首页> 外文会议>Engineering Plasticity and Its Applications from Nanoscale to Macroscale pt.2; Key Engineering Materials; vol.340-341 >Prediction of Pressure and Density Dependent Failure in Sand-like Granular Materials under General Stress Conditions
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Prediction of Pressure and Density Dependent Failure in Sand-like Granular Materials under General Stress Conditions

机译:一般应力条件下砂状颗粒材料的压力和密度相关破坏的预测

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This paper presents a theoretical study of failure modes in sand-like granular materials under general triaxial stress conditions based on a hypoplastic model and a bifurcation analysis. The well developed constitutive model contains the void ratio as a state variable which allows the pressure and density dependent behaviour of the granular materials to be described with a single set of state-independent constitutive parameters. Based on this model a shear bifurcation condition is derived. Loading along various stress paths that can be achieved with a true triaxial test apparatus are simulated numerically. Either localized failure or uniform diffuse failure in granular samples may occur, which is determined based on whether the shear bifurcation condition is met. Effects of confining pressure and initial density are discussed.
机译:本文基于亚塑性模型和分叉分析,对一般三轴应力条件下砂状颗粒材料的破坏模式进行了理论研究。完善的本构模型包含空隙率作为状态变量,该变量允许使用一组独立于状态的本构参数来描述颗粒材料的压力和密度相关行为。基于该模型,得出了剪切分叉条件。数值模拟了使用真正的三轴测试设备可以实现的沿各种应力路径的载荷。颗粒状样品中可能发生局部破坏或均匀扩散破坏,这取决于是否满足剪切分叉条件。讨论了围压和初始密度的影响。

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