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Reinforced photocurable materials for an Additive Manufacturing process based on Mask Image Projection

机译:基于掩模图像投影的增强光固化材料

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Mask Image Projection based on Stereolithography (MIP-SL) is an Additive Manufacturing (AM) system which it is based on a Frontal Photopolymerization Process (FPP) to manufacture parts made of photocurable materials. In this paper, a FPP numerical model is used to analyse the printability of different reinforced photocurable materials for MIP-SL manufacturing process. Consequently, optimal printing parameters could be defined to increase the material photoconversion ratio. Two different reinforcements are used to analyse the influence of fillers on FPP material coefficients. The results show the use of reinforcement could significantly enhance the mechanical properties obtained by means of experimental compression tests.
机译:基于立体光刻(MIP-S1)的掩模图像投影是一种添加剂制造(AM)系统,其基于前方光聚合过程(FPP),以制造由可光固化材料制成的部件。本文采用FPP数值模型来分析MIP-SL制造工艺的不同增强光固化材料的可印刷性。因此,可以定义最佳打印参数以增加材料光电转换比。两种不同的增强材料用于分析填料对FPP材料系数的影响。结果表明,使用增强件可以显着提高通过实验压缩测试获得的机械性能。

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