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环氧树脂和生物基环氧树脂碳纤维斜纹复合材料:准静态性能比较

Epoxy and Bio-Based Epoxy Carbon Fiber Twill Composites: Comparison of the Quasi-Static Properties.

作者信息

Boursier Niutta Carlo, Ciardiello Raffaele, Tridello Andrea, Paolino Davide S

机构信息

Department of Mechanical and Aerospace Engineering, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Turin, Italy.

出版信息

Materials (Basel). 2023 Feb 14;16(4):1601. doi: 10.3390/ma16041601.

Abstract

In recent years, interest in sustainability has significantly increased in many industrial sectors. Sustainability can be achieved with both lightweight design and eco-friendly manufacturing processes. For example, concerns on the use of thermoset composite materials, with a lightweight design and a high specific strength, have arisen, since thermoset resins are not fully recyclable and are mainly petrol based. A possible solution to this issue is the replacement of the thermoset matrix with a recyclable or renewable matrix, such as bio-based resin. However, the mechanical properties of composites made with bio-based resin should be carefully experimentally assessed to guarantee a safe design and the structural integrity of the components. In this work, the quasi-static mechanical properties of composite specimens (eight layers of carbon fiber fabric) made with commercially available epoxy and a bio-based epoxy resins (31% bio content) are compared. Tensile tests on the investigated resins and tensile, compression, shear and flexural tests have been carried out on composite laminates manufactured with the two investigated resins. A finite element model has been calibrated in the LS-Dyna environment using the experimentally assessed mechanical properties. The experimental results have proven that the two composites showed similar quasi-static properties, proving that bio-based composite materials can be reliably employed as a substitute for epoxy resins without affecting the structural integrity of the component but lowering their carbon footprint.

摘要

近年来,许多工业部门对可持续性的关注度显著提高。通过轻量化设计和环保制造工艺都可以实现可持续性。例如,由于热固性树脂不能完全回收且主要基于石油,人们对使用具有轻量化设计和高比强度的热固性复合材料产生了担忧。解决这个问题的一个可能办法是用可回收或可再生的基体,如生物基树脂,来替代热固性基体。然而,用生物基树脂制成的复合材料的力学性能应通过实验仔细评估,以确保安全设计和部件的结构完整性。在这项工作中,对用市售环氧树脂和生物基环氧树脂(生物含量31%)制成的复合材料试样(八层碳纤维织物)的准静态力学性能进行了比较。对所研究的树脂进行了拉伸试验,并对用这两种所研究的树脂制造的复合材料层压板进行了拉伸、压缩、剪切和弯曲试验。在LS-Dyna环境中使用实验评估的力学性能校准了有限元模型。实验结果证明,这两种复合材料表现出相似的准静态性能,证明生物基复合材料可以可靠地用作环氧树脂的替代品,而不会影响部件的结构完整性,但会降低其碳足迹。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c4f/9960727/e59ac00ca509/materials-16-01601-g001.jpg

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