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The future of industrial-grade manufacturing is now: https://impossible-objects.com/3d-pri... Learn more about our advanced CBAM composite-based materials: https://impossible-objects.com/materi... Explore industries we serve and applications we excel at: https://impossible-objects.com/indust... See our latest events, PR, and SBIR contracts for government and defense: https://impossible-objects.com/news/ Learn about our leadership team: https://impossible-objects.com/team/ About Impossible Objects: https://impossible-objects.com/about/ How does the CBAM-25 store and process material? See how at 0:35 Long-fiber carbon or fiberglass substrate is loaded into the printer. How does CBAM technology yield and produce high-tolerance parts? 00:48 The web of carbon fiber substrate is precisely located using real-time AI vision, to achieve high-tolerance in each part during production runs. How does CBAM-25 throughput and speed keep up with material demand during build queues? 00:53 Continuous roll fed material allows for 11,800 cm3 composite-based printing per hour. For simplicity, it's 1 layer every 3.8 seconds. At what temperature does CBAM 3D printing happen? Does the CBAM-25 work cell need specific environment and temperature control? 1:00 CBAM technology applies traditional 2D printing methods at room temperature for each printed layer. 1:10 Using inkjet technology, the part build/pattern is printed onto each layer of the carbon fiber or fiberglass substrate. 1:18 Industrial-grade polymer powder is uniformly applied to the carbon fiber or fiberglass substrate, then the powder adheres only to the printed image represented in the part build files. 1:24 Excess powder is removed, revealing the printed layer from the desired part build. 1:32 The process repeats for all the layers of the build. CBAM-25 is the fastest industrial 3D printer at 1 layer every 3.8 seconds (15x faster than rival technologies). 1:38 The web of material is cut into individual layers. 2:04 Real-time AI vision precisely stacks a layer of carbon fiber substrate every 3.8 seconds. 2:22 Printed build is then automatically unloaded from the CBAM-25 print module. 2:54 The build block is then loaded into a heated press. 3:19 The build block of stacked carbon fiber or fiberglass sheets is heated to the melting point of polymer and then compressed to precisely to the build height. 3:28 Automated media blasting removes excess fibers to reveal the final parts. Get in touch with our industrial manufacturing application experts today by visiting: https://impossible-objects.com/contac...