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纤维增强环对连续纤维增强制造的玛瑙™-凯夫拉复合材料拉伸和弯曲性能影响的实验分析

Experimental Analysis of Fiber Reinforcement Rings' Effect on Tensile and Flexural Properties of Onyx™-Kevlar Composites Manufactured by Continuous Fiber Reinforcement.

作者信息

Moreno-Núñez Benjamín Alberto, Abarca-Vidal César Gustavo, Treviño-Quintanilla Cecilia D, Sánchez-Santana Ulises, Cuan-Urquizo Enrique, Uribe-Lam Esmeralda

机构信息

Tecnologico de Monterrey, School of Engineering and Sciences, Queretaro 76130, Mexico.

Tecnologico de Monterrey, Institute of Advanced Materials for Sustainable Manufacturing, Queretaro 76130, Mexico.

出版信息

Polymers (Basel). 2023 Mar 1;15(5):1252. doi: 10.3390/polym15051252.

Abstract

Additive manufacturing of composite materials is progressing in the world of 3D printing technologies; composite materials allow the combination of the physical and mechanical properties of two or more constituents to create a new material that meets the required properties of several applications. In this research, the impact of adding Kevlar reinforcement rings on the tensile and flexural properties of the Onyx™ (nylon with carbon fibers) matrix was analyzed. Parameters such as infill type, infill density and fiber volume percentage were controlled to determine the mechanical response in tensile and flexural tests of the additive manufactured composites. The tested composites showed an increment of four times the tensile modulus and 1.4 times the flexural modulus of pure Onyx™ matrix when compared with that of the Onyx™-Kevlar. The experimental measurements demonstrated that Kevlar reinforcement rings can increase the tensile and flexural modulus of Onyx™-Kevlar composites using low fiber volume percentages (lower than 19% in both samples) and 50% of rectangular infill density. However, the appearance of some defects, such as delamination, was observed and should be further analyzed to obtain products that are errorless and can be reliable for real functions as in automotive or aeronautical industries.

摘要

复合材料的增材制造在3D打印技术领域不断发展;复合材料能够将两种或更多成分的物理和机械性能结合起来,从而创造出一种满足多种应用所需性能的新材料。在本研究中,分析了添加凯夫拉增强环对玛瑙石™(含碳纤维的尼龙)基体拉伸性能和弯曲性能的影响。控制诸如填充类型、填充密度和纤维体积百分比等参数,以确定增材制造复合材料在拉伸和弯曲试验中的力学响应。与玛瑙石™-凯夫拉复合材料相比,测试的复合材料的拉伸模量提高了四倍,弯曲模量提高了1.4倍。实验测量表明,凯夫拉增强环可以使用低纤维体积百分比(两个样品中均低于19%)和50%的矩形填充密度来提高玛瑙石™-凯夫拉复合材料的拉伸模量和弯曲模量。然而,观察到出现了一些缺陷,如分层,应进一步分析以获得无误差且在汽车或航空工业等实际功能中可靠的产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/448e/10007063/ab7cca576d6b/polymers-15-01252-g001.jpg

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