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首页> 外文期刊>Journal of land use science >Mechanical Properties of a Novel Fibre Metal Laminate Reinforced with the Carbon, Flax, and Sugar Palm Fibres
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Mechanical Properties of a Novel Fibre Metal Laminate Reinforced with the Carbon, Flax, and Sugar Palm Fibres

机译:用碳,亚麻和糖棕榈纤维强化新型纤维金属层压板的机械性能

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摘要

Concerns regarding the disposal, degradability, and recycling of synthetic fibres used in composite materials have highlighted the need for eco-friendly materials. This article focuses on fabrication and characterization of the fibre metal laminate (FML) reinforced with carbon, flax, and sugar palm fibres in order to reduce the environmental impact without compromising the strength requirements. Out of autoclave (OOA) manufacturing processes, including hand lay-up and hot compression molding, were employed to fabricate the FML. Tensile, compressive, interlaminar shear strength (ILSS), and fatigue properties of the fabricated FML were studied. The results indicate that tensile properties and compressive strength for flax based FML (CFC) was superior and 23% higher than CSC while 5% higher than the hybrid CFSSFC configuration. CFSSFC outperformed CFC and CSC in the inter-laminar shear strength by showing 6.5% and 25% increment in magnitude. In case of fatigue, CFC showed excellent fatigue resistance by withstanding high fatigue loads and lasted up to 10(4) cycles before failure. Delamination between the metal/composite plies was observed in fractured samples under all the mechanical loads.
机译:对复合材料中使用的合成纤维的处理,降解和再循环的担忧突出了环保材料的需求。本文侧重于用碳,亚麻和糖棕榈纤维增强的纤维金属层压板(FML)的制造和表征,以减少环境影响而不会影响强度要求。出于高压釜(OOA)制造工艺,包括手叠层和热压缩成型,用于制造FML。研究了张力,压缩,层间剪切强度(ILS),以及制造的FML的疲劳性能。结果表明,基于亚麻(CFC)的亚麻(CFC)的拉伸性能和抗压强度高于CSC,比CSC高出23%,而比杂交CFSSFC构型高5%。 CFSSFC在层间剪切强度中表现出6.5%和25%的幅度,优于层间剪切强度。在疲劳的情况下,CFC通过高疲劳载荷显示出优异的疲劳性,并且在发生故障之前持续最多10(4)个循环。在所有机械载荷下,在裂缝样品中观察金属/复合层之间的分层。

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