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8 Tips You need to Know about CO2 Laser Cutter

CO2 Laser Cutter Jinan GKE Laser tell you the problems and answers for CO2 Laser Cutter Tips in 8 points.

Problem 1: What materials can a CO2 laser cut?

Answer 1 for CO2 laser cutter cutting materials:

CO2 lasers are primarily utilized for organic materials. These include wood, acrylic, glass, paper, textiles, plastics, foils, films, leather, and stone. This preference is due to the wavelength characteristics of CO2 lasers, which are well-suited for efficiently cutting and engraving these materials.

Problem 2: Why are CO2 lasers the most widely used laser in laser cutters?

Answer 2 for choosing CO2 laser cutter reason:

CO2 Laser Cutters are widely favored for their cost-effectiveness and precision. They excel at cutting and engraving various materials, including card, leather, wood, and plastics. This popularity stems from their ability to efficiently convert energy into heat, allowing for precise and accurate processing.

Problem 3: Can a CO2 laser cutter cut metal?

Answer 3 for CO2 laser cutter cutting metal:

CO2 laser cutters are versatile, cutting materials like steel (mild steel, stainless steel, aluminum) and non-metals (plastic, tile, marble, stone). They offer flexibility in handling a wide range of materials, especially non-metals, thanks to the wavelength characteristics of CO2 lasers, which enable efficient cutting of both metals and non-metals.

Problem 4: Is CO2 laser cutting better than fiber?

Answer 4:

When cutting metal, Fiber Laser Cutters outpace CO2 Laser Cutters, especially with thin sheets (< 8 mm), notably stainless steel. For instance, a fiber laser cuts 1 mm thickness up to 6 times faster than CO2. However, while Fiber Laser Cutters excel in metal cutting, CO2 Laser Cutters are better for non-metal materials. This distinction is crucial when selecting the appropriate cutter based on material type and thickness, supported by laser cutting technologies research.

Problem 5: What is the difference between a CO2 laser cutter and a laser cutter?

Answer 5:

When marking organic materials such as textiles, wood, or cardboard, opt for a CO2 laser. For metal cutting applications, a high-power CW (continuous wave) fiber laser is typically necessary. For materials like plastics and rubber, either type of laser may be suitable. These recommendations are based on research on laser cutting technologies and their applications.

Problem 6: How thick stainless steel and carbon steel will CO2 laser cut?

Answer 6:

The CO2 laser machine employs a 10.6-micron CO2 laser source for stability, effectively cutting steel materials, albeit limited to thin thicknesses. For instance, a 130W CO2 laser cutter can handle 1mm stainless steel and carbon steel plates. CO2 laser technology characteristics support these capabilities and its application in metal cutting.

Problem 7: How long does a CO2 laser cutter last?

Answer 7 for CO2 laser cutter lifetime:

CO2 laser cutters can last anywhere from 3 months to 3 to 4 years, depending on usage and maintenance. This variability in lifespan is supported by factors such as frequency of use, operational conditions, and quality of maintenance.

Problem 8: Can 150W CO2 laser cut metal?

Answer 8:

Yes, a 150W CO2 laser can cut certain metals, like stainless steel and carbon steel, especially with higher power levels. However, CO2 lasers are primarily for non-metallic materials like wood and acrylic. For example, a 150W hybrid CO2 laser cuts 1mm thick stainless steel, while a 300W CO2 laser handles 2-3mm thick materials. It’s important to note that CO2 lasers aren’t suitable for cutting all metals. In conclusion, GKELaser’s CO2 Laser Cutter can cut or engrave on non-metal and some metal like SS(Stainless Steel <3mm) CS(Carbon Steel <3mm) very well. Low price and high quality CO2 laser cutting machine from GKE Laser is waiting for your coming.

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If you want to get more business tips about our cnc laser machine, please feel free to contact us, we will provide you with comprehensive solutions from raw materials to engraving and cutting.


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