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Accumulated Plastic Strain Behavior of Granite Residual Soil under Cycle Loading

机译:循环载荷下花岗岩残余土壤累积塑性应变行为

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摘要

In this study, the accumulated plastic strain (APS) of granite residual soil under cyclic loads is investigated by a series of undrained cyclic triaxial tests. Granite residual soil is a special kind of soil that is widely distributed in areas of rapid economic development. Owing to a lack of understanding of the cyclic deformation of granite residual soil, the effects of several essential stress conditions, such as cyclic shear amplitude, initial static deviatoric stress, and effective consolidation stress, are explored and analyzed on the APS growth with loading cycles. The cyclic loads represent the typical traffic load acting on the foundations of subgrade works. Based on the results of tests under various stress conditions, a simple and easily adopted accumulated plastic strain growth (APSG) model is correlated to predict the evolution of APS with loading cycle number. Through comparing the results of separate tests, the APSG model is validated and exhibits its ability to predict the accumulated plastic behavior with satisfactory accuracy. Furthermore, the APS growth with a loading cycle is examined under various stress conditions by the APSG model. The influences of those important stress factors on the APS behavior can be successfully described by two often-used parameters in soil dynamics, that is, cyclic stress ratio and static deviatoric stress ratio, which are involved in the APSG model. As a result, the characteristics of plastic deformation of granite residual soil under cyclic loading conditions can be further analyzed by the new model. Although this model is easy to adopt with some accuracy, a more powerful model based on rigorous theory is still needs to be developed in the future. The finding of this study will provide a deeper insight into the cyclic loading behavior of granite residual soils that are often encountered in the subgrade of traffic engineering in China.
机译:在该研究中,通过一系列未涉及的环状三轴试验研究了环状载荷下花岗岩残留土的累积塑性菌株(APS)。花岗岩残留土是一种特殊的土壤,广泛分布在经济快速发展领域。由于缺乏对花岗岩残留土壤的循环变形的理解,探讨了几种基本应力条件,例如循环剪切振幅,初始静态偏离偏离应力和有效的固结应力的影响,并分析了随装载周期的APS生长。循环负载代表了基于路基作品基础的典型交通负荷。基于各种应力条件下的测试结果,相关且易于采用的累积塑性菌株生长(APSG)模型是相关的,以预测加载循环数的AP的演变。通过比较单独测试的结果,验证了APSG模型,并表现出具有令人满意的精度的累积塑性行为的能力。此外,通过APSG模型在各种应力​​条件下检查具有加载周期的APS生长。这些重要应力因素对APS行为的影响可以通过两种通常使用的土壤动力学中的两个经常使用的参数来成功描述,即涉及APSG模型的循环应力比和静态偏离引应力比。结果,通过新模型进一步分析了环状负载条件下花岗岩残留土的塑性变形特性。虽然这种型号易于采用了一些准确性,但未来仍需要发展基于严格理论的更强大的模型。该研究的发现将深入了解花岗岩残余土壤的循环加载行为,这些土壤经常在中国交通工程路基中常常遇到的。

著录项

  • 来源
    《International journal of geomechanics》 |2020年第11期|04020205.1-04020205.12|共12页
  • 作者单位

    State Key Laboratory of Coastal and Offshore Engineering Dalian Univ. of Technology Dalian Liaoning 116023 China;

    State Key Laboratory of Coastal and Offshore Engineering Dalian Univ. of Technology Dalian Liaoning 116023 China;

    School of Civil Engineering and Architecture Zhongyuan Univ. Zhengzhou Henan 450007 China;

    State Key Laboratory of Geomechanics and Geotechnical Engineering Institute of Rock and Soil Mechanics Chinese Academy of Sciences Wuhan 430071 China Univ. of Chinese Academy of Sciences Beijing 100049 China;

    State Key Laboratory of Geomechanics and Geotechnical Engineering Institute of Rock and Soil Mechanics Chinese Academy of Sciences Wuhan 430071 China Univ. of Chinese Academy of Sciences Beijing 100049 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Granite residual soil; Cyclic load; Accumulated plastic strain; Initial static deviatoric stress; Cyclic shear amplitude; Cyclic stress ratio;

    机译:花岗岩残余土壤;循环载荷;累积塑性应变;初始静态偏离应力;循环剪切幅度;循环应力比;

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