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Creep failure of sands exhibiting various viscosity types and its simulation

机译:表现出不同粘度类型的砂蠕变破坏及其模拟

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The creep failure behaviour of three reconstituted sands exhibiting various viscous property types was evaluated by large-, medium- and small-scale drained triaxial, and medium-scale drained unconfined compression tests. The creep characteristics were evaluated by performing sustained loading during otherwise monotonic loading at a constant loading rate. Creep failure and Isotach viscous stress strain behaviour were observed with well-graded Miho sand compacted heavily under the optimum water content condition. Creep failure of saturated and air-dried Toyoura sand exhibiting TESRA viscosity was observed at the nearly peak stress state. Degradation of the shear modulus of Toyoura sand during creep failure process was measured by the dynamic method. Creep failure did not occur with air-dried Albany silica sand exhibiting P&N viscosity. It was experimentally shown that the stability against creep failure was higher in order of P&N, TESRA and Isotach viscosities. The creep behaviour of various viscous property types was well simulated by the non-linear three-component model taking into account the effects of particle characteristics on the viscous property parameters. (C) 2015 The Japanese Geotechnical Society. Production and hosting by Elsevier B.V. All rights reserved.
机译:通过大,中,小规模排水的三轴和中规模排水的无限制压缩试验评估了三种表现出不同粘性性质的再生砂的蠕变破坏行为。蠕变特性通过在恒定载荷速率下进行单调载荷期间的持续载荷进行评估。在最佳含水量条件下,用密实度良好的分级Miho砂土观察到蠕变破坏和Isotach粘性应力应变行为。在接近峰值应力状态下,观察到表现出TESRA粘度的饱和和风干的丰谷砂的蠕变破坏。用动力学方法测量了our谷砂在蠕变破坏过程中的剪切模量下降。风干的奥尔巴尼硅砂具有P&N粘度,不会发生蠕变破坏。实验表明,抗蠕变破坏的稳定性按P&N,TESRA和Isotach粘度的顺序较高。考虑到颗粒特性对粘性特性参数的影响,通过非线性三组分模型很好地模拟了各种粘性特性的蠕变行为。 (C)2015年日本岩土学会。 Elsevier B.V制作和托管。保留所有权利。

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