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基于能量演化的稻草纤维增强胶结尾矿充填体力学性能及损伤特性研究

Study on mechanical properties and damage characteristics of rice straw fiber-reinforced cemented tailings backfill based on energy evolution.

作者信息

Song Xuepeng, Dong Zilin, Hao Yuxin, Wang Shi, Li Junbiao, Yuan Quan

机构信息

School of Energy and Mining Engineering, China University of Mining and Technology (Beijing), Beijing, 100083, China.

School of Resources and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou, 341000, China.

出版信息

Environ Sci Pollut Res Int. 2023 Mar;30(15):45295-45314. doi: 10.1007/s11356-023-25515-6. Epub 2023 Jan 27.

Abstract

Low-cost and underutilized plant fibers can affect the mechanical behavior of cementitious materials such as cemented tailings backfill (CTB). This paper attempts to explore the mechanical properties and damage evolution characteristics of rice straw fiber (RFS)-reinforced CTB (RSFCTB) from the perspective of energy. A series of mechanical and microscopic tests were carried out on CTB and RSFCTB samples. On this basis, the energy evolution law and of the filling body under different stress paths were analyzed. Meanwhile, a damage variable based on dissipation energy was established, and the damage evolution process of the filling body was discussed. The results show that uniaxial compressive strength (UCS) of filling body first grew and then dropped with the enhancement of RSF content, and indirect tensile strength (ITS) was positively correlated with RSF content. Scanning electron microscope showed that RSF was encapsulated by hydration products, which promoted the bridging effect of RSF. The bridging effect of RSF improved the integrity of RSFCTB after compression failure and resulted in bending and asymmetric tensile cracks after tensile failure. The energy storage limit and dissipation energy of the filling body under different stress paths were enhanced due to the incorporation of RSF. The damage curve based on dissipation energy showed three stages of slow, steady, and fast damage under compressive loading. The damage curve of RSFCTB was located below CTB depending on the crack arresting effect of RSF. Moreover, the damage curve under tensile load shows three stages: slow, stable damage, and sudden increase in damage. The damage value of RSFCTB at the mutation point was increased, and the ability of RSFCTB to resist tensile damage was enhanced. The energy evolution and acoustic emission parameters were combined, and their development trends were similar, which proved that it was reasonable to characterize the damage of filling body based on the dissipated energy.

摘要

低成本且未充分利用的植物纤维会影响胶凝材料的力学性能,如胶结尾矿充填体(CTB)。本文试图从能量角度探究稻草纤维(RFS)增强CTB(RSFCTB)的力学性能和损伤演化特性。对CTB和RSFCTB试样进行了一系列力学和微观试验。在此基础上,分析了不同应力路径下充填体的能量演化规律。同时,建立了基于耗散能量的损伤变量,并探讨了充填体的损伤演化过程。结果表明,充填体的单轴抗压强度(UCS)随RSF含量的增加先增大后减小,间接抗拉强度(ITS)与RSF含量呈正相关。扫描电子显微镜显示,RSF被水化产物包裹,促进了RSF的桥接作用。RSF的桥接作用提高了RSFCTB压缩破坏后的完整性,并导致拉伸破坏后出现弯曲和不对称拉伸裂缝。由于RSF的加入,不同应力路径下充填体的储能极限和耗散能量得到提高。基于耗散能量的损伤曲线在压缩加载下呈现缓慢、稳定和快速损伤三个阶段。由于RSF的止裂作用,RSFCTB的损伤曲线位于CTB下方。此外,拉伸荷载下的损伤曲线呈现缓慢、稳定损伤和损伤突然增加三个阶段。RSFCTB在突变点的损伤值增大,其抗拉伸损伤能力增强。将能量演化与声发射参数相结合,它们的发展趋势相似,证明基于耗散能量表征充填体损伤是合理的。

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