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Yielding and shear behaviour of cement-treated dredged materials

机译:水泥处理疏ged材料的屈服和剪切特性

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The mechanical behaviour of three cement-treated dredged materials (DM) was studied in the laboratory by isotropic compression and undrained triaxial tests. The intrinsic properties of the untreated and reconstituted soil were used as a reference framework to interpret the effect of cementation on the mechanical behaviour of the cement-treated DM. The isotropic compression line of the reconstituted soil is termed the intrinsic normal compression line (INCL). It is found that the isotropic compression lines of the cement-treated DM lie above the INCL, i.e. the void ratio of the cement-treated soil is higher than that of the reconstituted soil for a given confining pressure. The yield stress measured from the isotropic compression tests increases with increasing cement content and curing time. The pre-yield and post-yield shear responses of the cement-treated DM are different. Pre-yield soil specimens show a tendency to dilate, but post-yield soil specimens show a tendency to contract. Failure envelopes of the cement treated DM lie above that of the reconstituted DM. Linear Mohr-Coulomb failure envelopes were observed for the range of applied stress used in the study. The cohesion intercept increases with increasing cement content and curing time. The strength enhancement of the cement-treated DM is the result of the structures developed during cementation process. Based on a recently proposed soil water transfer model, the change in normalised bound water content, (DELTAm_(bw)_N. is used to evaluate the combined effects of cement content and curing period on the mechanical behaviour of the cement-treated DM. It is found that there exists a threshold value of (DELTAm_(bw)_N, beyond which the yield stress and cohesion intercept increases nonlinearly with increasing (DELTAm_(bw)_N. The threshold value is equal to 0.37 for the three DM used in the study.
机译:在实验室中,通过各向同性压缩和不排水三轴试验研究了三种水泥处理的疏materials材料(DM)的力学性能。未处理和重新配制的土壤的内在特性被用作参考框架,以解释胶结作用对水泥处理的DM力学性能的影响。重构土壤的各向同性压缩线称为固有法​​向压缩线(INCL)。已经发现,在给定的围压下,水泥处理的DM的各向同性压缩线位于INCL上方,即,水泥处理的土壤的空隙率高于再生土的空隙率。各向同性压缩试验测得的屈服应力随水泥含量和固化时间的增加而增加。水泥处理的DM的屈服前和屈服后剪切响应是不同的。屈服前的土壤样品显示出膨胀的趋势,但屈服后的土壤样品显示出收缩的趋势。水泥处理的DM的破坏包络线高于重建的DM的破坏包络线。在研究中使用的施加应力范围内观察到线性Mohr-Coulomb破坏包络线。内聚力拦截随着水泥含量和固化时间的增加而增加。水泥处理的DM的强度增强是在胶结过程中形成的结构的结果。在最近提出的土壤水分转移模型的基础上,使用归一化束缚水含量的变化(DELTAm_(bw)_N。)来评估水泥含量和固化时间对水泥处理的DM力学性能的综合影响。发现存在一个阈值(DELTAm_(bw)_N,超过该阈值时屈服应力和内聚力截距随(DELTAm_(bw)_N的增加而非线性增加。该阈值等于研究中使用的三个DM 。

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