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Precise fibre laser for automotive applications

Source:Ringier Metalworking Release Date:2016-11-18 289
MetalworkingSemiconductor/Electronic ChipSemiconductor / Electronic Chip
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Amada Miyachi discusses the benefits of fibre laser welding for applications in the automotive

Continuous wave CO2 welding lasers have limited accuracy and undesired high heat input into the weld, while pulsed Nd:YAG laser welders are limited in terms of maximum welding speed, minimal spot size, and electrical to optical energy conversion efficiency. For the growing number of applications that demand higher precision control, lower heat input, and lower electrical energy consumption than are possible with these traditional laser welding technologies, Continuous Wave Fibre Laser Welding is a superior solution.

n a fibre laser welding system, the laser light is generated in an active fibre and guided to the workpiece by a flexible delivery fibre. The flexibility of the delivery of this laser beam ensures maximum quality in end products and highly efficient production. Fibre laser welding enables a number of materials processing applications such as welding of very small parts and fine structures, medium power fine metal welding at high speed or with single mode lasers, and high power laser welding of metals.

The AMADA MIYACHI EAPRO Jupiter Fibre Laser Welding System is designed for fast, accurate and reliable welding. The fibre laser’s power level and high beam quality allows power up to 700 W to be fired into very precise weld spots.

The AWS3 Active Welding System 3 is an integrated resistance welding solution that provides process control, monitoring, and quality analysis. Available in either servomotorised or pneumatic versions, the AWS3 can be used alone as a benchtop system or easily integrated into a production line. The AWS3 features modular components that offer maximum flexibility, and is ideal for use in resistance welding of connectors, switches, cables, engine components, dashboard electronics and lighting components, as well as batteries, solar cells, and medical components.

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