It's our favorite day of the week, Machine Monday! 🖨️ The Inca Onset X3 UV printer has a robot automation that places and removes substrate to/from the vacuum table. This machine is capable of printing at up to 922m² /hr (equivalent to 180 full-bed sheets/hr). The Onset can handle up to 126.8in of various substrates, which allows it to take on some pretty large-scale projects!
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A nice example of in process monitoring which can be achieved using our software! Who has time to sit and watch a large format builds print for multiple days. This way the entire build and parameters are recorded and can be reviewed whenever needed! #additivemanufacturing #3dprinting Ai Build
Exciting Progress in AiLab! Take a behind-the-scenes look at our latest additive manufacturing project for the automotive industry. 🚗 Our nozzle cameras captured a snapshot of the work in progress, featuring: ☑️ Segmented Printing ☑️ Multiplanar Slicing ☑️ Double Walls ☑️ Zigzag Infill These innovative techniques are set to redefine the future of automotive manufacturing, making tools lighter, stronger, and more efficient. Stay tuned for more updates on this exciting project. Ai Build #AdditiveManufacturing #AutomotiveIndustry #Innovation #ManufacturingTechnology #Engineering #AutomotiveManufacturing #AiSync #AiBuild
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Rapidly Printing with Liquid Metal Revolutionizing #MetalPrinting! MIT's groundbreaking liquid metal printing technique is 10x faster than traditional methods. Learn how they're producing large-scale parts like table legs and chair frames in minutes, and what this means for the future of #Manufacturing: https://bit.ly/43Wl541 #GeoPLM #AdditiveManufacturing #MetalPrinting
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🤯 This print appears to be happening in midair 🧙♂️ - it's a new method of #3Dprinting: It combines direct ink writing with up-conversion particles-assisted photopolymerization. With this method of printing ceramics, the need for support structures is eliminated. Paper: https://lnkd.in/ejs3KjQZ Credit: Wohlers Associates, powered by ASTM International If you have interesting papers or projects, you would like to share, please DM me! 🔔 Follow Ilir Aliu for updates on #robotics & #ai. 🌟 Need to spotlight YOUR product or solution? Let me help! #robotics #robots #Automation #ai #manufacturing #3dprinting
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This approach to ceramic 3D printing is remarkable because it addresses some of the key challenges in the field, such as the need for supports that can complicate the printing process and the final product quality. By eliminating the need for these supports, this technology simplifies the printing process, enhances the quality of the printed objects, and potentially opens new avenues for the use of ceramic materials in various applications, from industrial components to intricate artistic pieces
🤯 This print appears to be happening in midair 🧙♂️ - it's a new method of #3Dprinting: 🧠 It combines direct ink writing with up-conversion particles-assisted photopolymerization. 💡 With this method of printing ceramics, the need for support structures is eliminated. Paper: https://lnkd.in/ejs3KjQZ Credit: Wohlers Associates, Powered by ASTM International 🔔 Follow Ilir Aliu for updates on #robotics & #ai. 🌟 Need to spotlight YOUR product or solution? Let me help! #robotics #robots #Automation #ai #manufacturing #3dprinting
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3D printing is an enhanced process designed to use layers of materials to build 3D equipment or object. Furthermore, 3D printing is intended to enable users to develop a complex shape using less material than traditional manufacturing methods. In addition, the surge in demand for AI, the IoT, and smart infrastructure solutions across the automotive, consumer electronics, and healthcare sectors are expected to drive the growth of the market across North America in the coming years. Explore More Insight: https://bit.ly/47KhTsB #3Dprinting #3dprintingtechnology #3dprintingservice #3dprintingindustry #alliedmarketresearch
🤯 This print appears to be happening in midair 🧙♂️ - it's a new method of #3Dprinting: 🧠 It combines direct ink writing with up-conversion particles-assisted photopolymerization. 💡 With this method of printing ceramics, the need for support structures is eliminated. Paper: https://lnkd.in/ejs3KjQZ Credit: Wohlers Associates, Powered by ASTM International 🔔 Follow Ilir Aliu for updates on #robotics & #ai. 🌟 Need to spotlight YOUR product or solution? Let me help! #robotics #robots #Automation #ai #manufacturing #3dprinting
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🤯 This print appears to be happening in midair 🧙♂️ - it's a new method of #3Dprinting: 🧠 It combines direct ink writing with up-conversion particles-assisted photopolymerization. 💡 With this method of printing ceramics, the need for support structures is eliminated. Paper: https://lnkd.in/ejs3KjQZ Credit: Wohlers Associates, Powered by ASTM International 🔔 Follow Ilir Aliu for updates on #robotics & #ai. 🌟 Need to spotlight YOUR product or solution? Let me help! #robotics #robots #Automation #ai #manufacturing #3dprinting
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Solutions Consultant, to collaborate with companies and enable them to unlock the potential benefits of digital transformation in their product development processes.
Rapidly Printing with Liquid Metal Revolutionizing #MetalPrinting! MIT's groundbreaking liquid metal printing technique is 10x faster than traditional methods. Learn how they're producing large-scale parts like table legs and chair frames in minutes, and what this means for the future of #Manufacturing: https://bit.ly/43Wl541 #GeoPLM #AdditiveManufacturing #MetalPrinting
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3D Printing ceramics without supports - in thin air! Looks like magic. This method combines ink writing with near-infrared (NIR) light and special particles to print ceramics without needing extra supports. It can make complex structures like springs and beams, revolutionizing how ceramics are made. Additive manufacturing is praised for its benefits in making ceramics due to their strength and wide use. Traditional methods struggle with intricate shapes because ceramics are brittle. However, additive manufacturing helps, yet printing large or special shapes without support remains a challenge. UV-based printing struggles with thick ceramic mixes, but using NIR light with special particles solves this, making the process more effective. The new method uses NIR light and ink writing together, allowing precise structure creation without supports. It improves filament strength and lets printing of complex shapes without flaws, like horizontal overhangs. The text also talks about the ink's behavior and how it affects printing, highlighting the importance of its viscosity and changes in maintaining the filament's shape. Overall, this approach boosts ceramic 3D printing by overcoming support issues and inefficient curing methods, enabling better precision and efficiency in printing large, complex ceramic structures. Credit: Ilir Aliu, Wohlers Associates, powered by ASTM International #3dprinting #future #ai #robotics #technolgoy #manufacturing #3dvector #3dvectorinc #3dvectorcom
🤯 This print appears to be happening in midair 🧙♂️ - it's a new method of #3Dprinting: It combines direct ink writing with up-conversion particles-assisted photopolymerization. With this method of printing ceramics, the need for support structures is eliminated. Paper: https://lnkd.in/ejs3KjQZ Credit: Wohlers Associates, powered by ASTM International If you have interesting papers or projects, you would like to share, please DM me! 🔔 Follow Ilir Aliu for updates on #robotics & #ai. 🌟 Need to spotlight YOUR product or solution? Let me help! #robotics #robots #Automation #ai #manufacturing #3dprinting
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🌟 Unleashing #DarkWave: Redefining Drying Technology! In the ever-changing world of industrial drying for digital printing machines, a groundbreaking solution has emerged – DarkWave, THE NEW GENERATION OF DRYERS. It's not just a technology; it's a game-changer that harnesses the power of radiation and hot air from a single energy source #DarkeWaveSAVENERGY. But why do we develop the DarkWave, and what makes it truly exceptional for #printingmachines? Find more about our new technology just clicking here 👇 https://lnkd.in/eWZu2JrS
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Exponential growth in 316L parameter studies! #MaterialsMonday The diagram shows the number of publications on the topic of parameter optimization for 316L in Additive Manufacturing. Parameter studies are certainly useful for building up know-how and improving processes. But does it really make sense for over 100 companies and institutes to do similar studies? In any case, it is very inefficient and brings little knowledge gains to the #MetalAM industry. We can do better! With AddiMap - The AM Platform we created an open Marketplace to trade LPBF process parameters and material data. With data from AddiMap you can stop printing density cubes and focus on real applications to leverage the full potential of Metal Additive Manufacturing! 🌐 Visit www.AddiMap.com #AdditiveManufacturing #platform #Innovation
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5moWow. It must be an interesting process to dial in/calibrate that ‘robot’ correctly.