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Use of Basalt Fiber-Reinforced Tailings for Improving the Stability of Tailings Dam

机译:使用玄武岩纤维增强的尾矿来改善尾矿坝的稳定性

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摘要

As one of the largest artificial geotechnical structures on earth, the tailings dams are classified as one of the high-risk sources in China’s industry. How to improve the stability and safety of tailings dams remains a challenge for mine operators currently. In this paper, an innovative method is presented for improving the stability of tailings dams, in which the basalt fiber is used to reinforce tailings. The mechanical properties of tailings used for dam-construction have a great influence on the stability of tailings dam. In order to investigate the mechanical performance of basalt fiber-reinforced tailings (BFRT), a series of laboratory triaxial tests were conducted. The effects of five parameters (fiber length, fiber content, particle size, dry density and confining pressure) on the mechanical properties of BFRT were studied. The microstructure and the behavior of interfaces between basalt fibers and tailings particles were analyzed by using scanning electron microscopy (SEM). The triaxial experimental test results show that the mechanical properties of BFRT increase with the increases of fiber length and content, particle size, dry density and confining pressure. The SEM results indicate that the interfacial interaction between fibers and tailings particles is mainly affected by particle shape.
机译:尾矿坝是地球上最大的人工岩土结构之一,被列为中国工业中的高风险源之一。当前如何改善尾矿坝的稳定性和安全性仍然是矿山经营者面临的挑战。本文提出了一种创新的方法来提高尾矿坝的稳定性,其中玄武岩纤维用于增强尾矿。大坝建设用尾矿的力学性能对尾矿坝的稳定性有很大影响。为了研究玄武岩纤维增强尾矿(BFRT)的机械性能,进行了一系列实验室三轴测试。研究了五个参数(纤维长度,纤维含量,粒径,干密度和围压)对BFRT力学性能的影响。利用扫描电子显微镜(SEM)分析了玄武岩纤维与尾矿颗粒之间的界面结构和行为。三轴试验结果表明,BFRT的力学性能随纤维长度和含量,粒径,干密度和围压的增加而增加。 SEM结果表明,纤维与尾矿颗粒之间的界面相互作用主要受颗粒形状的影响。

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