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Experimental Investigation of the Rowe's Dilatancy Law on an Atypical Granular Medium from a Municipal Solid Waste Incineration Bottom Ash

机译:从城市固体废物焚烧底灰对非典型粒状培养基对秩序稀释法的实验研究

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Municipal Solid Waste Incineration (MSWI) bottom ashes are irregular granular media because of their origin and are very heterogeneous with a large quantity of angular particles of different chemical species. MSWI bottom ash is a renewable granular resource alternative to the use of non-renewable standard granular materials. Beneficial use of these alternative granular materials mainly lies in road engineering. However, the studies about mechanical properties of such granular media still remain little developed, those being mainly based on empirical considerations. In this paper, a study of mechanical behaviour of a MSWI bottom ash under axisymmetric triaxial loadings conditions is presented. Samples are initially dense after Proctor compaction, are saturated and tested in drained conditions, under different effective confining pressures ranging from 100 to 600 kPa. The evolutions of volumetric strains show an initial contracting phase followed by a dilatancy phase, more pronounced when the confining pressure is low. The stresses ratios at the characteristic state and at the critical state appear in good agreement and with a null rate of volume variation. The angles of internal friction and dilatancy of the studied MSWI bottom ash are estimated and are similar to conventional granular materials used especially in road engineering. The dilatancy law of Rowe is well experimentally verified on this irregular recycled granular material.
机译:城市固体废物焚烧(MSWI)底部是由于它们的起源而不是不规则的粒状介质,并且具有非常异质的不同化学物质的角度颗粒。 MSWI底灰是一种可再生粒度资源,适用于使用不可再生标准的粒状材料。有益使用这些替代粒状材料主要位于道路工程中。然而,关于这种粒状介质的机械性能的研究仍然仍然很少发展,主要基于经验考虑。本文介绍了轴对称三轴载荷条件下MSWI底灰的力学行为研究。在标准器压实后,样品最初是致密的,在排出的条件下饱和并在排出的条件下测试,在不同的有效限制压力范围为100至600kPa。体积菌株的演变显示出初始收缩相,随后是膨胀相,当限制压力低时更加明显。特征状态和临界状态下的应力比以良好的一致性和零体积变化率出现。估计研究的MSWI底灰的内部摩擦和膨胀的角度估计,并且类似于特别是在道路工程中使用的常规颗粒材料。 Rowe的膨胀定律在这种不规则的再循环颗粒材料上进行了实验验证。

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