Industrial Technology

Industrial Technology

Robotic arm using Wire Arc Additive Manufacturing to build a large layered metal component with an electric arc in a bright industrial workshop.

Wire Arc Additive Manufacturing (WAAM): A Clear Guide

1. What is Wire Arc Additive Manufacturing? Building huge metal parts like rocket fuel tanks, ship propellers, and crane arms used to take months of heavy forging and cutting. Today, engineers build these same large parts in days using Wire Arc Additive Manufacturing (WAAM). WAAM is a direct energy deposition (DED) process. It combines standard […]

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A industrial robot arm using Wire Arc Additive Manufacturing (WAAM) technology to 3D print a large metal component in a modern workshop with data screens.

Wire Arc Additive Manufacturing (WAAM): Process, Materials, Challenges, and Industrial Applications

Written by Felix Lee, CEO at Forgecise Expertise: Advanced Manufacturing | Industrial Automation | Metal Additive Manufacturing Published: July 30, 2026Last Updated: July 30, 2026 Quick Answer Wire Arc Additive Manufacturing (WAAM) is a metal 3D printing technology that uses an electric arc heat source to melt metal wire layer by layer, creating large and

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3D printed metal antenna prototype for 6G wireless communication technology operating at 220GHz millimeter-wave frequencies, showing precision waveguide structures and advanced RF components.

3D Printed 6G Antennas: How 220GHz Technology Could Shape Future Wireless Communication

Written by Felix Lee, CEO at ForgecisePublished: July 2026Last Updated: July 2026 Quick Answer A 3D printed 6G antenna uses metal additive manufacturing to create complex high-frequency structures that are difficult to build with traditional machining. A 220GHz antenna design combines signal filtering, power distribution, and radiation in one metal structure, producing 16 signal outputs

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Ceramic 3D printing for semiconductor applications, showing a high-precision ceramic printer, silicon wafer, microchip, ceramic cooling parts, microfluidic components, and Si3N4, Al2O3, and ZrO2 materials.

Ceramic 3D Printing in Semi-conductor Industry

By Felix Lee | CEO at Forgecise Published on June 12, 2026 • Reading Time: 8 min (~1,700 words) Reviewed by: Additive Manufacturing & Microelectronics Editorial Team Fast Answer Box What is ceramic 3D printing in the semiconductor industry? > It is an additive manufacturing process—mainly using SLA and DLP light techniques—that builds high-precision ceramic

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AI-powered 3D printing technology showcased at WAIC 2026, featuring an industrial robot, smart manufacturing systems, AI simulation displays, and advanced metal 3D printed components.

AI in 3D Printing: WAIC 2026 Shows the Future of Smart Manufacturing

AI is changing 3D printing from a tool used mainly for prototyping into a smarter manufacturing system. WAIC 2026 showed how artificial intelligence is entering every stage of additive manufacturing, including 3D design, engineering simulation, printing process control, and factory automation. The next generation of 3D printing will combine AI models, industrial software, advanced computing,

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Ceramic 3D printing technology in semiconductor manufacturing with precision ceramic components, semiconductor chips, wafer structures, and an industrial additive manufacturing system in a cleanroom environment.

Ceramic 3D Printing in Semiconductor Manufacturing: Applications and Future Innovations

Published Date: July 29, 2026Last Updated: July 29, 2026 Author: Felix Lee, CEO at Forgecise Felix Lee is the CEO at Forgecise, focusing on advanced manufacturing technologies and industrial production solutions. His work covers the connection between ceramic additive manufacturing, engineering applications, and next-generation semiconductor technologies. Through his experience with advanced manufacturing systems, Felix Lee

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Revopoint Trackit SR wireless optical tracking 3D scanner measuring a large industrial metal component with blue laser projection in a factory environment.

Trackit SR Wireless Optical Tracking 3D Scanner for Industrial Measurement

Last Updated: July 29, 2026 Written by Felix Lee, CEO at Forgecise About the Author Felix Lee is the CEO at Forgecise, focusing on industrial technology, manufacturing solutions, and engineering workflows. His work covers how new engineering tools help companies improve measurement accuracy, production processes, and digital manufacturing operations. Quick Answer Revopoint Trackit SR is

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Global 3D printing manufacturing centers map with automated factories, industrial 3D printers, and production hubs across the United States, China, and Germany.

Global 3D Printing Manufacturing Centers: The New Battlefields of Industrial Production

Quick Answer The world’s leading 3D printing manufacturing centers are located across the United States, China, and Germany. These facilities represent five different industrial models: AI-powered mass production, consumer 3D printer manufacturing, high-end metal additive manufacturing, contract production services, and aerospace-grade metal manufacturing. TL;DR 3D printing has spent decades being described as the “future of

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Bright industrial infographic showing the Revopoint Trackit SR wireless optical tracking 3D scanner inspecting a large metal component without target markers, alongside key specifications, laser scanning modes, software workflow, and industrial applications.

Revopoint Trackit SR Review: Wireless Optical Tracking 3D Scanner

By Felix Lee, CEO at Forgecise | Published: July 22, 2026 Quick Product Summary On July 21, 2026, Revopoint (知象光电) launched the Trackit SR. It is an industrial 3D scanner that uses wireless optical tracking. You do not need to stick target dots on parts or drag cables around the factory floor. Fixing the Old

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