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Experimental Study on the Deterioration Rules of Anchoring Performance of Rock Mass under Different Joints Distribution

机译:不同关节分布下岩体锚定性能劣化规律的试验研究

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In order to analyze the influence of damage caused by corrosion on anchoring performance of a rock mass with different joints, the anchored rock mass specimens with different joints distribution were prepared. An electrochemical accelerated corrosion test of specimens was carried out, and the mechanical test of them under different corrosion time was also investigated. The results showed that the pitting corrosion is the main form of the anchor bar corrosion of an anchoring rock mass with different joints, and the shape of the etch pit is reverse semi-ellipse. With the increase of pitting ratio, the ultimate bond strength and the corresponding slide distance decrease gradually. The effects of pitting ratio on the slide distance of the anchor bar in an anchored joint rock mass are insignificant, but these on the bond strength of it are significant. The bond-slide model of the anchored joint rock mass with different pitting ratios was established. The research results of this paper can provide reference for analyzing the corrosion damage of a complex anchored joint rock mass in practical engineering and a theoretical basis for the design optimization of anchoring support in the complex jointed rock mass.
机译:为了分析腐蚀引起的抗腐蚀性对岩体锚固性能的影响,制备了具有不同关节分布的锚定岩体样本。还研究了样品的电化学加速腐蚀试验,并研究了不同腐蚀时间下它们的机械试验。结果表明,蚀腐蚀是锚杆锚固锚杆腐蚀的主要形式,其具有不同的关节,蚀刻坑的形状是反向半椭圆形。随着蚀比的增加,最终的粘合强度和相应的滑动距离逐渐降低。在锚固的关节岩体中锚杆滑动距离对锚杆滑动距离的影响是微不足道的,但是这对它的粘合强度是显着的。建立了具有不同点蚀比的锚固接头岩体的键合模型。本文的研究结果可以为分析实际工程中复杂的锚固关节岩体的腐蚀损坏以及在复杂的关节岩体中锚固支撑的设计优化的理论依据提供参考。

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