SLA Resins Modification by Liquid Mixing with Ceramic Powders Aiming at Mechanical Property and Thermal Stability Enhancement for Rapid Tooling Applications

IF 3.3 Q2 ENGINEERING, MANUFACTURING
A. Karatza, P. Zouboulis, Iakovos Gavalas, D. Semitekolos, A. Kontiza, Melpo Karamitrou, E. Koumoulos, C. Charitidis
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引用次数: 1

Abstract

Stereolithography (SL) additive manufacturing process provides increased dimensional precision, smooth surface finish and printing resolution range in the order of magnitude of 100 μm, allowing to obtain intricate 3D geometries. The incorporation of ceramic-based inclusions within liquid resins enhances the thermal and mechanical properties of the final 3D printed component while improving the surface finishing of the final parts; in this way, it expands the range of process applications and reduces the post-processing steps. The proposed approach investigates the bulk modification of commercial SLA resins mixed with ceramic powders of Al2O3 (grain size 1–10 μm) and SiO2 (grain size 55–75 nm) aiming to improve 3D printed parts performance in terms of mechanical properties, dimensional stability and surface finishing compared with pure, unmodified resins. The produced materials were used for the development of inserts for injection moulding and were examined for their performance during the injection moulding process. The addition of particles in the nano- and micro-range is being employed to improve parts performance for rapid tooling applications whilst maintaining 3D printing accuracy, thermal and mechanical properties as well as achieving a smooth surface finishing compared with unmodified resins.
SLA树脂与陶瓷粉末混合改性旨在提高机械性能和热稳定性,用于快速模具应用
立体光刻(SL)增材制造工艺提供了更高的尺寸精度,光滑的表面光洁度和100 μm数量级的打印分辨率范围,允许获得复杂的3D几何形状。液体树脂中陶瓷内含物的掺入增强了最终3D打印部件的热学和机械性能,同时改善了最终部件的表面光洁度;通过这种方式,它扩展了过程应用的范围并减少了后处理步骤。该方法研究了Al2O3(晶粒尺寸为1-10 μm)和SiO2(晶粒尺寸为55-75 nm)陶瓷粉末混合的商用SLA树脂的整体改性,旨在提高3D打印零件的机械性能,尺寸稳定性和表面光洁度,与纯未改性树脂相比。所生产的材料用于开发注射成型的刀片,并在注射成型过程中对其性能进行了检查。在纳米和微米范围内添加颗粒被用于提高零件性能,用于快速模具应用,同时保持3D打印精度,热和机械性能,以及与未改性树脂相比实现光滑的表面精加工。
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
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