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Soil-geotextile interface friction by direct shear tests

机译:土-土工织物界面摩擦的直接剪切试验

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摘要

This paper describes large-size direct shear tests on soil-geotextile interfaces. Medium-grained, uniform sand and three varieties of woven and nonwoven geotextiles manufactured with different techniques are utilized to investigate the soil-geotextile interface friction coefficient (f*). Tests were carried out using an apparatus specifically designed for interface testing, and results were compared with those obtained from the conventional direct shear equipment. The results obtained from this study indicated that the determination of peak interface behaviour was not a trivial matter, as the results were significantly affected by the boundary and testing conditions of the testing apparatus. The residual interface behaviour was investigated by multiple reversal direct shear tests. Since the use of multiple reversal direct shear tests on the proposed apparatus can impose a high degree of shear displacement and stress uniformity on the soil-geotextile interface, a more reliable definition of the residual interface friction can be obtained. The results indicate that woven-nonwoven geotextile interfaces exhibit a significant postpeak strength loss after a number of shear cycles. In the case of woven geotextiles, this is attributed to the opening up of the filaments associated with the physical damage caused during shear, whereas for nonwoven geotextiles it is due to the pulling out or tearing of filaments. [References: 12]
机译:本文描述了土-土工织物界面的大型直接剪切试验。利用中粒,均匀砂和三种用不同技术制造的机织和非织造土工布研究土壤-土工布界面摩擦系数(f *)。使用专门为界面测试设计的设备进行测试,并将结果与​​从常规直接剪切设备获得的结果进行比较。从这项研究中获得的结果表明,确定峰界面行为并不是一件容易的事,因为结果受测试设备的边界和测试条件的影响很大。通过多次反向直接剪切试验研究了残余界面行为。由于在所提出的装置上使用多次反向直接剪切试验可以在土壤-土工织物界面上施加较高的剪切位移和应力均匀性,因此可以得到更可靠的残余界面摩擦力定义。结果表明,机织-非织造土工织物界面在许多剪切循环后均表现出明显的峰后强度损失。在编织土工布的情况下,这归因于与剪切期间引起的物理损坏相关的细丝的张开,而对于非织造土工布则是由于细丝的拉出或撕裂。 [参考:12]

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