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材料喷射制造的微观细节尺寸和几何精度评估。

Assessment of the Dimensional and Geometric Precision of Micro-Details Produced by Material Jetting.

作者信息

Silva Miguel R, Pereira António M, Sampaio Álvaro M, Pontes António J

机构信息

Institute for Polymers and Composites-IPC, School of Engineering, University of Minho, 4800-058 Guimarães, Portugal.

CDRSP, ESTG, Polytechnic of Leiria, 2401-951 Leiria, Portugal.

出版信息

Materials (Basel). 2021 Apr 15;14(8):1989. doi: 10.3390/ma14081989.

Abstract

Additive Manufacturing (AM) technology has been increasing its penetration not only for the production of prototypes and validation models, but also for final parts. This technology allows producing parts with almost no geometry restrictions, even on a micro-scale. However, the micro-Detail (mD) measurement of complex parts remains an open field of investigation. To be able to develop all the potential that this technology offers, it is necessary to quantify a process's precision limitations, repeatability, and reproducibility. New design methodologies focus on optimization, designing microstructured parts with a complex material distribution. These methodologies are based on mathematical formulations, whose numerical models assume the model discretization through volumetric unitary elements (voxels) with explicit dimensions and geometries. The accuracy of these models in predicting the behavior of the pieces is influenced by the fidelity of the object's physical reproduction. Despite that the Material Jetting (MJ) process makes it possible to produce complex parts, it is crucial to experimentally establish the minimum dimensional and geometric limits to produce parts with mDs. This work aims to support designers and engineers in selecting the most appropriate scale to produce parts discretized by hexahedral meshes (cubes). This study evaluated the dimensional and geometric precision of MJ equipment in the production of mDs (cubes) comparing the nominal design dimensions. A Sample Test (ST) with different sizes of mDs was modeled and produced. The dimensional and geometric precision of the mDs were quantified concerning the nominal value and the calculated deviations. From the tests performed, it was possible to conclude that: (i) more than 90% of all analyzed mDs exhibit three dimensions (xyz) higher than the nominal ones; (ii) for micro-details smaller than 423 μm, they show a distorted geometry, and below 212 μm, printing fails.

摘要

增材制造(AM)技术不仅在原型制作和验证模型生产方面的渗透率不断提高,在最终零件生产方面也是如此。这项技术能够生产几乎不受几何形状限制的零件,即使在微观尺度上也是如此。然而,复杂零件的微观细节(mD)测量仍是一个有待研究的领域。为了充分发挥这项技术的潜力,有必要量化工艺的精度限制、重复性和再现性。新的设计方法侧重于优化,设计具有复杂材料分布的微结构零件。这些方法基于数学公式,其数值模型通过具有明确尺寸和几何形状的体积单元(体素)假设模型离散化。这些模型在预测零件行为方面的准确性受物体物理再现保真度的影响。尽管材料喷射(MJ)工艺能够生产复杂零件,但通过实验确定生产具有微观细节的零件的最小尺寸和几何极限至关重要。这项工作旨在帮助设计师和工程师选择最合适的比例来生产由六面体网格(立方体)离散化的零件。本研究通过比较名义设计尺寸,评估了MJ设备在生产微观细节(立方体)时的尺寸和几何精度。对具有不同尺寸微观细节的样本测试(ST)进行了建模和生产。根据名义值和计算出的偏差对微观细节的尺寸和几何精度进行了量化。从所进行的测试中可以得出以下结论:(i)所有分析的微观细节中,超过90%的三维尺寸(xyz)高于名义尺寸;(ii)对于小于423μm的微观细节,它们呈现出扭曲的几何形状,而在212μm以下,打印失败。

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