The maximum thickness we can cut varies by material:
Mild Steel: Up to 25 mm
Stainless Steel: Up to 20 mm
Aluminum: Up to 12 mm
Acrylic/Plastic: Up to 10 mm For thicker materials, alternative cutting methods may be required
There are a variety of materials that can be used for laser cutting designs at Central Profiles. Some of the most commonly used materials include: Stainless steel Mild steel Aluminium Brass Copper Titanium Acrylic Wood MDF Cardboard Leather Foam Rubber The maximum thickness that can be cut using laser cutting technology depends on the type of material being cut and the power of the laser used. Generally, for metals, the maximum thickness that can be cut ranges from 0.5 mm to 25 mm, while for non-metals like acrylic and wood, it can be up to 40 mm. However, it's important to note that thicker materials may require multiple passes or more powerful lasers to achieve a clean cut. It's best to consult with a laser cutting professional at Central Profiles to determine the specific thickness that can be cut for your chosen material.
Central Laser Services, a division of Central Profiles, offers laser cutting services for a wide range of materials. They use state-of-the-art laser cutting equipment to cut materials with precision and accuracy. Some of the materials that can be cut using Central Laser Services include: Mild Steel: Laser cutting is an efficient way of cutting mild steel up to a thickness of 25mm. Stainless Steel: Laser cutting can be used for both thin and thick stainless steel sheets, making it ideal for a wide range of applications. Aluminium: Laser cutting is an excellent option for cutting aluminium sheets up to a thickness of 12mm, producing clean and precise cuts. Brass: Laser cutting produces high-quality cuts on brass sheets of up to 6mm in thickness. Copper: Laser cutting can be used to produce intricate designs on copper sheets up to 6mm in thickness. Acrylic: Laser cutting is ideal for acrylic sheets of up to 25mm in thickness, producing smooth and polished edges. Central Laser Services can also cut other materials such as plastics, woods, and composites. They can provide custom laser cutting solutions for customers with specific requirements.
The thickness of the laser welding machine depends on the power of the laser generator inside the Laser Welding Machine, the thickness of the object to be welded. These two points are the most important.
Laser cutting works by directing the output of a high-power laser, by computer, at the material to be cut. The material then either melts, burns, vaporizes away, or is blown away by a jet of gas
Transmittance of a laser refers to the fraction of laser light that passes through a material or medium without being absorbed or scattered. It is typically expressed as a percentage and is influenced by factors such as the wavelength of the laser, the properties of the material, and its thickness. High transmittance indicates that the material allows a significant amount of laser light to pass through, while low transmittance suggests greater absorption or scattering. This property is crucial in applications like laser cutting, medical procedures, and optical communications.
If you want to choose the most suitable laser power for your work. It is very necessary tell the laser cutting machine supplier what will you mainly do, what the max thickness will cut by this machine? Then professional supplier will provide professional suggestion and most suitable power for your work.
Basically when cutting with the laser the beam is focused on the material through the hole in the nozzle. This heats the material and melts it. A cutting gas, which flows co-axially through the nozzle, removes the molten material. CHARACTERISTICS: Plate thickness: 1 mm up to 25 mm Typical: 0.5 mm up to 20 mm KEY FEATURES: Laser light can be well focused ca. 0.2 mm Very high power density (some MW/cm2) High to medium cut quality (roughness) Low heat input
Laser cutting machines are CNC machines, so they are controlled by a computer that directs the laser head in the direction of the material to process. Some CO2 flat laser cutting machines use a printer driver so that one can use any drawing application to laser cut/etch/mark.
Yes, you can laser cut acrylic, and it is a popular material for this process due to its clean edges and ability to be cut with precision. When laser cutting acrylic, the laser melts the material rather than burning it, resulting in smooth, polished edges. It's important to use the correct settings for the thickness of the acrylic to achieve optimal results. Additionally, venting during the process is essential to manage fumes produced by the melting acrylic.
The three configurations are Moving Material, Hybrid, and Flying Optics. Moving Material is exactly as its name states: the material being cut is moved while the laser is stationary. Hybrid moves both the material and the laser head, while Flying Optics only moves the laser head and not the material.
A laser is a concetrated beam of light that is strong enough toburn through materials. Laser cutting is using a laser that burns right through the material, cutting it. And the laser was controlled by the PC which gives the laser tube order to tranfer the beam to the right place. It's safe. It's totally a new tec that have no pollution or waste, low energy consumption and cost. | Kitelaser | sales(@)kitelaser.com
The cost depends on material type, thickness, design complexity, and quantity. Laser cutting is generally more cost-effective than CNC machining for small runs and far cheaper than injection molding for under 10,000 units. Our online quoting tool offers instant pricing for many projects. Contact us today for custom laser solutions designed to improve your automotive production capabilities. Contact No. — 9321917012