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3D打印混合与非混合复合材料力学性能的实验与数值研究

Experimental and Numerical Investigation of the Mechanical Properties of 3D-Printed Hybrid and Non-Hybrid Composites.

作者信息

Heitkamp Tim, Girnth Simon, Kuschmitz Sebastian, Waldt Nils, Klawitter Günter, Vietor Thomas

机构信息

Faculty II, Hochschule Hannover, University of Applied Sciences and Arts, 30459 Hannover, Germany.

Institute for Engineering Design, Technische Universität Braunschweig, 38108 Braunschweig, Germany.

出版信息

Polymers (Basel). 2023 Feb 25;15(5):1164. doi: 10.3390/polym15051164.

Abstract

Recent research efforts have highlighted the potential of hybrid composites in the context of additive manufacturing. The use of hybrid composites can lead to an enhanced adaptability of the mechanical properties to the specific loading case. Furthermore, the hybridization of multiple fiber materials can result in positive hybrid effects such as increased stiffness or strength. In contrast to the literature, where only the interply and intrayarn approach has been experimentally validated, this study presents a new intraply approach, which is experimentally and numerically investigated. Three different types of tensile specimens were tested. The non-hybrid tensile specimens were reinforced with contour-based fiber strands of carbon and glass. In addition, hybrid tensile specimens were manufactured using an intraply approach with alternating carbon and glass fiber strands in a layer plane. In addition to experimental testing, a finite element model was developed to better understand the failure modes of the hybrid and non-hybrid specimens. The failure was estimated using the Hashin and Tsai-Wu failure criteria. The specimens showed similar strengths but greatly different stiffnesses based on the experimental results. The hybrid specimens demonstrated a significant positive hybrid effect in terms of stiffness. Using FEA, the failure load and fracture locations of the specimens were determined with good accuracy. Microstructural investigations of the fracture surfaces showed notable evidence of delamination between the different fiber strands of the hybrid specimens. In addition to delamination, strong debonding was particularly evident in all specimen types.

摘要

最近的研究工作突出了混合复合材料在增材制造背景下的潜力。使用混合复合材料可使机械性能对特定载荷情况的适应性增强。此外,多种纤维材料的混合可产生积极的混合效应,如提高刚度或强度。与仅对层间和纱线内方法进行了实验验证的文献不同,本研究提出了一种新的层内方法,并对其进行了实验和数值研究。测试了三种不同类型的拉伸试样。非混合拉伸试样用基于轮廓的碳和玻璃纤维束增强。此外,混合拉伸试样采用层内方法制造,在层平面内交替排列碳和玻璃纤维束。除了实验测试外,还开发了有限元模型,以更好地理解混合和非混合试样的失效模式。使用Hashin和Tsai-Wu失效准则估计失效情况。根据实验结果,试样显示出相似的强度,但刚度差异很大。混合试样在刚度方面表现出显著的正混合效应。通过有限元分析,能够较为准确地确定试样的失效载荷和断裂位置。对断口表面的微观结构研究表明,混合试样不同纤维束之间存在明显的分层迹象。除分层外,所有试样类型中均特别明显地出现了强烈的脱粘现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a0c/10007513/89cae87232fd/polymers-15-01164-g001.jpg

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