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Fiber Lasers Continue to Gain Market Share in Material Processing Applications

The first kilowatt-class fiber laser for material processing was introduced by IPG Photonics in early 2002. Since that time, the adoption of fiber lasers for production applications has grown at a rapid rate. Today, fiber lasers are becoming the choice for most major production laser applications as well as converting traditional welding and cutting processes to fiber laser technologies.

Traditional Versus Laser Welding

With much faster processing speeds and higher quality, you might think laser welding would quickly take over the field. But traditional welding hangs on. And depending on who you ask and what applications you consider, it may never go away.

New Technology Powers Performance at U.S. Mold Shops

There’s growing evidence that some of the moldmaking business that fled the U.S. chasing cheaper sources offshore is returning. Moldmakers are not finding enough of a favorable cost differential to offset poor mold performance and the need for rework of faulty molds.

Bystronic Introduces ByStar Fiber Laser Cutting Machine with 12kW of Fiber Power

With the new ByStar Fiber 12kW, high speeds and a large spectrum of applications are possible. The ByStar Fiber from Bystronic is being enhanced with a 12kW Fiber laser and a newly designed cutting head which enables the “BeamShaper” option, enabling consistent cutting quality on varied material qualities up to 1.125 inches.

Lasers Enhance Traditional Machining

Metalworking machines are fast, powerful, and accurate, but they weren’t always as capable as they are today. Modern equipment is more nimble, flexible and adaptable. The machines collectively exceed the sum of their parts.

Buck Rogers Blasts into the Toolroom

In addition to carbide, ceramics, and cermet, the drive to create the hardest possible cutting tool materials has given us the alphabet soup of PCD, PCBN, CVD-D, and MCD (polycrystalline diamond, polycrystalline cubic boron nitride, chemical vapor deposition diamond, and mono-crystalline diamond, respectively).

Laser Welding for Sheetmetal Fabricators

Although laser welding is a well-established manufacturing solution, many sheetmetal fabricators have been hesitant to implement the process at their shop.

New Chiller Technology Helps Industrial Lasers Keep Their Cool

Industrial lasers require cooling to remove excess heat generated in the resonator power electronics and the optics system. The type of cooling required is determined by laser wattage, resonator efficiency, resonator and optics temperature requirements, and ambient temperature.