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An Experimental Study of the Mechanics of Two Weakly Cemented Soils

机译:两种弱胶结土的力学特性试验研究

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The effects of a cementing agent on the mechanical behavior of a quartz sand and a natural silt were studied with drained triaxial tests. The cementing agent was a cement fly ash slurry, and the specimens so formed were weakly cemented. The higher stiffness of the cemented specimens can be explained by the presence of structure, but it may not be always valid to equate structure to the contribution of a cementing agent. Special zero effective confinement tests were conducted to directly measure the contribution of bonding between grains to the strength and stiffness of the two cemented soils. Test results unambiguously indicated the occurrence of progressive bond breakage prior to failure. At a stress state remote from failure, a cemented soil has lower dilatancy relative to the parent soil because of the presence of significant bonding. However, bond breakage occurring at higher shear stress led to a more dilatant soil fabric. The shear strength data followed a curved failure surface that merged back, at high stress, to that of the parent soil. This feature can be captured by a failure function that models the contribution of a cementing agent to strength as two parts, true bonding between soil grains and increase in dilatancy at failure. Both parts degrade with increasing effective confining pressure, but at different rates.
机译:通过排水三轴试验研究了胶结剂对石英砂和天然粉砂的力学性能的影响。胶结剂是水泥粉煤灰浆液,因此形成的样品被弱力胶结。固结试样的较高刚度可以通过结构的存在来解释,但是将结构等同于固结剂的作用可能并不总是有效的。进行了特殊的零有效约束试验,以直接测量颗粒之间的结合对两种胶结土的强度和刚度的贡献。测试结果明确表明在失效之前发生了渐进的键断裂。在远离破坏的应力状态下,由于存在明显的粘结,胶结土相对于母土具有较低的膨胀率。然而,在较高的剪切应力下发生的粘结断裂导致更膨胀的土壤织物。剪切强度数据遵循弯曲的破坏面,该破坏面在高应力下重新融合到母土的表面。该功能可以通过破坏函数来捕捉,该函数将胶凝剂对强度的贡献建模为两个部分,即土壤颗粒之间的真实结合和破坏时的剪胀增大。随着有效围压的增加,这两个部分都会降解,但是速率不同。

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