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Investigation on the interfacial mechanical behavior of wave-shaped fiber reinforced soil by pullout test

机译:波浪形纤维加筋土界面力学行为的拉拔试验研究

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Fiber reinforcement benefit is dominated by the interfacial mechanical behavior between fiber surface and soil matrix. In this study, a new wave-shaped fiber (WF) was proposed as an alternative reinforcement to improve the interfacial mechanical interactions. In order to quantify the interfacial shear strength, a single fiber pullout test device was developed and a series of single fiber pullout tests were carried out on both conventional straight fiber (SF) and WF reinforced soil. Moreover, the effects of compact water content and dry density on the interfacial shear strength were investigated. It is found that the pullout response significantly depends on the morphology of fibers. The pullout curves of SF show typical mono-peak pattern, while those of WF show typical multi-peaks pattern. The maximum interfacial shear strength of WF reinforced soil is much higher than that of SF reinforced soil, indicating that the WF can better enhance the interfacial mechanical interactions and fiber reinforcement benefit. With increasing pullout displacement, the interfacial shear strength at each peak decreases exponentially. The interfacial shear strength of WF reinforced soil significantly depends on compact conditions. It increases linearly with decreasing water content, while exponentially with increasing dry density. (C) 2016 Elsevier Ltd. All rights reserved.
机译:纤维增强的好处主要是由纤维表面和土壤基质之间的界面力学行为决定的。在这项研究中,提出了一种新型的波形纤维(WF)作为替代增强材料,以改善界面机械相互作用。为了量化界面剪切强度,开发了单纤维拉拔测试设备,并且在常规的直纤维(SF)和WF增强的土壤上进行了一系列的单纤维拉拔测试。此外,研究了致密水含量和干密度对界面剪切强度的影响。发现拔出响应显着取决于纤维的形态。 SF的拔出曲线显示典型的单峰模式,而WF的拔出曲线显示典型的多峰模式。 WF增强土的最大界面剪切强度远高于SF增强土,这表明WF可以更好地增强界面机械相互作用,增强纤维。随着拔出位移的增加,每个峰值处的界面剪切强度呈指数下降。 WF加筋土的界面剪切强度在很大程度上取决于致密条件。随着含水量的减少,它线性增加,而随着干密度的增加,它呈指数增长。 (C)2016 Elsevier Ltd.保留所有权利。

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