首页> 外文会议>Stiff sedimentary clays : Genesis and engineering behavior. >A constitutive model for soft clayey rocks that includes weathering effects
【24h】

A constitutive model for soft clayey rocks that includes weathering effects

机译:包含风化作用的软黏土岩石本构模型

获取原文
获取原文并翻译 | 示例

摘要

Microstructural and mineralogical observations of clay-stones reveal the presence of clay aggregates bonded by a skeleton of inert minerals such as calcium carbonate. The behaviour of these natural materials evolves from a rock-like behaviour, when undisturbed, to clay-like soil when weathered or when subjected to straining. A model has been developed to simulate the constitutive behaviour of these transitional materials. Following the proposal made by Vaunat & Gens, the material is conceived as a composite medium made of a clay matrix and a quasi-brittle bonding microstructure. The basic model has been modified and extended to reproduce the expansive behaviour of the clay matrix, a fundamental aspect to simulate weathering effects, induced largely by drying-wetting cycles. The clay matrix reacts to stress and suction changes, whereas the bond component is not affected by suction changes. An elasto-plastic double-structure model for expansive clay soils describes the clay matrix. The bonding structure follows a damage model. The interaction between the two constitutive models derives from strain compatibility conditions and energy considerations. The model performance is first illustrated by means of a sensitive analysis that explores the effect of initial bond strength, bond damage rate, bonding concentration, and wetting-drying cycles. Simple stress paths (uniaxial deformation; triaxial compression) are used to highlight the features of the formulation and the role of significant parameters. Some published tests are also reproduced with the model. They have been selected to show some relevant features of evolving soft clay rocks: stiffness and strength degradation during loading and enhanced rebound during unloading, and the effect of drying-wetting cycles on subsequent stiffness and strength degradation.
机译:粘土石的微观结构和矿物学观察表明,粘土骨料的存在是由惰性矿物(如碳酸钙)的骨架粘结的。这些天然材料的行为从不受干扰的岩石状行为演变为在风化或受到拉力作用时变为黏土状土壤。已经开发出一种模型来模拟这些过渡材料的本构行为。根据Vaunat&Gens的建议,该材料被认为是由粘土基质和准脆性粘结微观结构组成的复合介质。已对基本模型进行了修改和扩展,以重现粘土基体的膨胀行为,这是模拟风化效果的基本方面,很大程度上是由干湿循环引起的。粘土基体对应力和吸力变化起反应,而粘结成分不受吸力变化的影响。膨胀粘土的弹塑性双结构模型描述了粘土基质。结合结构遵循损伤模型。两种本构模型之间的相互作用源于应变相容性条件和能量考虑。首先通过敏感性分析来说明模型的性能,该分析探讨了初始粘合强度,粘合损伤率,粘合浓度和干湿循环的影响。简单的应力路径(单轴变形;三轴压缩)用于突出配方的特征和重要参数的作用。该模型还复制了一些已发布的测试。选择它们是为了显示演化中的软粘土岩石的一些相关特征:加载过程中的刚度和强度降低,卸载过程中的回弹增强,以及干湿循环对后续刚度和强度降低的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号