Bending machine


Laser Cutting Machines


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The term laser is used as a frequent name, but it is in fact an acronym that stands for Light Amplification by Stimulated Emission of Radiation. The highly concentrated beam of light it generates can quickly apply energy even to a minute place. It is readily controlled by lenses and mirrors and basically as light. It may travel at the maximum speed possible, can travel in a straight line in an empty space and may transmit information.
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With these properties of laser light, laser has found numerous applications; among them is in cutting. A laser cutter works by focusing the massive quantity of energy it produces on a small area (even microscopic). The continuous beam of light that hits the area causes it to fade or melt. A cut is generated by moving the object being cut or by shifting the laser beam throughout the surface.


As an instrument in cutting, a laser cutting system has several applications. A number of its well-known programs are in medicine as a surgical tool, in craft-making and lithography as an etching tool, in garment industry as cloth cutter and in alloy fabrication as welding and cutting instrument.


Laser cutting of metals is laser?s most frequent and most beneficial industrial application. By means of a laser cutting machine, metals using elaborate profiles and contours can be easily and seamlessly cut. Its high quality cutting capacity and rapid cutting rates eliminate further processing of alloys, reduces manufacturing cost and improve productivity of particular firms using the technology.
The progress in laser cutting machines, which includes enhancement of the beam quality, laser power, ease of operation and use and material, made it possible for a laser cutting system to cut metals with multi-dimensions and tubular profiles. Highly advanced laser cutting machines with this capability are quite helpful in the automotive industry.


Among the laser cutting machines used in cutting metals are flying-optic lasers, hybrid lasers, punch-laser machines, pivot-beam lasers and pulsed lasers.


Flying-optic laser cutting machines possess high cutting rates yet they are not as expensive due to their fixed X and Y axis table. They have the ability to move across the material being cut in two dimensions. A more effective and powerful pivot-beam laser on the flip has X axis-travel capacity.


Punch-laser machines have been high power lasers that could cut metals with around 3,500 watts. They perform many tasks including punching, marking, contouring and bending. They are largely used to reduce outer part and complex interior contours. Pulsed laser machines on the other hand create high power output signal for short span. They are excellent for piercing due to their ability to produce high power output in a brief moment.



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