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通过计算机断层扫描对熔融沉积建模制造的多几何模板进行结构和尺寸分析。

Structural and Dimensional Analysis by Computed Tomography of a Multi Geometric Template Manufactured by Fused Deposition Modeling.

作者信息

Aguilar-Duque Julian I, Ontiveros Sinue, Baez-Lopez Yolanda, Juárez-Luna Victor Manuel, Brau-Avila Agustín, Tlapa Diego

机构信息

Facultad de Ingeniería, Arquitectura y Diseño, Universidad Autónoma de Baja California, Carretera Transpeninsular Ensenada-Tijuana 3917, Ensenada 22860, Mexico.

Facultad de Ciencias de la Ingeniería, Administración y Sociales, Universidad Autónoma de Baja California, Tecate 21460, Mexico.

出版信息

Micromachines (Basel). 2023 Oct 15;14(10):1934. doi: 10.3390/mi14101934.

Abstract

As a consequence of the development of AM, strategies have been developed to optimize the printing process, which focuses on reducing manufacturing time, such as using genetic algorithms (GAs), among others. The effect caused by the modification of path patterns is an effect of interest in two aspects: dimensional assurance focused on the compliance of the dimensions of the components in comparison with the digital design of the components, and the structural composition and resistance that the printing process itself can generate. This paper aims to present the effect of optimizing the path of fused filament fabrication (FFF) equipment on the dimensional finish and structural quality of a multi-geometric component using computed tomography. For this purpose, a template composed of 23 geometric elements, printed using FFF technology and PLA as the base material, is used. The results show an 11% reduction in the total process time required to print the component. The effect on the dimensional precision of different geometric elements was identified. In addition, it was possible to ensure that the structural quality of the multi-geometric component was not affected by the modification of the path required by the printing process.

摘要

由于增材制造(AM)的发展,人们已经制定了一些策略来优化打印过程,这些策略主要集中在减少制造时间,例如使用遗传算法(GA)等。路径模式修改所产生的影响在两个方面值得关注:一方面是尺寸保证,即关注部件尺寸与数字设计的符合程度;另一方面是打印过程本身能够产生的结构组成和强度。本文旨在通过计算机断层扫描展示优化熔丝制造(FFF)设备路径对多几何形状部件的尺寸精度和结构质量的影响。为此,使用了一个由23个几何元素组成的模板,该模板采用FFF技术以聚乳酸(PLA)为基础材料进行打印。结果表明,打印该部件所需的总工艺时间减少了11%。确定了对不同几何元素尺寸精度的影响。此外,还能够确保多几何形状部件的结构质量不受打印过程所需路径修改的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fa9/10609247/abe94497ddd2/micromachines-14-01934-g001.jpg

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