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牙科应用中用于加工氧化锆的增材制造技术。

Additive manufacturing technologies for processing zirconia in dental applications.

作者信息

Revilla-León Marta, Meyer Matthew J, Zandinejad Amirali, Özcan Mutlu

出版信息

Int J Comput Dent. 2020;23(1):27-37.

Abstract

OBJECTIVE

The objective of this narrative review was to summarize the current status and future perspectives of additive manufacturing (AM) technologies with a particular emphasis on manufacturing zirconia-based materials. AM technologies include vat photopolymerization, material jetting, material extrusion, selective laser sintering (SLS), and selective laser melting (SLM) technologies based on either powder bed fusion (PBF) technologies or direct energy deposition, or sheet lamination based on binder jetting technologies.

MATERIALS AND METHODS

A comprehensive literature review was performed, specifically evaluating AM technologies assigned for processing zirconia. An electronic database search was performed using keywords and MeSH terms. The search was confined to full-text articles written in English and published in peer-reviewed journals between 1999 and 2018.

RESULTS

A total of 62 articles were included in this review, of which 56 described the AM processes and 6 reported on AM applications in the field of dentistry. A broad diversity of literature exists regarding AM technologies for ceramic materials, which complicates the establishment of a classification system for the current AM technologies for zirconia. The variations in the composition of zirconia slurries or mixtures across different technologies often made it difficult to identify the proper nature of such information. Mechanical properties of printed zirconia materials utilizing different technologies were investigated through a wide range of tests. Overall, the review indicates that manufacturing zirconia using AM technologies could be achieved without issues, but mechanical properties appear to be poor compared with conventional manufacturing procedures.

CONCLUSIONS

The results of this review indicate the necessity for further potential improvement in AM technologies for manufacturing zirconia reconstructions along with advances in material composition before zirconia could be considered as a material for standard care.

摘要

目的

本叙述性综述的目的是总结增材制造(AM)技术的现状和未来前景,特别强调基于氧化锆材料的制造。AM技术包括基于光固化立体成型、材料喷射、材料挤出、选择性激光烧结(SLS)和选择性激光熔化(SLM)技术的粉末床熔融(PBF)技术或直接能量沉积,或基于粘结剂喷射技术的薄片层压。

材料与方法

进行了全面的文献综述,特别评估了用于加工氧化锆的AM技术。使用关键词和医学主题词进行电子数据库检索。检索仅限于1999年至2018年期间发表在同行评审期刊上的英文全文文章。

结果

本综述共纳入62篇文章,其中56篇描述了AM工艺,6篇报道了AM在牙科领域的应用。关于陶瓷材料的AM技术存在广泛多样的文献,这使得为当前用于氧化锆的AM技术建立分类系统变得复杂。不同技术中氧化锆浆料或混合物成分的差异常常使得难以确定此类信息的适当性质。通过广泛的测试研究了使用不同技术打印的氧化锆材料的力学性能。总体而言,该综述表明使用AM技术制造氧化锆是可以实现的,但与传统制造工艺相比,其力学性能似乎较差。

结论

本综述结果表明,在将氧化锆视为标准护理材料之前,有必要进一步潜在改进用于制造氧化锆修复体的AM技术,并在材料成分方面取得进展。

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