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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.

In Laser Welding, Power Needs Precision

With great power comes great responsibility, the saying goes. And with greater laser power being used to weld sheet metal, tubes, copper and aluminum, operators have a greater responsibility to deliver that power with a precision that avoids defects.

Laser Cutting Powers Up

Implementing a comprehensive laser cutting system is not a task for the faint of heart. In addition to the financial outlay, requirements include planning for a complete system, not just the laser, according to Dustin Diehl, laser division product manager, Amada America Inc., Buena Park, Calif.

High-Power Fiber Laser Welding With Filler Material

Fiber laser welding continues to grow as it improves in weld quality, reliability and performance. Many fiber laser welding applications are autogenous, where the weld is formed entirely by melting parts of the base metal and no additional filler wire or powder is used

The Ins and Outs of Laser Marking

Part identification is a necessary step in any manufacturing operation. This might be as simple as a label on the shipping box, but more often shops are required to mark each component, especially those used in automotive, aerospace, or medical applications.

Pulsed Laser Deposition for 3D Printed Parts Repair

Laser welding is a superior technology for repairing defects in tooling, plastic injection molds, stamping dies, blow molds, turbine blades, and nearly any tooling component made of stainless steel, aluminum, copper alloy, cast iron, and all tool steels.