CeraFab Lab L30
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Catalog excerpts

CeraFab Lab L30 - 1

YOUR ENTRY INTO CERAMIC 3D PRINTING High-resolution and accurate technology trusted for even the most precise of applications, such as these alumina aerospike nozzles With the CeraFab Lab L30, Lithoz introduces high-quality Lithography-based Ceramic Manufacturing technology for research, labs and new players in various industries. Perfect for customized first part and small-scale production with oxide ceramics, the CeraFab Lab L30 is equipped with a range of Lithoz’s expertly engineered materials and processing parameters, optimized to deliver exceptional part quality. The CeraFab Lab L30 uses industry-proven LCM technology to rapidly and accurately produce high-performance components. Powerful starting point for ceramic 3D printing Fine-tune your 3D-printed parts and designs Research, labs, shop floors and new industrial players QUALITY POWERED BY LITHOZ The CeraFab Lab L30 is a shop floor-friendly 3D printer with the full power of Lithoz’s original CeraFab 7500, expertly condensed and specifically developed as a starting point for ceramic 3D printing. After 10 years of successful use in research and industry, the technology powering this machine is reliable and effective – you can be sure that the CeraFab Lab L30 offers the same high level of Lithoz quality when it comes to 3D printing. This 3D printer enables the development and use of own materials, while the near-limitless design freedom offered by the LCM process opens the door to new markets and applications to drive your product innovation further than ever before. Your system provider for the additive manufacturing of high-performance ce

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CeraFab Lab L30 - 2

FINAL COMPONENT MATERIAL-SAVING TECHNOLOGY The first step is the job preparation using intuitive CeraFab Control software, with information being digitally transferred to the 3D printer. After the quick and easy loading of the machine, ceramic slurry is then automatically dispensed into the vat. The build platform is dipped into the slurry, which is exposed to light from below. This cures the entire surface of a layer at once, greatly speeding up the entire process compared to laser-based technologies. After undergoing a debinding and sintering process, the fully dense and high-performance...

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