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Splitting Tensile Strength of Cement Soil Reinforced with Basalt Fibers

机译:用玄武岩纤维加固水泥土的拉伸强度

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摘要

Due to low splitting tensile strength, cement soil is more likely to experience dry shrinkage and cracking in practical engineering. In this study, the mixing procedure of the cement soil reinforced with basalt fibers was investigated; the influences of cement content, curing time, basalt fiber content and length on the splitting tensile strength of the cement soil reinforced with basalt fibers were studied; and the correlation of the splitting tensile strength vs. the compressive strength of the cement soil reinforced with basalt fibers was discussed. The contribution of basalt fibers on performance improvement of the cement soil was also addressed based on the microstructural analysis and the toughening mechanism exposition. Results indicate that the best mixing method for the cement soil reinforced with basalt fibers is to mix the muddy silty clay with basalt fibers first, then with cement slurry. The increase of cement content and curing time can improve the splitting tensile strength of the cement soil effectively. The splitting tensile strength of the cement soil increases first and then decreases with the content and length of basalt fibers. The optimal content and length of basalt fibers for the cement soil are 0.4% and 12 mm, respectively. The relationship between the splitting tensile strength and the compressive strength of the cement soil reinforced with basalt fibers can be described as a linear relationship with the correlation coefficient of 0.245 and the determination coefficient of 0.990. The contribution of basalt fibers on the toughening mechanisms of cement soil shows that the fiber-matrix interaction would be the dominant effect to control the tensile strength of the soil-cement-fiber composites. The results of this study can provide a reference for the design and application of cement soil reinforced with basalt fibers in actual engineering.
机译:由于抗拉强度低,水泥土更可能在实际工程中经历干燥收缩和破裂。在该研究中,研究了用玄武岩纤维增强的水泥土的混合过程;研究了水泥含量,固化时间,玄武岩纤维含量和长度对玄武器纤维增强的水泥土的分裂拉伸强度的影响;探讨了分裂拉伸强度与玄武岩纤维增强的水泥土的抗压强度的相关性。基于微观结构分析和增韧机制阐述,还解决了玄武岩纤维对水泥土的性能改善的贡献。结果表明,用玄武岩纤维增强的水泥土的最佳混合方法是首先将泥泞的纤维与玄武岩纤维混合,然后用水泥浆料混合。水泥含量的增加和固化时间可以有效地改善水泥土的分裂拉伸强度。水泥土的分裂拉伸强度首先增加,然后随玄武岩纤维的含量和长度降低。水泥土壤玄武岩纤维的最佳含量和长度分别为0.4%和12mm。通过玄武岩纤维增强的水泥土的分裂拉伸强度与压缩强度之间的关系可以描述为与0.245的相关系数和0.990的确定系数的线性关系。玄武岩纤维对水泥土的增韧机制的贡献表明,纤维 - 基质相互作用是控制土水泥 - 纤维复合材料的拉伸强度的显性效果。该研究的结果可以为使用实际工程中的玄武岩纤维增强水泥土的设计和应用提供参考。

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