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ROLE OF ORGANIC CONTENT FOR THE GEOTECHNICAL BEHAVIOUR OF CLAYS

机译:岩土有机质含量的作用粘土的行为

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摘要

Organic matter in clays often controls their geotechnical behaviour because of its influence on the strength and strain properties in bulk. It is integrated in the clay particle matrix and serves as a weak ductile component to an extent that depends on the degree of decomposition, which is a function of the moisture conditions, temperature and microfauna. Nematodes and arthropods, bacteria and fungi feed on it and make the soil porous, allowing infiltration of air and water. In the final stage of decomposition, the rest product is humus. The function of organic constituents in clay depends on the atomic and molecular bonds within them and between them and the clay minerals. Under moderate deviatoric bulk stress conditions, strain occurs in the molecular scale involving slip when energy barriers, determined by the bond strength, are overcome. Shearing makes the slips accumulate and causes successive changes of the energy bond spectrum, implying that low-energy barriers are used while high-energy barriers become dominant. For low and moderate safety factors, this leads to a blueshift of the spectrum and to stiffening and brittleness. The mineral phase has a certain barrier spectrum, while the organics have their own, implying rapid overcoming of the lower-energy barriers. This results in large shear strain and higher strain rate and lower shear strength and 'quickness'. Organic clay undergoes creep strain that is similar to that of smectite clay and controls long-term settlement of buildings and the stability of natural and excavated slopes.
机译:有机物质在粘土通常控制他们岩土的行为,因为它的影响散装的强度和应变特性。在粘土颗粒矩阵和集成在某种程度上作为一个弱韧性组件这取决于程度的分解,这是一个函数的水分条件下,温度和微动物区系。节肢动物、细菌和真菌和饲料使土壤多孔,允许渗透空气和水。分解,其余产品腐殖质。粘土的有机成分取决于函数在原子和分子键和他们之间和粘土矿物。中等偏大部分压力条件下,应变发生在分子尺度涉及当能量壁垒,由债券力量,是克服。积累,导致连续变化的能源债券,这意味着低能而使用高能壁垒的障碍成为主导。因素,这就导致的蓝移频谱和加劲和脆性。矿物相有一定的障碍,而有机物有他们自己的,这意味着迅速克服低能量的障碍。结果在大型剪切应变和更高的压力率和低抗剪强度和“速度”。有机粘土进行蠕变应变类似于蒙脱石粘土和控制长期解决建筑和自然和开挖边坡的稳定。

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