不同固化剂含量改良砂土力学特性数值模拟
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P642.5

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国家自然科学基金资助项目(41877212)


Numerical Simulation of Mechanical Properties of Sand Improved by Different Content of Curing Agent
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    摘要:

    对不同固化剂含量条件下的改良砂土进行室内无侧限单轴压缩试验,利用颗粒流数值模拟软件建立对应数值模型并进行数值模拟试验。通过研究不同固化剂含量下试样在不同加载阶段的微观破坏机理,发现固化剂的含量显著影响试样的抗压强度、抵抗变形能力以及试样破坏的宏观模式。随着固化剂含量的增加,试样的峰值强度、弹性模量均增大,而峰值应变减少。根据微观裂隙、接触力链及颗粒位移场的发育演化过程可以看出,随着固化剂含量增多,试样容易出现应力集中现象,发生局部破坏,破坏面由整体贯穿逐渐变为局部压碎破坏,破裂后力链弯曲程度由大逐渐变小,颗粒位移方向由紊乱分散逐渐均匀有序,试样的破坏模式由拉剪复合型破坏为主过渡到剪切破坏为主。

    Abstract:

    The unconfined uniaxial compression test of the improved sand under different curing agent contents was carried out in laboratory. The corresponding numerical model was established by using a particle flow numerical simulation software and the numerical simulation test was carried out. In this paper, the microscopic failure mechanism of specimens under different curing agent contents in different loading stages is studied, and it is found that the content of curing agent significantly affects the compressive strength, deformation resistance and macroscopic failure mode of specimens. With the increase of the curing agent content, the peak strength and the elastic modulus increase, while the peak strain decreases. According to the development of the micro cracks, the contact force chain and the particles displacement field evolution process, it can be seen that as the curing agent content increases, specimens are prone to exhibit stress concentration and local failure and gradually develop from the overall failure into local crushing damage. Meanwhile, the bending degree of force chain decreases gradually after fracture and the displacement direction by disorder gradually disperses evenly and orderly, while the failure mode of sample changes from shear failure to tension failure.

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郭伟超,祁长青,李青朋,甘飞飞.不同固化剂含量改良砂土力学特性数值模拟[J].河北工程大学自然版,2022,(4):49-55

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  • 收稿日期:2022-05-24
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  • 在线发布日期: 2022-12-29
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