土工基础 ›› 2025, Vol. 39 ›› Issue (3): 490-493.

• 测试技术 • 上一篇    下一篇

玄武岩石粉水泥改性淤泥土静力学特性研究

林锴浩,封天洪,吴思麒,顾妙洁,赵一诺,李 娜   

  1. (绍兴文理学院土木工程学院,浙江绍兴 312000)
  • 收稿日期:2024-04-20 修回日期:2024-05-09 出版日期:2025-06-30 发布日期:2025-08-05
  • 作者简介:林锴浩(2003-),男,本科,研究方向为道路固废研究。
  • 基金资助:
    国家级大学生创新创业训练项目(202210349018);国家级大学生创新创业训练项目(202310349041X)

Study on Static Characteristics of Basalt Stone Powder-Cement Modified Silty Soils

LIN Kaihao, FENG Tianhong, WU Siqi, GU Miaojie, ZHAO Yinuo, LI Na   

  1. (School of Civil Engineering, Shaoxing University, Shaoxing 312000)
  • Received:2024-04-20 Revised:2024-05-09 Online:2025-06-30 Published:2025-08-05

摘要: 玄武岩石粉(BSP)是石材厂在切割玄武岩过程中产生的废弃颗粒,大量的石粉堆积不仅占用土地,还污染环境和浪费资源。为有效利用BSP,使用BSP作为改性剂以制备玄武岩石粉水泥土(BSPCS)。通过无侧限抗压试验,研究BSP掺量对水泥土的应力应变、抗压强度和弹性模量等静力学特性的影响。结果表明,BSP作为改性剂可以显著提高水泥土的力学特性。随着BSP掺量的增加,BSPCS试样的应力-应变、抗压强度及弹性模量均呈现先增后减的趋势。当BSP掺量为12%时,BSPCS试样力学特性最佳。随着养护龄期的增加,BSPCS试样的峰值应变明显向左偏移,BSPCS试样的脆性增大。但是各掺量下的BSPCS试样的力学特性都得到显著的提高,其中BSPCS-12试样的无侧限抗压强度可以满足《公路路面基层施工技术细则》(JTG/T F20-2015)中二级公路及以下公路的强度要求。研究结论可为BSP改性水泥土的应用可供有力的理论支撑。

关键词: 玄武岩石粉, 水泥土, 抗压强度, 弹性模量

Abstract: The basalt stone powder (BSP) is a waste material produced by quarries in the process of cutting basalt, and the accumulation of large amounts of stone powder not only occupies land but also pollutes the environment and wastes resources. To effectively utilize the BSP, this study used BSP as a modifier in order to prepare the basalt stone powder cement soil (BSPCS). The effect of the BSP content on the hydrostatic properties such as stressstrain, the compressive strength and the modulus of elasticity of the hydraulic soil were investigated by means of the unconfined compressive tests. The results show that the BSP as a modifier can significantly improve the mechanical properties of the hydraulic soil. With the increase of the BSP content, the stress-strain, the compressive strength and the modulus of elasticity of the BSPCS specimens showed a trend of increasing and then decreasing. The best mechanical properties of the BSPCS samples were obtained when the BSP content was 12%. Meanwhile, with the increase of the age of maintenance, the peak strain of the BSPCS specimens was obviously shifted to the left, and the brittleness of the BSPCS specimens increased. However, the mechanical properties of the BSPCS specimens under each specified amount were significantly improved, in which the unconfined compressive strength of the BSPCS-12 specimens could meet the strength requirements of secondary roads and below in the Technical Specifications for the Construction of Highway Pavement Subgrade (JTG/T F20-2015). The conclusion of the study can provide a strong theoretical support for the application of the BSP-modified hydraulic soil.

Key words: Basalt Stone Powder, Cement Soil, Compressive Strength, Elastic Modulus

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