Evaluation and Analysis of Elastic and Mechanical Characteristics of Hybrid Composite Incorporating Banana Fiber, Kenaf Fiber, and Nano-CaCO3

IF 2.6 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES
Tanvi Saxena, V. K. Chawla
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引用次数: 0

Abstract

The use of nano-fillers as reinforcement in natural fibers-based hybrid composites has gained prominence in multiple sectors in recent years because of their virtuous mechanical and physical characteristics. The impeccable properties of nano-fillers like their high aspect ratio and larger surface area have made them to be used in areas for instance, sectors like aviation, automotive, and biotechnology fields. This study focuses on examining how various weight percentages of nano-calcium carbonate (NCaCO3) fillers (2%, 5%, 7%) impact the elastic properties of innovative hybrid composites blended with banana and kenaf fibers, combined with epoxy. The elastic characteristics of the suggested composite, including longitudinal elastic modulus (LEM), transverse elastic modulus (TEM), longitudinal Poisson’s ratio (LPR), and longitudinal shear modulus (LSM), are analyzed through micromechanical models such as the Mori–Tanaka (M–TA) model, generalized self-consistent (GS-C) model, and modified Halpin–Tsai (M-HT) model. The composite consisting of a solitary banana fiber sheet, a solitary NCaCO3 mix epoxy sheet, and another solitary kenaf fiber sheet is modeled in ANSYS APDL simulation software. The composite’s layers are organized in a specific order: starting with banana fiber at 90° orientations, followed by a layer of NCaCO3 and epoxy at 0° orientations, and concluding with kenaf fiber at 90° orientations. The ANSYS software is employed to analyze the total sum deformation and strength of the suggested composite. The outcomes obtained from this research are contrasted and confirmed through comparison with existing literature. The inclusion of 7 wt% of NCaCO3 in the suggested hybrid composite is found to have the highest elasticity and ductility in comparison with 2 wt% and 5 wt% of NCaCO3. The composite containing 7 wt% NCaCO3 demonstrates the greatest load-bearing capability. Additionally, while calculating the elastic characteristics of the proposed composite, both the modified Halpin–Tsai (M-HT) model and the generalized self-consistent model (GS-C) outperform the Mori–Tanaka model (M–TA). Furthermore, the hybrid impact is computed for the suggested composite to analyze the tensile strain rates at which failure occurs for banana and kenaf fibers within the composite hybrid structure. The computed hybrid value of 0.5 indicates that the failure rate of a non-hybridized composite is 50% more than the hybridized composite. This signifies that the hybrid composites have high load-bearing strength, high elasticity, and stiffness.

评估和分析含有香蕉纤维、Kenaf 纤维和纳米 CaCO3 的混合复合材料的弹性和机械特性
近年来,纳米填料因其良好的机械和物理特性,在以天然纤维为基础的混合复合材料中被用作增强材料,并在多个领域得到了广泛应用。纳米填料具有高纵横比和较大的表面积等无可挑剔的特性,因此被广泛应用于航空、汽车和生物技术等领域。本研究重点考察了不同重量百分比的纳米碳酸钙(NCaCO3)填料(2%、5%、7%)对香蕉纤维和槿麻纤维与环氧树脂混合的创新型混合复合材料弹性特性的影响。所建议的复合材料的弹性特性,包括纵向弹性模量(LEM)、横向弹性模量(TEM)、纵向泊松比(LPR)和纵向剪切模量(LSM),通过森-田中(M-TA)模型、广义自洽(GS-C)模型和改进的哈尔平-蔡(M-HT)模型等微观力学模型进行了分析。ANSYS APDL 仿真软件模拟了由单独的香蕉纤维片、单独的 NCaCO3 混合环氧树脂片和另一片单独的 kenaf 纤维片组成的复合材料。复合材料的层按特定顺序排列:首先是取向为 90° 的香蕉纤维层,然后是取向为 0° 的 NCaCO3 和环氧树脂层,最后是取向为 90° 的 kenaf 纤维层。ANSYS 软件用于分析建议复合材料的总变形和强度。研究结果与现有文献进行了对比和确认。与 2 wt% 和 5 wt% 的 NCaCO3 相比,在建议的混合复合材料中加入 7 wt% 的 NCaCO3 具有最高的弹性和延展性。含有 7 wt% NCaCO3 的复合材料具有最强的承载能力。此外,在计算拟议复合材料的弹性特性时,改进的 Halpin-Tsai 模型(M-HT)和广义自洽模型(GS-C)都优于 Mori-Tanaka 模型(M-TA)。此外,还计算了建议复合材料的混合冲击力,以分析复合材料混合结构中香蕉纤维和剑麻纤维发生破坏时的拉伸应变率。计算得出的混合值为 0.5,表明非混合复合材料的破坏率比混合复合材料高 50%。这表明混合复合材料具有高承载强度、高弹性和高刚度。
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来源期刊
Arabian Journal for Science and Engineering
Arabian Journal for Science and Engineering MULTIDISCIPLINARY SCIENCES-
CiteScore
5.70
自引率
3.40%
发文量
993
期刊介绍: King Fahd University of Petroleum & Minerals (KFUPM) partnered with Springer to publish the Arabian Journal for Science and Engineering (AJSE). AJSE, which has been published by KFUPM since 1975, is a recognized national, regional and international journal that provides a great opportunity for the dissemination of research advances from the Kingdom of Saudi Arabia, MENA and the world.
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