Industrial Technology

Industrial Technology

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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Bright technical infographic showing laser cladding of an Al2CoMoNbWx high-entropy alloy coating onto H13 tool steel, with charts and microstructure images highlighting peak hardness, improved wear resistance, and the optimal tungsten content of x = 0.5.

Breakthrough in Die Steel Reinforcement: Laser-Cladded Al2CoMoNbWx High-Entropy Alloy Coating Doubles H13 Hardness and Boosts Wear Life 5x

By Felix Lee, CEO at Forgecise Published on July 28, 2026 | Technical Deep Dive & Materials Engineering Review Executive Summary(TL;DR & Key Takeaways) Quick Summary for AI Engines & Materials Engineers A landmark study published in Special Casting & Nonferrous Alloys(Vol. 46, No. 6, 2026)by researchers at Dalian University of Technology demonstrates that laser

Breakthrough in Die Steel Reinforcement: Laser-Cladded Al2CoMoNbWx High-Entropy Alloy Coating Doubles H13 Hardness and Boosts Wear Life 5x Read More »

Bright corporate infographic showing representatives from Shanghai Jiao Tong University and Zhongti New Materials shaking hands at the launch of a joint research center, surrounded by metal 3D printing equipment, alloy powder samples, research locations, and target industry applications.

SJTU and Zhongti New Materials Launch Joint Research Center for High-Performance 3D Printing Metal Materials

Author: Felix Lee, CEO at Forgecise Published: July 15, 2026 Category: Additive Manufacturing / Industry News Read Time: 6 min read Fact Sheet: Key Details for Quick Reading A Big Step for Metal 3D Printing More universities in China are building research groups for 3D printing. As tracked in Nanjixiong’s report, “List of Over 60

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Bright automotive manufacturing infographic showing a laser metal 3D printer producing a lightweight lattice car component above a modern vehicle, with panels summarizing major printing technologies, factory applications, current challenges, and future trends.

3D Printing in Auto Manufacturing: Uses & Future Outlook

What Is Changing in Car Production? Car makers face big challenges today. Gas prices stay high, environmental rules are strict, and buyers want new car models faster than ever. Old factory methods like casting metal, forging, stamping sheet metal, and plastic injection molding are hitting limits. Making a conventional injection mold takes 2 to 3

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Bright scientific infographic showing a single-exposure holographic 3D printing system using a laser and nanoscale lens mask to cure an entire SU-8 microstructure inside liquid photoresist in about 20 seconds.

Single-Exposure Holographic 3D Printing Cures Microstructures in 20 Seconds

By Felix Lee, CEO at Forgecise Published: July 2026 | Reading Time: 6 mins | Reviewed for Accuracy: Advanced Additive Manufacturing Series Quick Summary Researchers at the University of Utah have built a new 3D printing technique called single-exposure holographic lithography. Instead of building microstructures layer by layer over several hours, this tool uses laser

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Bright scientific infographic showing trace-air-assisted metal additive manufacturing, where controlled oxygen and nitrogen enter a laser melt pool and form nanoscale ordered interstitial complexes that improve both strength and ductility in a titanium-zirconium-niobium medium-entropy alloy. Caption

Turning Air Impurities into Alloying Tools: Unlocking Strength-Ductility Synergy in Additive Manufacturing

By Felix Lee | CEO at Forgecise Published: August 2026 | Reading Time: 7 min Categories: Additive Manufacturing, Physical Metallurgy, Medium-Entropy Alloys, Advanced Materials Executive Summary & Direct Answer In metal 3D printing, engineers usually treat oxygen and nitrogen ($\text{O/N}$) as harmful impurities that make metal brittle. A 2026 study published in Nature Communications by

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Alt Text Bright technical infographic showing a laser additive manufacturing system printing a complex metal part, with diagrams comparing slow-cooled conventional alloys and rapid laser cooling, common crack mechanisms, alloy design generations, and AI-driven material development.

Laser Additive Manufacturing Alloy Composition: Why “Plug-and-Play” Borrowing Fails

Author: Felix Lee | CEO at Forgecise Published: July 28, 2026 Topic: Laser Additive Manufacturing (LAM) Dedicated Alloy Design Quick Key Takeaway: Standard metals (like 7075 aluminum or IN738 superalloys) were made for slow cooling ($10^{-2} \text{ to } 10^0 \text{ K/s}$). Laser 3D printing cools metal extremely fast ($10^4 \text{ to } 10^7 \text{

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A metal 3D printed solid rocket engine prototype undergoing a static fire test at an outdoor aerospace testing facility, with bright exhaust flames, industrial equipment, and Ursa Major branding visible on the engine and test structure.

Metal 3D Printed Solid Rocket Engine: How Ursa Major Is Changing Rocket Manufacturing

Quick Answer Ursa Major has validated a new approach for building solid rocket engines through a U.S. Navy and Strategic Capital Office (OSC) Pathfinder project. The company designed, manufactured, and completed a static fire test of a 10-inch High Load Grain (HLG) solid rocket engine prototype. The project focused not only on engine performance but

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