Stereolithography for manufacturing of advanced porous solids

Veronika Drechslerová, Michaela Neuhäuserová, Jan Falta, Jan Šleichrt, Daniel Kytýř
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引用次数: 1

Abstract

The aim of this paper is focused on benefits of stereolithography (SLA) technology for the fabrication of the lightweight lattice structures with potential for load-bearing function and high absorption of impact energy. SLA is an additive manufacturing technology employing the principle of liquid resins curing moderated by radiation of a wavelength from ultra-violet band where resulting material parameters are tunable by setting of the curing process. The batches of samples manufactured using three different resins were subjected to quasi-static uni-axial tensile and compression tests. Acquired data were processed to derive deformation behaviour expressed as stress-strain diagrams and fundamental material properties. Based on the knowledge obtained from the mechanical tests, the setup of the fabrication parameters, the most suitable resin for manufacturing of the lattice structures and the overall suitability of SLA technology for the fabrication of advanced porous materials, were determined.
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用于制造先进多孔固体的立体光刻技术
本文的目的是集中在立体光刻(SLA)技术的优点,以制造轻量级的晶格结构具有潜在的承载功能和高吸收的冲击能量。SLA是一种增材制造技术,采用液体树脂固化的原理,通过紫外线波段的波长辐射来调节,通过固化过程的设置可以调节所产生的材料参数。使用三种不同树脂制造的样品批次进行了准静态单轴拉伸和压缩试验。对获得的数据进行处理,得出以应力-应变图和基本材料特性表示的变形行为。基于从力学测试中获得的知识,确定了制造参数的设置,最适合制造晶格结构的树脂以及SLA技术制造先进多孔材料的总体适用性。
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