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Laser Equipment Retrofit – Laser Equipment Upgrade


04/28

2020

  When laser welding different materials, the position of the laser beam plays a crucial role in determining weld quality—this is especially true for butt joints compared to lap joints. For example, when hardening steel gears are welded onto low-carbon steel barrels, properly controlling the laser beam’s position helps produce a weld that is primarily composed of low-carbon constituents and exhibits excellent crack resistance. Laser Equipment Modification Laser Equipment Upgrade In certain applications, the geometry of the workpiece to be welded requires a laser beam deflection at a specific angle. When the deflection angle between the beam axis and the joint surface is within 100 degrees, the workpiece’s absorption of laser energy remains unaffected.

  Welding Speed: The welding speed has a significant impact on the penetration depth. Laser equipment has undergone modifications and upgrades. After the laser equipment is upgraded, increasing the welding speed will result in shallower penetration; however, if the speed is too low, it can lead to excessive melting of the material and damage to the workpiece. Therefore, for a given material with a specific laser power and a certain thickness, there exists an optimal range of welding speeds. The cost of upgrading laser equipment varies depending on the extent of the upgrade, but by selecting the appropriate speed, one can achieve the desired penetration depth. During laser welding, inert gases are typically used to protect the molten pool. While surface oxidation may not be a concern when welding certain materials, for most applications, helium, nitrogen, and other gases are commonly employed for shielding purposes. Laser Equipment Modification After the laser equipment was upgraded, it protects the workpiece from oxidation during the welding process.

  Laser equipment renovation: After laser equipment is upgraded, laser welding becomes a welding process that uses a high‑energy‑density laser beam as the heat source—specifically, laser radiation heats the surface of the workpiece, and the heat on the surface spreads inward via thermal conduction, causing the workpiece to melt and form a well‑defined molten pool. The laser beam passes through the upper transparent material and is then absorbed by the lower layer. Once the laser energy is absorbed and converted into thermal energy, the laser equipment undergoes renovation and… Laser Equipment Upgrade Because the two layers are pressed together, thermal energy is transferred from the absorption layer to the optical layer, causing both layers to melt and bond.

 Laser Equipment Retrofit – Laser Equipment Upgrade

   Laser Equipment Modification Laser Equipment Upgrade , provided by Suzhou Youshun Laser Equipment Co., Ltd. Adhering to the corporate philosophy of “people-oriented,” the company boasts a highly skilled workforce dedicated to delivering high‑quality products and services that give back to society. We warmly welcome both new and existing customers to visit us and collaborate with us in creating a bright future together.

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