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Interfacial Debonding Force and Shear Strength of Sugar Palm (Arenga Pinnata) Fiber Reinforced Composites by Pull-Out Test

机译:糖棕榈(Arenga Pinnata)纤维增强复合材料的界面剥离力和剪切强度

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An experimental investigation was performed to understand the pulling out behaviour of sugar palm (Arenga pinnata) fibers from unsaturated polyester (UP) composites. The effect of embedded length on the fiber-matrix interface was studied. Fibers were treated with UP and phenol formaldehyde (PF). Untreated fibers were used as the control. Single fiber pull-out tests were carried out for 360 specimens to determine the debonding force and interfacial shear strength (IFSS). Significant increase in debonding force of untreated fiber and UP-impregnated fiber was observed from embedded length of 2 mm to 3 mm. However, no significant increase was observed for the embedded length of more than 3 mm. Debonding force showed remarkable improvement with ascending order of untreated fibers, PF-impregnated fibers, and UP-impregnated fibers. The optimum embedded lengths of untreated fibers and UP fibers were determined. Additional finding showed that the interfacial shear strength decreased as the embedded length increased. However, UP-impregnated fibers showed the highest IFSS value, followed by PF fibers and untreated fibers. Analysis using Scanning Electron Microscope (SEM) was also included to justify the result.
机译:进行实验研究以了解来自不饱和聚酯(上)复合材料的糖棕榈(Arenga Pinnata)纤维的拉出行为。研究了嵌入的长度对光纤矩阵界面的影响。用UP和酚醛(PF)处理纤维。未经处理的纤维用作对照。单纤维拉出试验进行360个试样,以确定脱粘力和界面剪切强度(IFSS)。从嵌入的长度为2mm至3mm,观察未经处理的纤维和上浸渍纤维的剥离力的显着增加。然而,对于嵌入的长度超过3mm,没有观察到显着增加。剥离力呈显着改善,以未处理的纤维,PF浸渍纤维和上浸渍纤维的升序改善。确定了未处理的纤维和上纤维的最佳嵌入长度。另外的发现表明,随着嵌入的长度增加,界面剪切强度降低。然而,上浸渍的纤维显示出最高的IFSS值,然后是PF纤维和未处理的纤维。还包括使用扫描电子显微镜(SEM)的分析以证明结果。

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