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CO2 laser technology is the foundation of many engraving machines. This technology employs a gas laser combining carbon dioxide with other gases to generate a high-energy beam capable of engraving, marking, and cutting materials, including leather.
The process involves directing the laser beam onto the leather's surface. The beam's energy causes the material to vaporize or thermally decompose in controlled patterns, resulting in precise engravings and smooth cuts—essential for high-quality leather products.
What sets CO2 lasers apart is their adjustable power and speed settings, which make them versatile enough to handle everything from soft, thin leathers to thick, durable ones. Understanding these settings is crucial for achieving optimal results on various leather pieces.
Key benefits of CO2 laser technology:
Versatility: Works with different leather types.
Precision: Achieves accurate and consistent engraving results.
Minimal Maintenance: Offers longevity with fewer operational requirements.
These qualities make CO2 lasers ideal for leather craftsmen looking to improve production quality while maintaining the integrity of the material.
Various specifications of field lenses
110*110/150*150/200*200/250*250/300*300mm marking range
High-speed galvanometer
High-speed galvanometer scan head,Dual red light focusing system
Multi-language operating system
More than 10 languages, Arabic, English, German, French, Japanese, Polish, Spanish, Portuguese, Russian, Thai, Korean, etc.
Air cooled laser source- RF tube
Power and cooling options available
D80 rotary
Fourth axis, rotary marking
2D/3D mobile platform
2/3 Axis table
High-power CO2 lasers bring numerous advantages to laser engraving machines. The increased power allows for faster processing speeds, saving valuable production time. For manufacturers, this supports higher throughput, which is essential for meeting industrial demands.
Another significant advantage is their ability to achieve deep, detailed engravings. High-power lasers can penetrate thicker leathers without compromising quality, making them suitable for dense or heavy-duty materials.
Benefits of high-power CO2 lasers:
Efficiency: Fast processing boosts productivity.
Detail: Deep, intricate engravings enhance product aesthetics.
Adaptability: Works seamlessly across a range of leather types and thicknesses.
These advantages make high-power CO2 lasers invaluable tools, enabling artisans and manufacturers to deliver premium, customized designs efficiently.
Precision is crucial in leather engraving, particularly for intricate designs. The 3 axis CO2 laser marker offers unparalleled accuracy, making it indispensable for high-end leather products where every detail matters.
The three-axis system provides flexibility by adjusting in three dimensions to maintain optimal focus. This ensures sharp, clear engravings, even on contoured surfaces or designs with varying depths.
Such advanced capabilities open new possibilities for unique, intricate patterns, whether for fashion accessories or personalized items. With a 3 axis laser, leather artisans can elevate their craftsmanship, delivering products that stand out in competitive markets.
Non-consumable
● No need to replace consumables
● Requires only electrical energy
● One-time investment
● Maintenance-free
Cleaner environment
Ink-free ●
Solvent-free ●
Non-pungent ●
Non-toxic ●
Non-corrosive ●
Energy-saving
● Non-wasteful
● 100% utilisation
● No emissions
Permanent mark
Controlled indentation depth ●
Resistant to oxidation ●
No colour loss ●
Traceable ●
Safe and reliable ●
Operating a high-power CO2 laser marking machine requires adherence to safety protocols. The concentrated laser energy poses potential hazards, so it’s crucial to follow these guidelines:
Protective Gear: Always wear safety goggles to shield your eyes from laser radiation.
Ventilation: Ensure proper airflow to disperse fumes generated during engraving.
Regular Maintenance: Clean machine components regularly to prevent dust accumulation.
Inspection: Check cables and connections periodically for wear and tear.
Routine professional servicing is also recommended to maintain peak performance. These practices not only prolong the machine's life but also ensure safe and efficient operations.
Modern CO2 laser engraving machines integrate seamlessly with design software, streamlining the engraving process. The ability to import various file formats provides versatility, enabling users to create intricate and detailed designs effortlessly.
These systems often include advanced customization features, allowing users to adjust power settings, preview designs, and fine-tune details before engraving. This integration makes it easier for both professionals and beginners to achieve flawless results.
Exploring software options ensures that your machine unlocks its full potential, empowering you to create stunning, personalized designs on leather.
No. | Project | Parameter |
1 | Model number | HC10XX |
2 | Laser power | 40W/50W/60W/100W (optional) |
3 | Laser level | Class IV(IEC 60825-1) |
4 | Laser type | Sealed Co2 laser (RF tube) |
5 | Wavelength | 10.6/10.2/9.3μm |
6 | Marking field | 110*110mm-300*300mm(optional) |
7 | Marking depth | >0.4mm |
8 | Marking speed | ≤10000mm/s(optional) |
9 | Marking line width | >0.4mm |
10 | Min character size | 0.5mm |
11 | Repeat accuracy | 0.01mm |
12 | Cooling method | Air-cooled |
13 | Laser source expected life | >50,000 hours |
14 | Standard user interface | Touch panel/PC |
15 | Consumables | No |
16 | Temperature | 0-45℃ |
17 | Power consumption | 700 W |
18 | Electrical requirement | L/N/PE 100 – 240 VAC, 50/60 Hz |
Materials | Reaction | Materials | Reaction | ||
Metal | Stainless steel | - | Plastic | PE | √ |
Aluminum | - | PP | √ | ||
Anodized aluminum | √ | PVC | √√ | ||
Brass | - | PPR | √ | ||
Coated metal | √ | ABS | √ | ||
Copper | - | PET | √√ | ||
Gold, silver, nickel, platinum | - | Nylon | √ | ||
Carbon steel | - | MPP | √ | ||
Titanium | - | PC | √ | ||
Ceramics | Ceramic | √ | Plastic films and foils | Aluminized foil | √√ |
Rubber | Natural rubber | √√ | Polyethylene terephthalate (PET) | √√ | |
Synthetic rubber | √√ | Oriented polypropylene (OPP) | √√ |
Excellent Reaction: √√ Good reaction: √ Poor reaction: -
A
From wallets and belts to customized bags, CO2 laser engraving machines have transformed the leather industry. Their precision and adaptability allow for the creation of unique textures and patterns, setting products apart in a competitive marketplace.
Batch processing capabilities further increase productivity, enabling businesses to meet large orders without compromising quality. Moreover, the ability to engrave logos and personalized designs makes these machines invaluable for branding and customer satisfaction.
Electric lift
Fume extractor
Foot switch
Conveyor