利用增材制造技术进行人工血管模型 3D 打印过程的初步研究分析

Fakhril Husain, I. G. B. B. Dharma
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引用次数: 0

摘要

制造技术的发展非常迅速,尤其是在生产工艺生产过程中。其中之一就是增材制造技术的出现。立体光刻技术(SLA)就是增材制造技术的一种,它被应用于健康领域。增材制造技术的打印工艺成功与否有很多因素。其中一个重要因素是工艺参数,即构建方向。此外,后处理也是影响生产成功与否的因素之一。本研究通过观察 0°、45° 和 90°打印位置的影响,分析最佳生产工艺。这项研究通过打印产品进行实验。使用的材料是柔性材料 Anycubic Though Resin,并借助三维打印机 Anycubic Photon Monon。这三个位置产生的缺陷结果差别不大,在 0° 位置获得的结果最为理想。不过,必须考虑支撑设置,因为它们会影响产品的成功率以及树脂的用量。研究还发现,最佳的后处理方法是在不使用旋转机器和不使用固化的情况下进行树脂清洗。因为这会损坏产品并改变其机械性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preliminary Study Analysis of 3D Printing Process Of Artificial Vascular Models Using Additive Manufacturing
Manufacturing technology is developing very rapidly, especially in the production process production process. One of them is the emergence of additive manufacturing technology. One type of additive manufacturing is stereolithography (SLA) which is applied in the world of health. Many factors in the success of the print process of additive manufacturing technology. One of the important factors is the process parameter, namely build orientation. In addition, post processing is also an influential factor in production success. This research analyses the best production process by looking at the effect of print position at 0°, 45° and 90°. This research is applied to This research uses experiments by printing the product. printing the product. The material used is a flexible material, Anycubic Though Resin, with the help of a 3D printer, Anycubic Photon Monon. printer Anycubic Photon Mono X. The printing process uses the same parameters in the 0°, 45° and 90° positions. The three positions produce defective results that are not significantly different, with the most optimal results obtained at the 0° position. However, support settings must be considered because they affect the success of the product as well as the amount of resin used. The study also found that the best post processing is resin cleaning without the use of rotating machine and without the use of curing. This is because it will damage the the product and change the mechanical properties.
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