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目前显示的是 二月, 2022的博文

All You Need to Know About the Laser Welding Machine

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When we need a Laser Welding Machine, we have to know the laser welding. Laser welding finds large applications in various types of industries. These industries range from the manufacturing industry to the medical industry to the jewelry manufacturing industry.Laser welding is used more frequently in industrial processes because it has wider application than traditional welding as less heat is created because the beam is so focused. This means that heat transfer to the workpiece is much less and the metallurgical structure is less affected and the quality of the weld is much higher than with traditional forms of welding.     Laser welding is a much more accurate manufacturing process and welds can be as small as one hundredths of a millimetre. Small pulses of heat are used to create the weld which leads to a higher quality finish which is stronger providing a better depth to width ratio. Another distinct advantage of laser welding over other methods is that lasers can weld a greater va

Laser Welding vs Tig Welding

When it comes to  L aser  W elding  M achine   and argon arc welding machine, we have to mention the laser welding and argon arc welding technology.   Both laser welding and TIG welding seem to produce similar quality results at face value, but which welding method is best for your project? The following are some of the advantages and disadvantages of both weld strategies: Laser Welding Laser welding is much cleaner than traditional arc or tig welding, so it helps reduce the risk of contamination. It is also more precise, easier to automate, and can bond thinner metals and provide greater tensile and bending strength. If arc welding is typically part of the manufacturing process for your product, you may want to consider laser welding instead. Unlike arc welding, which requires bonding material or fillers to join two pieces of metal, laser welding creates a direct metal-to-metal bond with no fillers required. Unlike arc or torch welding, there is no slag (excess filler that melts and r

What is the difference between laser marking and laser engraving?

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Laser marking/engraving is accomplished by passing a laser through a lens and then focusing that light onto the surface of the part to be marked. If the part to be marked is made of some material that absorbs the color of the light emitted by the laser (e.g. light from a fiber laser focused onto a metal substrate), then like burning a leaf with a magnifying glass, the part becomes hot and the resulting heat can discolor the surface or cause a small amount of material on the part to evaporate. In the case of material evaporating off the part, if the process is repeated several times, the focused laser beam will penetrate deeper into the part until it exceeds the focal depth of the lens and the laser is too far away. The focus continues the vaporization process.  The type and depth of marking on a part is determined by a number of factors. The speed of the laser beam on the part, the output power and pulse frequency of the laser, and the spacing of the individual vector lines containing