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DEGRADATION OF COMPACTED MARLS: A MICROSTRUCTURAL INVESTIGATION

机译:压实大理石的降解:微观结构研究

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摘要

Embankments made with marl and other soft clayey rocks result in an agglomerated structure of finite size particles. These particles evolve however, resulting in major changes of the overall behaviour of the aggregate. The development of settlements and the loss of strength in time are the main concerns in practice. The mechanisms leading to the breakage and eventually the destructuration of one single rock particle are investigated using the concepts of unsaturated soil mechanics since wetting and drying cycles, controlled by atmospheric changes, result in strong suction changes and are one of the main reasons for rock degradation. Numerical simulations of the behaviour of individual rock fragments when wetted until full saturation were performed. Several contributing factors, namely suction change rate, initial suction and confinement were investigated. The knowledge learned with the simulation of the degradation of single rock fragments was extended to simulate the behaviour of particle arrangements under some representative stress and suction paths. Some results of suction controlled tests used for the calibration of the models are presented. The calculated behaviour of single particles and aggregates under wetting is discussed and qualitatively compared with experimental observations of the individual rock fragments and the compacted material. The results obtained provide a new insight into the nature of degradation induced by wetting and drying. They provide also a mechanical explanation, at the level of rock fragments, for the overall behaviour of aggregates.
机译:由泥灰岩和其他软质黏土岩石制成的路堤会形成有限尺寸颗粒的团聚结构。但是,这些颗粒会演化,从而导致骨料的整体行为发生重大变化。住区的发展和及时力量的丧失是实践中的主要问题。使用不饱和土壤力学的概念研究了导致单个岩石颗粒破裂并最终破坏的机制,因为受大气变化控制的润湿和干燥循环会导致强烈的吸力变化,并且是岩石降解的主要原因之一。进行了对单个岩石碎片润湿直至完全饱和的行为的数值模拟。研究了几个影响因素,即吸力变化率,初始吸力和限制。通过模拟单个岩石碎片的降解学到的知识得以扩展,以模拟在某些具有代表性的应力和吸力路径下颗粒排列的行为。介绍了用于模型校准的吸力控制测试的一些结果。对单个颗粒和聚集体在润湿下的计算行为进行了讨论,并与单个岩石碎片和压实材料的实验观察进行了定性比较。获得的结果为润湿和干燥引起的降解性质提供了新的见识。它们还在碎石的层面上提供了集料的整体行为的机械解释。

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