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Assessment of physical disintegration characteristics of clay-bearing rocks: Disintegration index test and a new durability classification chart

机译:评估粘土岩石的物理崩解特性:崩解指数试验和新的耐久性分类表

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Clay-bearing rocks cover large areas on the earth surface and are highly sensitive to changes in their water content. It is well known that strength and deformability properties of these rocks also deteriorate due to wetting and drying processes, causing numerous engineering problems. Due to the importance of disintegration of the clay-bearing rocks in geo-engineering practice, several simple test methods and classification systems have been proposed to assess durability The slake durability index test is one of the most widely used of these tests. However, due to mechanical breaks occurring during the test, immersion of samples in water for only 10 min and the assumption that fragments larger than 2 mm are durable, the slake durability test has some limitations. In addition, the field behaviour of clay-bearing rocks and the associated disintegration have not been fully considered in previous studies. In this study, a comprehensive research program was conducted on different clay-bearing rocks selected from Turkey to assess their disintegration characteristics under both field and laboratory conditions. Based on field and laboratory investigations, new approaches and a durability classification system are recommended to assess disintegration characteristics of day-bearing rocks. The disintegration index test suggested in this study can minimize some of the limitations of the slake durability test. The comparison between the disintegration index values of the laboratory specimens and those of the samples from the same outcrops exposed to atmospheric conditions for 1 year showed close agreement. Based on these observations, a durability classification system consisting of six classes is suggested. The proposed classification system uses a new parameter called slake durability rating to determine the degree of disintegration of any clay-bearing rock. In addition, general information related to physical and mechanical properties of any class can be obtained from the explanation part of each class. This system may be useful to practitioners for identifying the type and degree of disintegration that may occur on a freshly exposed rock face.
机译:含粘土的岩石覆盖了地球表面的大部分区域,并且对其含水量的变化高度敏感。众所周知,这些岩石的强度和可变形性也由于润湿和干燥过程而劣化,从而引起许多工程问题。由于在地球工程实践中分解粘土的重要性,因此提出了几种简单的测试方法和分类系统来评估耐久性。耐久指数测试是这些测试中使用最广泛的方法之一。但是,由于在测试过程中会发生机械断裂,将样品浸入水中仅10分钟,并且假设大于2毫米的碎片是耐用的,所以耐久试验有一定的局限性。此外,在先前的研究中还没有充分考虑到粘土岩石的现场行为和相关的崩解。在这项研究中,对选自土耳其的不同含粘土岩石进行了综合研究,以评估其在野外和实验室条件下的崩解特性。在野外和实验室调查的基础上,建议采用新方法和耐久性分类系统来评估含日岩石的崩解特性。这项研究中建议的崩解指数测试可以最大程度地减少耐久试验的局限性。实验室标本的崩解指数值与暴露于大气中一年的同一露头的标本的崩解指数值之间的比较显示出密切的一致性。基于这些观察结果,建议由六个类别组成的耐久性分类系统。拟议的分类系统使用称为“耐久等级”的新参数来确定任何含粘土岩石的崩解程度。另外,可以从每个类别的解释部分获得与任何类别的物理和机械特性有关的一般信息。该系统对于从业者可能有用的是识别可能在新暴露的岩石表面上发生的崩解的类型和程度。

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