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The effect of fiber morphology on the tensile strength of natural fibers

机译:纤维形态对天然纤维拉伸强度的影响

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In the present work the morphology of natural fibers was correlated with their mechanical properties via image analysis. Jute, sisal, curaua, coir and piassava fibers were tested under direct tension in a universal testing machine and the cross-sectional areas of the fibers were calculated using images obtained in a scanning electron microscopy. For the jute fiber the tests were performed for several gage lengths in order to investigate its influence on the tensile strength and to compute the machine compliance. For sisal, jute and curaua fibers the amount of fiber-cells, the size of the cell walls and the real area of the fibers were measured and their correlation with the tensile strength addressed. The curaua fiber presented the highest mechanical performance with tensile strength and Young's modulus of 543MPa and 63.7GPa, respectively. Weibull statistical analysis was used to quantify the variability of fiber strength. The sisal fibers presented the highest Weibull modulus (3.70), whereas the curaua presented the lowest one (m=2.2), which means that the sisal had the lowest variability and curaua the highest.
机译:在本工作中,通过图像分析将天然纤维的形态与其力学性能相关联。黄麻,剑麻,姜黄,椰壳纤维和Piassava纤维在万能试验机中直接拉伸下进行测试,并使用扫描电子显微镜获得的图像计算纤维的横截面积。对于黄麻纤维,对几种规格的长度进行了测试,以研究其对拉伸强度的影响并计算出机器的柔韧性。对于剑麻纤维,黄麻纤维和姜黄纤维,要测量其纤维孔的数量,孔壁的大小和纤维的实际面积,以及它们与拉伸强度的相关性。姜黄纤维具有最高的机械性能,拉伸强度和杨氏模量分别为543MPa和63.7GPa。使用威布尔统计分析来量化纤维强度的变异性。剑麻纤维表现出最高的威布尔模量(3.70),而姜黄纤维表现出最低的威布尔模量(m = 2.2),这意味着剑麻纤维的变异性最低,姜黄纤维的变异性最高。

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