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研究输入参数对尼龙12碳纤维3D打印多孔样品质量和可制造性的影响,并协同测试其弯曲性能。

Researching on the Effect of Input Parameters on the Quality and Manufacturability of 3D-Printed Cellular Samples from Nylon 12 CF in Synergy with Testing Their Behavior in Bending.

作者信息

Koroľ Martin, Török Jozef, Monka Peter Pavol, Baron Petr, Mrugalska Beata, Monkova Katarina

机构信息

Faculty of Manufacturing Technologies with a Seat in Presov, Technical University in Kosice, 080 01 Presov, Slovakia.

Faculty of Technology, Tomas Bata University in Zlin, Nam. T.G. Masaryka 275, 760 01 Zlin, Czech Republic.

出版信息

Polymers (Basel). 2024 May 17;16(10):1429. doi: 10.3390/polym16101429.

Abstract

The study of cellular structures and their properties represents big potential for their future applications in real practice. The article aims to study the effect of input parameters on the quality and manufacturability of cellular samples 3D-printed from Nylon 12 CF in synergy with testing their bending behavior. Three types of structures (Schwarz Diamond, Shoen Gyroid, and Schwarz Primitive) were selected for investigation that were made via the fused deposition modeling technique. As part of the research focused on the settings of input parameters in terms of the quality and manufacturability of the samples, input parameters such as volume fraction, temperature of the working space, filament feeding method and positioning of the sample on the printing pad were specified for the combination of the used material and 3D printer. During the experimental investigation of the bending properties of the samples, a three-point bending test was performed. The dependences of force on deflection were mathematically described and the amount of absorbed energy and ductility were evaluated. The results show that among the investigated structures, the Schwarz Diamond structure appears to be the most suitable for bending stress applications.

摘要

对细胞结构及其特性的研究为其未来在实际应用中的应用展现出巨大潜力。本文旨在研究输入参数对由尼龙12碳纤维3D打印的细胞样本的质量和可制造性的影响,并协同测试其弯曲行为。选择了三种结构(施瓦茨菱形、肖恩螺旋面和施瓦茨原始结构)进行研究,这些结构是通过熔融沉积建模技术制造的。作为针对样本质量和可制造性方面输入参数设置的研究的一部分,针对所使用的材料和3D打印机的组合,指定了诸如体积分数、工作空间温度、细丝进给方法以及样本在打印垫上的定位等输入参数。在对样本弯曲性能的实验研究过程中,进行了三点弯曲试验。对力与挠度的关系进行了数学描述,并评估了吸收能量和延展性的量。结果表明,在所研究的结构中,施瓦茨菱形结构似乎最适合用于弯曲应力应用。

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