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Evaluation of water absorption properties and fabrication of hollow obturator model using 3D digital dentistry

机译:使用3D数字牙科评估吸水性能并制造空心填孔模型

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Fluid accumulation in the hollow spaces of obturator is a continuing problem when fabricating hollow obturator prostheses using the conventional method. To address this problem, the three-dimensional (3D) digital technology was used to evaluate water absorption in the inner hollow obturator spaces. Solid and hollow obturator specimens were fabricated using a 3D printer with photocurable resin. Then, the hermeticity was examined by leak testing. These specimens were immersed in distilled water at 37°C. Each specimen was weighed every 24 h for 120 days, and weight changes between each group were compared. Water accumulation in the hollow obturator was not visually observed. Although water absorption was significantly higher in solid specimens, the weight increase rate was also significantly higher in hollow specimens. Applying a laminating 3D photo fabrication made the fabrication of a completely unified hollow obturator model possible.
机译:当使用常规方法制造中空闭孔器假体时,流体在闭孔器的中空空间中的积聚是一个持续的问题。为了解决这个问题,三维(3D)数字技术用于评估内部空心填塞器空间中的吸水率。使用具有光固化树脂的3D打印机制作实心和空心填密样品。然后,通过泄漏测试检查气密性。将这些样品浸入37℃的蒸馏水中。每24小时对每个样品称重120天,并比较每组之间的体重变化。目视观察不到中空填塞器中的水积聚。尽管固体样品的吸水率明显较高,但空心样品的重量增加率也显着较高。应用层压3D照片制作可以制造出完全统一的空心填塞模型。

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