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Effect of fiber shape and morphology on interfacial bond and cracking behaviors of sisal fiber cement based composites

机译:纤维形状和形态对剑麻纤维水泥基复合材料界面结合和开裂行为的影响

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An experimental investigation was performed to understand the pull-out behavior of sisal fibers from a cement matrix. The effect of curing age and fiber embedment length on the fiber-matrix interface was studied. Sisal fiber presents irregular cross-section with different shapes that may be beneficial for the bond strength. A scanning electron microscope coupled with image analysis was used to measure the cross-section area of individual tested fibers and to determine and classify their morphology. The results were correlated to the fiber morphology. Direct tension tests were performed on composites reinforced by 10% in volume of continuous aligned sisal fiber. A finite difference model developed earlier by authors was used to determine the bond strength versus slip constitutive relation from experimental data and to predict the composite tensile behavior and crack spacing. It was found that the sisal fiber morphology plays an important role in the bond strength. Average adhesional bond strength as high as 0.92 MPa were reported for the fiber shape that promoted the best interfacial performance.
机译:进行实验研究以了解剑麻纤维从水泥基体中的拔出行为。研究了固化时间和纤维包埋长度对纤维-基质界面的影响。剑麻纤维呈现出不规则的横截面,具有不同的形状,可能有利于粘合强度。扫描电子显微镜与图像分析相结合,用于测量单个测试纤维的横截面积,并确定其形态并对其进行分类。结果与纤维形态相关。直接张力测试是对复合材料制成的,该复合材料以连续对齐的剑麻纤维的体积增加了10%。作者先前开发的有限差分模型用于根据实验数据确定粘结强度与滑移本构关系,并预测复合材料的拉伸行为和裂纹间距。发现剑麻纤维的形态在粘合强度中起着重要的作用。据报道,促进最佳界面性能的纤维形状的平均粘合强度高达0.92 MPa。

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