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Experimental Study on Mix Proportion Parameter Optimization of Cement Anchoring Material

机译:水泥锚固材料配合比参数优化的试验研究。

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摘要

To prevent major deformation of surrounding rock and improve the stability of unstable rock mass, this study optimized the ratio of cement anchoring material based on the orthogonal design method and rock mechanics tests. Using the six influencing factors of coal ash content, sodium silicate content, ettringite content, naphthalene sulfonate content, water–cement ratio, and sand–cement ratio, a total of 18 sets of material matching schemes was designed. Compressive strength and pull-out force tests were carried out. The results are as follows: the compressive strength of the test piece between 43 and 55 MPa; the bond stress between the bolt and the anchoring agent range is from 103 to 136 kN; and the adhesion stress between the anchoring agent and the rock masses range is from 76 to 112 kN. The main order and degree of influence of various factors affecting the bond stress and the adhesion stress of the anchoring material were determined by range analysis and analysis of variance. The results showed that the amount of coal ash had a clear controlling effect on the bond stress, and the water–cement ratio, sand–cement ratio, and sodium silicate dosage had a significant influence on the bond stress. Moreover, the amount of sodium silicate had the greatest influence on the adhesion stress, and the water–cement ratio had the second largest influence on the adhesion stress. The amount of naphthalene sulfonate had the least influence on the adhesion stress. The above experimental data and results were subjected to multiple linear regression analyses, and the empirical equations of the mechanical indexes of the test pieces and the proportion parameters of the anchoring materials were obtained to guide the engineering support design. The engineering application showed that the optimized anchorage material could be applied to further improve the safety of the surrounding rock anchoring system.
机译:为防止围岩大变形,提高不稳定岩体的稳定性,本研究基于正交设计方法和岩石力学试验,优化了水泥锚固材料的配合比。利用煤灰含量,硅酸钠含量,钙矾石含量,萘磺酸盐含量,水灰比和砂灰比的六个影响因素,设计了总共18套材料匹配方案。进行了抗压强度和拉力测试。结果如下:试件的抗压强度在43至55 MPa之间。螺栓与锚固剂之间的结合应力范围为103〜136kN。锚固剂与岩体之间的黏附应力为76〜112 kN。通过范围分析和方差分析确定影响锚固材料粘结应力和粘附应力的各种因素的主要顺序和影响程度。结果表明,粉煤灰量对粘结应力具有明显的控制作用,水灰比,砂灰比和硅酸钠用量对粘结应力有显着影响。此外,硅酸钠的量对粘合应力影响最大,水灰比对粘合应力的影响第二大。萘磺酸盐的量对粘合应力的影响最小。对以上实验数据和结果进行多元线性回归分析,得到试件力学指标和锚固材料比例参数的经验方程,指导工程支护设计。工程应用表明,优化的锚固材料可用于进一步提高围岩锚固系统的安全性。

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