulse output
波長 1064 nm Optimal absorption by contaminants
平均パワー 100–2000 W Scalable for light to heavy-duty cleaning
パルス周波数 20-2000 kHz Adjustable for material sensitivity
パルス幅 80~120 ns Enables cold ablation, substrate-safe
スキャン速度 Up to 5000 mm/s High throughput with minimal dwell
スポットサイズ 0.03–0.06 mm Precision cleaning on fine surfaces

This combination of industrial-grade source performance and intelligent head design ensures Klear Laser systems outperform mechanical and chemical cleaning methods in both efficiency and environmental safety.

産業用途

Laser cleaning is widely used in automotive manufacturing for rust removal on chassis frames and engine components. It replaces toxic chemical strippers for paint stripping on body panels while maintaining substrate integrity. Precise pulse width control prevents overheating thin metal sections during surface preparation. This process ensures optimal adhesion for refinished parts without structural damage.

In aerospace, laser cleaning is critical for removing oxidation from aluminum and titanium components before bonding or painting. It precisely eliminates weld scale from turbine blades and airframe structures without altering surface properties. The non-contact method avoids mechanical stress on delicate aerospace parts, ensuring safety-critical component reliability. This process meets strict industry standards for precision and contamination control.

Marine applications leverage laser cleaning for salt corrosion removal on ship hulls and propellers using minimal energy. It safely cleans steel and aluminum marine structures without chemical residues, aligning with environmental regulations. The process protects substrate integrity during frequent maintenance cycles. Deck fittings and engine components benefit from consistent, eco-friendly surface preparation for long-term durability.

素材 アプリケーション
炭素鋼 Rust removal on automotive frames, marine ship hulls, and aerospace structural components
ステンレス鋼 Exhaust system cleaning in automotive, engine turbine weld scale in aerospace, propeller maintenance in marine
Aluminum Alloy Body panel paint stripping in automotive, oxide removal on aerospace wings, hull prep in marine
チタン合金 Precision cleaning for aerospace landing gear and marine high-performance components
Fiberglass Composites Automotive interior trim, aircraft fuselage prep, boat deck bonding surfaces

クリアレーザーを選ぶ理由

Klear Laser treats support, warranty, and spares as one integrated uptime system, not an after-sales brochure. The moment you uncrate a pulsed laser cleaner or a fiber laser welder you receive a lifetime process-library account, 24-hour remote diagnostics through the MOPA controller, and a cloud parts ledger that tells our Dayton warehouse exactly which nozzle, lens, or Raycus module to ship before you even finish the error code. That predictive loop keeps your line making money instead of making excuses.

Every machine—whether it’s a 2000 W JPT source with wobble weld head or a 100 ns pulsed rust removal unit—ships with a full five-year warranty on the source, two years on the full system, and next-day parts delivery anywhere in North America. We back it with local field engineers who carry complete spare-source carts in their vans, so a cracked QBH or a fouled F-theta lens is swapped, aligned, and re-calibrated on the same shift. No third-party delays, no “depot service,” just photons back on your part.

カバレッジ要素 Standard Term Response Target Included Action
Laser Source (JPT/Raycus) 5 years 24 h phone / 48 h field Replace or rebuild on-site
フルシステム 2年 Next day Parts + travel, no labor charge
Consumables Kit 1 year Same day ship Nozzles, covers, optics, gloves
Process Library Updates Lifetime Instant cloud push New weld or cleaning recipes
Spare Parts Stock 10 years guaranteed <24 h delivery Held in Dayton OH, serial-number matched

Ownership becomes painless because the invoice price is the last surprise you will ever see. A digital twin running in the controller logs every milli-Joule and every weld penetration curve; when deviation hints at wear, the part ships automatically under warranty. For out-of-warranty customers, module-level pricing is posted online—no quote games—so a 3 kW Raycus drop-in costs the same on day 2,000 as on day one. We built the fleet that way so your traditional polluting processes stay retired and your laser line keeps stacking profit.

💰 ROI Calculator: Cleaning With Laser Light

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