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Evaluation of additive manufacturing (AM) techniques for the production of metal-ceramic dental restorations

机译:评估用于金属陶瓷牙修复体生产的增材制造(AM)技术

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摘要

Two approaches, based on time compression techniques, have recently been introduced for the production of dental restorations: the use of drop-on-demand (DoD) wax patterns for the investment casting of cobalt-chromium (CoCr) alloy and the direct fabrication of metal restorations by means of selective laser sintering additive technique. These two technologies are analysed in this paper from the point of view of the accuracy of the final product that can be achieved. To this aim, the Virtual Model (VM) of a specifically designed artefact for dental applications has been used as a reference model. The restorations were first designed, disregarding the manufacturing process, in order to have a single geometry for the subsequent comparisons and were then produced in dental laboratories on the basis of the given geometry. After fabrication, the restoration surfaces were inspected, by using a coordinate measuring machine (CMM), to obtain information on the achieved accuracy. The results have shown that both processes are able to produce clinically acceptable restorations.
机译:最近,基于时间压缩技术的两种方法已被引入到生产牙齿修复物中:使用按需滴落(DoD)蜡模进行钴铬(CoCr)合金的熔模铸造和直接制造通过选择性激光烧结添加剂技术修复金属修复体。本文从可以实现的最终产品的准确性的角度分析了这两种技术。为此,已将专门设计用于牙科应用的人工制品的虚拟模型(VM)用作参考模型。首先设计修复体,不考虑制造过程,以便为以后的比较使用单个几何体,然后在给定的几何体基础上在牙科实验室生产。制造后,通过使用坐标测量机(CMM)检查修复表面,以获得有关所达到精度的信息。结果表明,两种方法都能产生临床上可接受的修复体。

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