Exhibitors List

Exhibitor's Information

Booth No. K209
Company Name JinHeung Tech
Country Korea, South
CEO Dukyoung Jin
Address 301, APEXCITY, 823 Dongtansunhwan-daero, Hwaseong-si, Gyeonggi-do 18471 KOREA
TEL 82-31-5183-5233
FAX 82-
E-mail eng@weld-cut.com
Website http://weld-cut.com
Company Introduction With over 30 years of expertise in metal working, Jinheung Tech is a trusted technology partner supplying advanced Orbital Welding and industrial 3D printing solutions to key industries including nuclear energy, semiconductors, and aerospace. In collaboration with WAAM3D, our adoption of RoboWAAM and WAAMCtrl enables precise, real-time control of large-scale metal additive manufacturing?delivering superior material strength, reduced costs and lead times, and sustainable production.
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Exhibits Items WAAM3D utilizes WAAM technology to produce large metal parts faster and more cost-effectively than traditional casting or forging.
With RoboWAAM and WAAMCtrl, it enables precise control, real-time monitoring, enhanced strength, and eco-friendly manufacturing.
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Supplier Information

Country United Kingdom
Company Name WAAM3D
Address Unit 7 Integra Park Thornton Chase, Linford Wood, Milton Keynes, Buckinghamshire MK14 6FD
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Company Description WAAM3D is a UK-based metal additive manufacturing company founded in 2018 by Cranfield University researchers. It specializes in Wire Arc Additive Manufacturing (WAAM) for large-scale metal parts. Key products like RoboWAAM and MiniWAAM serve aerospace, energy, and marine industries. With in-house WAAMCtrl software and quality metal wire, the company enables cost and lead time reduction. WAAM3D is active in global markets including Korea, Singapore, and Japan.
Exhibits Item (Product) Description [obligatory] RoboWAAM and MiniWAAM are WAAM3D’s core products for large-scale metal additive manufacturing. RoboWAAM supports up to 2m³ build volume, ideal for aerospace and energy applications. MiniWAAM is compact, suited for R&D and small parts. Both feature WAAM3D’s proprietary software and real-time monitoring for precision and efficiency.
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Supplier Information

Country United States of America
Company Name MELD Manufacturing
Address 200 Technology Drive Christiansburg, VA 24073 USA
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Company Description MELD Manufacturing, based in Virginia, USA, specializes in metal additive manufacturing using its proprietary MELD® technology. Unlike traditional methods, MELD® processes metals in the solid state using friction and pressure, without melting. This enables the production of stronger, high-quality parts. Operable in open-air environments and without a vacuum chamber, MELD is ideal for aerospace, defense, and other industries requiring durable, large-scale metal components.
Exhibits Item (Product) Description [obligatory] The K2 by MELD Manufacturing is a large-scale industrial 3D printer based on MELD® solid-state deposition technology. With a build volume of 2100×1100×1000 mm, it processes metals like aluminum, titanium, and steel without melting or a vacuum chamber. Ideal for aerospace and defense, it produces strong, fully dense parts in open-air environments.
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Supplier Information

Country Canada
Company Name Liburdi Dimetric
Address 45 INNOVATION DRIVE DUNDAS, ON L9H 7L8 CANADA
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Company Description Liburdi Dimetrics, founded in 1967 in Canada, specializes in advanced orbital welding systems. While orbital welding is their main focus, their parent company, Liburdi Automation, provides additive manufacturing solutions through the LAWS platform. LAWS supports DED (Directed Energy Deposition) using laser or arc methods with wire or powder. It includes multi-axis motion, closed-loop feedback, and Industry 4.0 integration for precise metal part production and repair.
Exhibits Item (Product) Description [obligatory] Liburdi Automation’s flagship LAWS series is a DED-based metal 3D printing system supporting laser or arc deposition with wire or powder feedstock. With up to 6-axis motion control, real-time closed-loop feedback, and Industry 4.0 integration, it is ideal for precision manufacturing and repair of complex metal components.
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