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Investigation of a Magnetic Field-Assisted Digital-Light-Processing Stereolithography for Functionally Graded Materials

机译:用于功能分级材料的磁场辅助数字光处理立体光刻的研究

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Stereolithography (SLA) is one of the most efficient additive manufacturing (AM) methods in terms of dimensional resolution and accuracy. The use of multiple or functionally graded materials in this process can broaden the design space for applications such as sensors and biomedical implants. However, it is still challenging to fabricate such materials using SLA. In this study, we propose a method for fabrication of functionally graded materials with embedded magnetic particles using digital-light-processing SLA in a single step. Magnetite (Fe_3O_4) particles with an approximate diameter of 300 nm were mixed with a diluted photocurable resin, and used in fabrication of the samples. A digital-light-processing SLA printer was modified to allow integration of a magnet holder above the print bed. Magnet holders with three different configurations of magnets were built and used to fabricate parts with controlled distribution of magnetic particles. Several parts have been printed and characterized by evaluating the concentration of ferromagnetic particles in different regions based on image analysis. The results of this study show that field assisted digital-light-processing SLA can be used to fabricate functionally graded materials with embedded magnetite particles. The resulting concentration of the particles depends on the strength and surface area of the magnets, and the distance between the magnets and the print bed. Experimental results are also used to verify a Finite Element model, which is developed to understand the effect of magnet location on particle concentration. The feasibility of the proposed process has been verified and this process can be used in additive manufacturing of magnetic field-responsive smart polymeric structures.
机译:立体刻度(SLA)是尺寸分辨率和准确性方面最有效的添加剂制造(AM)方法之一。在该过程中使用多种或功能渐变的材料可以扩大传感器和生物医学植入物的应用的设计空间。然而,使用SLA制造这些材料仍然挑战。在该研究中,我们提出了一种在单个步骤中使用数字光处理SLA制造具有嵌入的磁颗粒的功能渐进材料的方法。将近似直径为300nm的磁铁矿(Fe_3O_4)颗粒与稀释的光固化树脂混合,并用于制造样品。经过修改数字光处理SLA打印机,以允许在印刷床上方的集成。建造磁铁支架具有三种不同的磁铁配置,并用于制造具有受控磁性颗粒分布的部件。通过基于图像分析评估不同区域中的铁磁性颗粒的浓度来印刷并表征了几个部分。本研究的结果表明,现场辅助数字光处理SLA可用于制造具有嵌入的磁铁矿颗粒的功能渐进的材料。所得颗粒的浓度取决于磁体的强度和表面积,以及磁体和印刷床之间的距离。实验结果还用于验证有限元模型,该模型是为了了解磁体位置对颗粒浓度的影响。已经过验证了所提出的方法的可行性,该方法可用于磁场响应智能聚合物结构的加性制造。

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