二灰加筋PVA纤维改性滨海软土的强度及机理研究

    Strength characteristics and microscopic mechanism of costal soft soil modified by lime-fly ash and PVA fiber

    • 摘要: 为解决滨海软土强度低、脆性大的问题,本文研究了石灰-粉煤灰(二灰)与PVA纤维的复合改良效果。二灰掺量和纤维长度对改良土无侧限抗压强度(UCS)和劈裂抗拉强度(STS)的影响通过正交试验进行系统分析,结合SEM微观试验多尺度增强增韧机制得以揭示。研究显示:①二灰掺量主导强度发展,掺量由5%提高到30%时,UCS与STS提高3~5倍左右;纤维长度主要调控韧性表现,综合力学性能最好的是锚固效果最好的6 mm纤维;②PVA纤维加入使破坏模式由脆性劈裂向延性塑性破坏,应力-应变响应曲线到达峰后强度衰减过程得到明显延缓;③火山灰反应产物(C-S-H/C-A-H)填充孔隙并构筑致密基体结构;纤维表面水化凝胶层通过机械咬合与摩擦增强纤维-土体界面黏结,在荷载下纤维的渐进式拔出作为主要耗能机制,从根本上提升了材料的宏观韧性。

       

      Abstract: In order to solve the problem of low strength and brittleness of coastal soft soil, this paper studies the composite improvement effect of lime-fly ash and PVA fiber. An orthogonal experimental design evaluated the effects of lime-fly ash content and fiber length on unconfined compressive strength (UCS) and splitting tensile strength (STS). Microstructural analysis via scanning electron microscopy (SEM) elucidated reinforcement and toughening mechanisms. Results indicate: (1) The lime-fiy ash content dominates strength development; UCS and STS increase approximately 3-5 times as content rises from 5% to 30%. Fiber length primarily governs toughness, with 6 mm fibers exhibiting optimal mechanical performance due to effective anchoring. (2) The addition of PVA fiber shifts the failure mode from brittle splitting to ductile plastic failure, significantly retarding post-peak strength degradation. (3) Pozzolanic reaction products (C-S-H/C-A-H) fill the pores and construct a dense matrix, while hydration gel on fiber surfaces enhances fiber-soil bonding via mechanical interlocking and friction. Progressive fiber pull-out during loading serves as the primary energy dissipation mechanism, thereby improving macroscopic toughness.

       

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