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Investigation on the flexural strength, failure pattern and microstructural characteristics of combined fibers reinforced cemented tailings backfill

机译:联合纤维增强粘液尾矿回填的组合纤维弯曲强度,破坏模式和微观结构特性的研究

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摘要

The brittleness of the cemented tailings backfill (CTB) can easily cause collapse, which seriously threatens the safety of underground mining workers and equipment. Studies have shown that fibers can improve the ductility of the CTB. However, there are still few existing studies on the mechanical behavior of com-bined fibers. In this study, glass (G) fiber and polypropylene (PP) fiber were adopted to prepare fiber-reinforced CTB (FRCTB) specimens. The three-point bending and scanning electron microscopy (SEM) tests were adopted to investigate the mechanical properties of CTB and FRCTB. The main conclusions were shown that: the flexural strength (FS) values of FRCTB specimens first decreased and then increased with the glass fiber content decreased. However, the residual FS values of all FRCTB were larger than those none fiber-reinforced CTB. The average flexural modulus of all the FRCTB first decreased and then increased with the content of glass fiber decreased. The average toughness index (ATI) values of all FRCTB specimens were larger than those none fiber-reinforced CTB. Indicating that the addition of fibers can improve the bending performance of the CTB specimens. The failure patterns of the CTB were mainly the tensile failure along the loading direction. The main hydrate products were still AFt and C-S-H gels. The combined fibers had an impeding effect on crack propagation. The results of this study can provide references for elaboration combined fiber-reinforced mechanism of FRCTB and serve the industrial application. (c) 2021 Elsevier Ltd. All rights reserved.
机译:粘液尾矿回填(CTB)的脆性很容易引起崩溃,这严重威胁到地下采矿工人和设备的安全。研究表明,纤维可以改善CTB的延展性。然而,仍有关于COM衬里纤维的机械性能的现有研究。在该研究中,采用玻璃(G)纤维和聚丙烯(PP)纤维制备纤维增强的CTB(FRCTB)标本。采用三点弯曲和扫描电子显微镜(SEM)试验研究CTB和FRCTB的机械性能。主要结论显示:FRCTB样品的弯曲强度(FS)值首先降低,然后随着玻璃纤维含量的增加而增加。然而,所有FRCTB的残留FS值大于无纤维增强的CTB。所有FRCTB的平均弯曲模量首先降低,然后随着玻璃纤维的含量降低而增加。所有FRCTB样本的平均韧性指数(ATI)值大于无纤维增强的CTB。表示添加纤维可以改善CTB样本的弯曲性能。 CTB的故障模式主要是沿装载方向的拉伸失效。主要的水合物产物仍然是尾剂和C-S-H凝胶。合并的纤维对裂纹繁殖具有阻力影响。本研究的结果可以提供FRCTB组合纤维增强机制的参考,并为工业应用提供。 (c)2021 elestvier有限公司保留所有权利。

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