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Strain localization in unsaturated elastic-plastic materials subjected to plane strain compression

机译:平面应变压缩下非饱和弹塑性材料的应变局部化

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摘要

Analytical solutions have been derived for the onset of strain localization in a broad class of unsaturated elastic-plastic porous materials based on Bishop’s definition of effective stress. Critical hardening moduli for constant water content and drained loadings were found to be further gradual simplifications of the critical hardening modulus for an undrained loading. In addition, the solutions were found to reduce to the previously found solutions for fully saturated and monophasic porous materials by adequately adjusting bulk moduli of the pore fluids. This finding demonstrates that the mechanics of fully saturated and monophasic soils is the special simpler case of the mechanics of unsaturated soils. A diagnostic tool for detection of the inception of strain localization was developed by implementing the aforementioned solutions into a constitutive driver for a bounding surface plasticity model. The tool was used to further illustrate the strain localization behavior of unsaturated Bourke silt from the Bourke region of New South Wales, Australia, subjected to undrained, constant water content and drained loadings.
机译:根据Bishop对有效应力的定义,已经得出了用于解决一类不饱和弹塑性多孔材料中应变局部化的解析方法。对于恒定的水分含量和排水负荷,临界硬化模量被发现是对于不排水负荷的临界硬化模量的进一步简化。另外,通过适当调节孔隙流体的体积模量,发现该溶液可以还原为先前发现的完全饱和和单相多孔材料的溶液。这一发现表明,完全饱和和单相土的力学是非饱和土力学的更简单特殊情况。通过将上述解决方案实施到用于边界表面可塑性模型的本构驱动器中,开发了用于检测应变局部化开始的诊断工具。该工具用于进一步说明来自澳大利亚新南威尔士州伯克地区的不饱和伯克粉砂在不排水,恒定水含量和排水载荷下的应变局部化行为。

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