聚合物乳液浸渍再生砖细骨料制备砂浆的阻尼特性

Damping characteristics of mortar prepared from recycled brick fine aggregate impregnated with polymer emulsion

  • 摘要: 利用废弃黏土红砖制备再生砖细骨料(RBFA),通过聚合物乳液浸渍RBFA形成乳液改性砖骨料(PRBFA),考虑PRBFA取代率、乳液浸渍处理方式、乳液固含量及乳液类型等因素影响,采用悬挂弯曲自由振动测试PRBFA制备砂浆(PBM)的阻尼特性,并基于PRBFA界面特征分析PBM阻尼机制。结果表明:PBM一阶阻尼比( \xi )和耗散模量(E′′)随PRBFA取代率增加而增加,最大增幅达118.5%和27.7%;PBM的 \xi 和E′′随乳液固含量增加而增加,最大增幅为85.9%和29.0%;聚乙烯醇乳液浸渍RBFA提升PBM阻尼效果显著,最大增幅达164.9%;不同浸渍处理方式对 \xi 影响较小,但乳液饱和浸渍并烘干处理提高E′′达25.5%,且PBM抗压强度增长26.3%。当PRBFA取代率为50%时,PBM强度和阻尼性能兼优。浸渍乳液具有显著黏弹性,且与无机水泥基体间粘结薄弱,形成约束层阻尼结构,并在薄弱界面发生黏性滑移,提升PBM的阻尼特性。

     

    Abstract: Recycled brick fine aggregate (RBFA) was produced from waste clay red bricks and impregnated with polymer emulsion to form emulsion-modified brick aggregate (PRBFA). The effects of PRBFA substitution rate, emulsion impregnation method, emulsion solid content, and emulsion type on the damping properties of PRBFA-based mortar (PBM) were investigated. The damping characteristics of PBM were tested using suspended beam-free vibration tests, and the damping mechanism of PBM was analyzed based on the interface properties of PRBFA. The results demonstrate that the first-order damping ratio ( \xi ) and loss modulus (E′′) of PBM increase with the PRBFA substitution rate, showing maximum increases of 118.5% and 27.7%, respectively. Both \xi and E′′ of PBM increase with the emulsion solid content, with maximum increases of 85.9% and 29.0%, respectively. Polyvinyl alcohol emulsion significantly improves the damping effect of PBM, with a maximum increase of 164.9%. Different impregnation methods have a minor effect on \xi , but saturation impregnation followed by drying improves E′′ by 25.5% and increases the compressive strength of PBM by 26.3%. When the PRBFA replacement ratio is 50%, PBM exhibits optimal performance in both strength and damping properties. The emulsion's viscoelastic properties and weak adhesion with the inorganic cement matrix, form a constrained-layer damping structure, facilitating viscous sliding at the weak interfaces and enhancing PBM's damping characteristics.

     

/

返回文章
返回