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轻质L.果实茎纤维的提取及其力学、物理化学性质测定与在复合材料中的应用潜力

Extraction of Lightweight L. Fruit's Stem Fiber and Determination of Its Mechanical and Physico-Chemical Properties and Potential of Its Use in Composites.

作者信息

Kaya Ali Ihsan

机构信息

Department of Mechanical Engineering, Engineering Faculty, Adıyaman University, 02040 Adıyaman, Turkey.

出版信息

Polymers (Basel). 2024 Feb 28;16(5):657. doi: 10.3390/polym16050657.

Abstract

Natural fibers extracted from plants are preferred as an alternative to synthetic products. The main reasons for this preference are their affordable cost, light weight and good mechanical properties. However, finding new natural raw materials is challenging due to growth limitations in different geographical areas. L. (Eastern plane tree) is a tree with abundant fruits that can grow in many regions of the world. The aim of this study was to determine the mechanical (tensile strength, tensile modulus, elongation), physical (density, fiber diameter) and chemical (cellulose, hemicellulose and lignin) properties of L. fruit's stem by fiber extraction from the stems of the tree. It was determined that the extracted fiber had good mechanical properties and cellulose content of 42.03%. As a result of thermogravimetric analysis, it was determined that the plane tree fruit's stem fiber had thermal resistance of up to 299 °C. The tensile strength value was 157.76 MPa, the tensile modulus value was 1.39 GPa and the elongation value was 22.01%. It was determined that it is suitable for use in fiber reinforcement in thermoplastic-based composites at temperatures below 299 °C. According to the results obtained by the mechanical, chemical and physical analysis of L. fruit's stem fiber (PoLfs), it could be recommended as a suitable alternative as a reinforcing fiber in thermoplastic and thermoset composites.

摘要

从植物中提取的天然纤维作为合成产品的替代品更受青睐。这种偏好的主要原因是其成本低廉、重量轻且机械性能良好。然而,由于不同地理区域的生长限制,寻找新的天然原材料具有挑战性。悬铃木(东方悬铃木)是一种果实丰富的树,能在世界许多地区生长。本研究的目的是通过从该树的茎中提取纤维来确定悬铃木果实茎的机械性能(拉伸强度、拉伸模量、伸长率)、物理性能(密度、纤维直径)和化学性能(纤维素、半纤维素和木质素)。结果表明,提取的纤维具有良好的机械性能,纤维素含量为42.03%。通过热重分析确定,悬铃木果实茎纤维的耐热性高达299℃。拉伸强度值为157.76MPa,拉伸模量值为1.39GPa,伸长率值为22.01%。确定其适用于299℃以下基于热塑性的复合材料中的纤维增强。根据对悬铃木果实茎纤维(PoLfs)进行机械、化学和物理分析所获得的结果,它可被推荐作为热塑性和热固性复合材料中增强纤维的合适替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87d2/10935309/fc0d9fed7825/polymers-16-00657-g001.jpg

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