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首页> 外文期刊>Advances in materials science and engineering >Investigation on the Nonlinear Strength Properties and Damage Statistical Constitutive Model for Frozen Sandy Soils
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Investigation on the Nonlinear Strength Properties and Damage Statistical Constitutive Model for Frozen Sandy Soils

机译:冻土的非线性强度特性及损伤统计本构模型研究

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There are many flaws, such as fissures, cavities, and inclusions, in geomaterials, which make their mechanical properties with great randomness and uncertainty. Upon loading, the soil structure gradually losses the bearing capacity due to the transformation from microdefects to macroscopic breakage bands. Based upon the experimental data of frozen sandy soils, a new nonlinear strength equation between the first and third principal stresses was proposed, and then the nonlinear strength properties for frozen sandy soils in σ-τ plane were analyzed. In addition, by assuming that the microstrength of frozen sandy soil obeys the Weibull distribution function, a statistical damage constitutive model was established based upon the framework of continuum damage mechanics (CDM), with few parameters and a high accuracy. Compared with experimental data, the new model can well grasp the nonlinear strength properties and simulate the stress-strain relationships under different confining pressures for frozen sandy soils.
机译:岩土材料中存在许多缺陷,例如裂缝,空洞和夹杂物,使它们的机械性能具有很大的随机性和不确定性。加载后,由于从微观缺陷向宏观断裂带的转变,土壤结构逐渐失去了承载力。根据冻土的试验数据,建立了第一和第三主应力​​之间的非线性强度方程,然后分析了σ-τ平面上冻土的非线性强度特性。此外,通过假设冻沙土的微强度服从威布尔分布函数,基于连续损伤力学(CDM)的框架,建立了统计损伤本构模型,参数少,精度高。与实验数据相比,该新模型能够很好地掌握非线性强度特性,并能模拟不同约束压力下冻砂土的应力-应变关系。

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