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[Case Study] Defoaming of High Transparency Silicone for 3D Printers

[Demo Application Available] Measurement accuracy improved by bubble removal! Submicron-level bubbles removed with a vacuum mixer.

We are conducting research to improve the precision of surgical procedures by creating silicone-based artificial organs using a 3D printer and verifying blood flow with these artificial organs and blood vessels. Here, we introduce a case study of a rotational and orbital vacuum mixer that our customer has adopted. Previously, the company placed silicone for 3D printers in a vacuum chamber for degassing, but due to the issue of silicone spattering in the vacuum chamber, the process took a lot of time. Therefore, they first borrowed a demo unit and introduced the "Awatori Nentaro ARV-310." As a result, the scattering of laser light was significantly reduced, allowing for the production of highly transparent artificial organs. [Case Study] ■ Customer's Concern: Degassing high transparency silicone for 3D printers ■ Product Introduced: Awatori Nentaro ARV-310 *For more details, please refer to the PDF document or feel free to contact us.

Related Link - https://www.thinkymixer.com/ja-jp/case/case10/

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THINKY Awatori Rentaro ARV-310, 310LED Catalog (JP)

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THINKY Corporation has realized simultaneous processing of stirring and degassing through the concept of combining two types of rotation: rotation and revolution. The "Awatori Rentaro," a rotary-revolution mixer, was born as a device that can process these two opposing processes, "stirring" and "defoaming," which had long been considered separate steps in the material processing process, simultaneously and in a short time. Currently, Awatori Rentaro has grown into a diverse lineup, ranging from small tabletop models for laboratories to large-scale production models. We have received numerous inquiries from various fields both domestically and internationally. THINKY will continue to assist in solving material processing challenges and building a foundation for mass production with our unique material processing technology and know-how.