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Effect of Basalt Fiber Addition on Static-Dynamic Mechanical Behaviors and Microstructure of Stabilized Soil Compositing Cement and Fly Ash

机译:玄武岩纤维添加对静态机械行为的影响及稳定土复合水泥和粉煤灰的微观结构

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The purpose of this article is to evaluate the influence of basalt fiber content on the static-dynamic mechanical properties and microstructure of cement-fly ash-stabilized soil. The optimum mixed contents of cement and fly ash were obtained from the results of a series of physical and mechanical experiments. Based on the optimum mixed contents of cement and fly ash, the static-dynamic mechanical performances and microstructure of cement-fly ash-stabilized soil reinforced with basalt fiber were studied by means of the unconfined compression test, dynamic compression test (namely, SHPB test), and SEM test. The results demonstrated that the addition of basalt fiber in cement-fly ash-stabilized soil significantly enhanced the static-dynamic mechanical properties of stabilized soil. With basalt fiber content varying from 0% to 1.2%, the unconfined compressive strength, dynamic compressive strength, dynamic increase factor, and specific energy absorption of stabilized soil showed an upward trend first and a downward trend subsequently. The unconfined compressive strength, dynamic compressive strength, and energy absorption ability have a maximum improvement under the optimum basalt fiber content of 0.6%. In addition, the inclusion of basalt fiber can change the failure pattern of cement-fly ash-stabilized soil. The fractal dimension of broken fragments decreased gradually with the increasing basalt fiber content and increased correspondingly with the increasing impact loading pressure. With the basalt fiber content of 0.6%, a stable internal space structure produced inside stabilized soil. However, there are many fiber-fiber weak interfaces that appeared inside stabilized soil under the basalt fiber content of 1.2%. The microstructural observations can be considered as the good interpretations to verify the macroscopic mechanical characteristics.
机译:本文的目的是评估玄武岩纤维含量对水泥 - 飞灰稳定土壤静动力学性能和微观结构的影响。从一系列物理和机械实验的结果获得水泥和粉煤灰的最佳混合含量。基于水泥和粉煤灰的最佳混合含量,通过无凝结的压缩试验,动态压缩试验(即SHPB测试)研究了用玄武岩纤维增强的水泥 - 飞灰稳定土壤的静动力机械性能和微观结构。 )和SEM测试。结果表明,在水泥 - 粉煤灰稳定的土壤中添加玄武岩纤维显着提高了稳定土壤的静动力学机械性能。玄武岩纤维含量不同于0%至1.2%,无束缚的抗压强度,动态抗压强度,动态增加因子和稳定土壤的特定能量吸收显示出呈上升趋势,随后呈下降趋势。无束缚的抗压强度,动态抗压强度和能量吸收能力在最佳玄武岩纤维含量下具有0.6%的最大改善。此外,包含玄武岩纤维可以改变水泥 - 飞灰稳定土壤的故障模式。破碎片段的分形尺寸随着玄武岩纤维含量的增加而逐渐降低,并且相应地增加了越来越大的冲击负载压力。玄武岩纤维含量为0.6%,在稳定的土壤内产生稳定的内部空间结构。然而,在玄武岩纤维含量为1.2%,存在许多纤维纤维弱界面出现在稳定的土壤中。微观结构观察可以被认为是验证宏观机械特性的良好解释。

著录项

  • 来源
    《Advances in civil engineering》 |2019年第15期|8214534.1-8214534.20|共20页
  • 作者单位

    Anhui Univ Sci & Technol Sch Civil Engn & Architecture Huainan 232001 Anhui Peoples R China|Anhui Univ Sci & Technol Engn Res Ctr Underground Mine Construct Minist Educ Huainan 232001 Anhui Peoples R China;

    Anhui Univ Sci & Technol Sch Civil Engn & Architecture Huainan 232001 Anhui Peoples R China|Anhui Univ Sci & Technol Engn Res Ctr Underground Mine Construct Minist Educ Huainan 232001 Anhui Peoples R China|Anhui Univ Sci & Technol State Key Lab Min Response & Disaster Prevent & C Huainan 232001 Anhui Peoples R China;

    Anhui Univ Sci & Technol Sch Civil Engn & Architecture Huainan 232001 Anhui Peoples R China|Anhui Univ Sci & Technol Engn Res Ctr Underground Mine Construct Minist Educ Huainan 232001 Anhui Peoples R China;

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  • 入库时间 2022-08-18 22:05:19

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