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Experimental Study of Epoxy Resin Repairing of Cracks in Fractured Rocks

机译:环氧树脂修复裂隙裂缝的试验研究

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摘要

Cracks in rock mass have always posed a big threat on the durability of fractured rocks in shear zone. Cracking of rock mass in shear zone is a random process, highly variable and influenced by many factors. Cracks in fractured rocks can be repaired by injection of epoxy resin in order to bond the crack and restore its structural integrity. Epoxy resins are used to repairing the shear zone at the Jinping Hydropower Station. An improved polymer grouting material is adopted and the polymerization process is determined. The polymer grouting materials is consisted of resin (component A) and hardener (component B). Polarizing microscopy (PM) tests and mechanical experiments are adopted to evaluate the filling situation of epoxy resin in rock and the mechanical properties of epoxy-repaired rock, respectively. Experimental test results show that, the cracks and pores are filled by epoxy resin, and also the crack surface are boned. The mechanical properties of epoxy-repaired rock are improved by the polymer grouting and the permeability coefficient is decreased.
机译:岩体裂缝一直对剪切带裂隙岩石的耐久性构成巨大威胁。剪切带岩体的裂解是一个随机过程,变化很大,受多种因素影响。裂隙岩石中的裂缝可以通过注入环氧树脂来修复,以粘合裂缝并恢复其结构完整性。环氧树脂用于修复锦平水电站的剪切带。采用改进的高分子灌浆材料,并确定了聚合工艺。聚合物灌浆材料由树脂(组分A)和固化剂(组分B)组成。采用偏振显微镜(PM)试验和力学实验分别评价环氧树脂在岩石中的填充情况和环氧修复岩石的力学性能。实验试验结果表明,裂纹和气孔由环氧树脂填充,裂纹表面也具有骨感。聚合物注浆提高了环氧修复岩石的力学性能,降低了渗透系数。

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