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医学应用中的增材制造工艺

Additive Manufacturing Processes in Medical Applications.

作者信息

Salmi Mika

机构信息

Department of Mechanical Engineering, Aalto University, 02150 Espoo, Finland.

出版信息

Materials (Basel). 2021 Jan 3;14(1):191. doi: 10.3390/ma14010191.

Abstract

Additive manufacturing (AM, 3D printing) is used in many fields and different industries. In the medical and dental field, every patient is unique and, therefore, AM has significant potential in personalized and customized solutions. This review explores what additive manufacturing processes and materials are utilized in medical and dental applications, especially focusing on processes that are less commonly used. The processes are categorized in ISO/ASTM process classes: powder bed fusion, material extrusion, VAT photopolymerization, material jetting, binder jetting, sheet lamination and directed energy deposition combined with classification of medical applications of AM. Based on the findings, it seems that directed energy deposition is utilized rarely only in implants and sheet lamination rarely for medical models or phantoms. Powder bed fusion, material extrusion and VAT photopolymerization are utilized in all categories. Material jetting is not used for implants and biomanufacturing, and binder jetting is not utilized for tools, instruments and parts for medical devices. The most common materials are thermoplastics, photopolymers and metals such as titanium alloys. If standard terminology of AM would be followed, this would allow a more systematic review of the utilization of different AM processes. Current development in binder jetting would allow more possibilities in the future.

摘要

增材制造(AM,3D打印)应用于许多领域和不同行业。在医疗和牙科领域,每个患者都是独特的,因此,增材制造在个性化定制解决方案方面具有巨大潜力。本综述探讨了医疗和牙科应用中使用了哪些增材制造工艺和材料,尤其关注较少使用的工艺。这些工艺按照ISO/ASTM工艺类别进行分类:粉末床熔融、材料挤出、光固化成型、材料喷射、粘结剂喷射、薄片叠层以及定向能量沉积,并结合增材制造的医疗应用分类。基于这些发现,似乎定向能量沉积仅很少用于植入物,薄片叠层很少用于医学模型或仿形。粉末床熔融、材料挤出和光固化成型在所有类别中均有应用。材料喷射不用于植入物和生物制造,粘结剂喷射不用于医疗设备的工具、器械和部件。最常用的材料是热塑性塑料、光聚合物和金属,如钛合金。如果遵循增材制造的标准术语,将能够对不同增材制造工艺的应用进行更系统的综述。粘结剂喷射的当前发展将在未来带来更多可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41bb/7796413/3f738af229f3/materials-14-00191-g001.jpg

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