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通过实验设计和人工神经网络混合方法实现的木槿植物纤维的化学特性分析。

Chemical characterization of hibiscus rosa-sinensis plant fibers facilitated through design of experiments and artificial neural network hybrid approach.

机构信息

Department of Mechanical and Industrial Engineering, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal, 576104, India.

Department of Chemistry, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal, 576104, India.

出版信息

Sci Rep. 2024 Sep 28;14(1):22510. doi: 10.1038/s41598-024-73503-8.

Abstract

The integration of natural fibers into Fiber Reinforced Polymers (FRPs) has emerged as a promising avenue for sustainable and high-performance composite materials. Natural fibers, derived from plants, offer notable advantages such as renewability, low cost, and environmental friendliness. Among these natural fibers, Hibiscus Rosa-Sinensis (HRS) plant fibers have gained significant attention owing to their widespread availability and unique mechanical properties. In this study, HRS fibers were chemically treated using Sodium Hydroxide (NaOH), Potassium Permanganate (KMnO), and Acetic Acid (CHCOOH) at different weight percentages (3, 4, 5 Wt.%) and solutionizing times (1, 2, 3 h) based on Taguchi's L orthogonal array. The fibers, extracted from epidermis of the stems, underwent cleaning and chemical treatment after water retting. The crystallinity index, determined via X-ray Diffraction (XRD), indicated a maximum value of 65.77%. Thermo-gravimetric analysis (TGA) exhibited a degradation temperature of 365.24 °C and a material loss of 63.11%. Potassium Permanganate treatment at 4 Wt.% and 3 h of solutionizing time has yielded the best results. Multi-Layer Perceptron Artificial Neural Network (MLP-ANN) has been successfully applied to accurately predict the output physical characteristics of chemically treated HRS fibers using experimental data. The results are in close alignment with the literature. Scanning Electron Microscopy (SEM) and Energy Dispersive X-ray Spectroscopy (EDS) analyses have provided valuable insights into the microstructure and constituents of the chemically treated HRS fibers. This research emphasises on the effectiveness of the chemical treatment process in enhancing the properties of HRS plant fibers for potential composite applications.

摘要

将天然纤维整合到纤维增强聚合物 (FRP) 中已成为可持续和高性能复合材料的有前途的途径。天然纤维源自植物,具有可再生、低成本和环保等显著优势。在这些天然纤维中,由于其广泛的可用性和独特的机械性能,Hibiscus Rosa-Sinensis (HRS) 植物纤维引起了人们的极大关注。在这项研究中,根据 Taguchi 的 L 正交数组,使用氢氧化钠 (NaOH)、高锰酸钾 (KMnO) 和乙酸 (CHCOOH) 以不同的重量百分比 (3、4、5wt.%) 和溶液化时间 (1、2、3h) 对 HRS 纤维进行化学处理。这些纤维是从茎的表皮中提取的,经过水沤处理后进行清洗和化学处理。通过 X 射线衍射 (XRD) 确定的结晶度指数达到了最大值 65.77%。热重分析 (TGA) 显示,降解温度为 365.24°C,材料损失为 63.11%。在 4wt.%的高锰酸钾处理和 3 小时的溶液化时间下,得到了最佳的结果。多层感知器人工神经网络 (MLP-ANN) 已成功应用于使用实验数据准确预测化学处理后的 HRS 纤维的输出物理特性。结果与文献非常吻合。扫描电子显微镜 (SEM) 和能谱 (EDS) 分析为化学处理后的 HRS 纤维的微观结构和成分提供了有价值的见解。这项研究强调了化学处理过程在增强 HRS 植物纤维性能以用于潜在复合材料应用方面的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/494f/11438967/dd90bc4cd5cd/41598_2024_73503_Fig1_HTML.jpg

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