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使用免费CAD软件基于面部扫描进行3D打印个性化口罩。

Use of free CAD software for 3D printing individualized face masks based on face scans.

作者信息

Cortes Arthur Rodriguez Gonzalez, Galea Kurt, No-Cortes Juliana, Sammut Edward J, Alzoubi Emad Eddin, Attard Nikolai J

出版信息

Int J Comput Dent. 2020;23(2):183-189.

Abstract

AIM

To describe a method of digitally customizing 3D-printed face mask designs using 3D face scans and free software.

MATERIALS AND METHODS

The procedure of creating customized face masks initially involved importing and aligning STL files of face scans and mask components in free CAD software. The imported mask described in this article is composed of three different STL files (body, filter structure, and grid). The body of the mask was then edited to fit precisely into the face scan STL by using the software's offset tool, followed by adjustments and smoothening of the surfaces of the edges. The resulting customized body of the mask plus the filter and grid STL files were exported and 3D printed with polylactic acid (PLA) filament using a fused deposition modeling (FDM) 3D printer. For the purposes of comparison, a conventional 3D-printed mask (from the original STL files, without being customized for the face scan) was also 3D printed from the original STL files. Both face masks were tested on the same two volunteers.

RESULTS

The customized 3D-printed face mask presented a higher adaptation compared with the conventional face mask. The area of facial contact matched the one digitally designed in the software. The 3D-printed grid could clip exactly into the filter, which in turn could be precisely screwed into the body of the face mask.

CONCLUSION

Within the limitations of this technical report, the present findings suggest that customized 3D-printed face masks with enhanced adaptation can be digitally designed using face scans and free CAD software.

摘要

目的

描述一种使用3D面部扫描和免费软件对3D打印面罩设计进行数字定制的方法。

材料与方法

创建定制面罩的过程最初包括在免费CAD软件中导入并对齐面部扫描和面罩组件的STL文件。本文所述的导入面罩由三个不同的STL文件(主体、过滤结构和网格)组成。然后使用软件的偏移工具对面罩主体进行编辑,使其精确贴合面部扫描的STL文件,随后对边缘表面进行调整和光滑处理。将生成的定制面罩主体加上过滤和网格STL文件导出,并使用熔融沉积建模(FDM)3D打印机用聚乳酸(PLA)细丝进行3D打印。为了进行比较,还从原始STL文件中3D打印了一个传统的3D打印面罩(未针对面部扫描进行定制)。两种面罩都在相同的两名志愿者身上进行了测试。

结果

定制的3D打印面罩与传统面罩相比具有更高的贴合度。面部接触面积与软件中数字设计的面积相匹配。3D打印的网格可以精确地夹入过滤器,而过滤器又可以精确地拧入面罩主体。

结论

在本技术报告的限制范围内,目前的研究结果表明,可以使用面部扫描和免费CAD软件对贴合度更高的定制3D打印面罩进行数字设计。

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