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数字光处理制造的光聚合物部件的各向异性

Anisotropy of Photopolymer Parts Made by Digital Light Processing.

作者信息

Monzón Mario, Ortega Zaida, Hernández Alba, Paz Rubén, Ortega Fernando

机构信息

Departamento de Ingeniería Mecánica, Universidad de Las Palmas de Gran Canaria, Las Palmas de Gran Canaria 35017, Spain.

Departamento de Ingeniería de Procesos, Universidad de Las Palmas de Gran Canaria, Las Palmas de Gran Canaria 35017, Spain.

出版信息

Materials (Basel). 2017 Jan 13;10(1):64. doi: 10.3390/ma10010064.

Abstract

Digital light processing (DLP) is an accurate additive manufacturing (AM) technology suitable for producing micro-parts by photopolymerization. As most AM technologies, anisotropy of parts made by DLP is a key issue to deal with, taking into account that several operational factors modify this characteristic. Design for this technology and photopolymers becomes a challenge because the manufacturing process and post-processing strongly influence the mechanical properties of the part. This paper shows experimental work to demonstrate the particular behavior of parts made using DLP. Being different to any other AM technology, rules for design need to be adapted. Influence of build direction and post-curing process on final mechanical properties and anisotropy are reported and justified based on experimental data and theoretical simulation of bi-material parts formed by fully-cured resin and partially-cured resin. Three photopolymers were tested under different working conditions, concluding that post-curing can, in some cases, correct the anisotropy, mainly depending on the nature of photopolymer.

摘要

数字光处理(DLP)是一种精确的增材制造(AM)技术,适用于通过光聚合生产微零件。与大多数增材制造技术一样,考虑到几个操作因素会改变这一特性,DLP制造的零件的各向异性是一个需要解决的关键问题。由于制造过程和后处理对零件的机械性能有很大影响,因此针对该技术和光聚合物的设计成为一项挑战。本文展示了实验工作,以证明使用DLP制造的零件的特殊行为。与任何其他增材制造技术不同,设计规则需要调整。基于由完全固化树脂和部分固化树脂形成的双材料零件的实验数据和理论模拟,报告并论证了构建方向和后固化过程对最终机械性能和各向异性的影响。在不同的工作条件下对三种光聚合物进行了测试,得出的结论是,后固化在某些情况下可以校正各向异性,这主要取决于光聚合物的性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48c0/5344561/763aa4deb490/materials-10-00064-g001.jpg

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