School of Resources and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China.
Jiangxi Provincial Key Laboratory of Mining Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China.
Sensors (Basel). 2021 Dec 20;21(24):8499. doi: 10.3390/s21248499.
The strength of cemented paste backfill (CPB) directly affects mining safety and progress. At present, in-situ backfill strength is obtained by conducting uniaxial compression tests on backfill core samples. At the same time, it is time-consuming, and the integrity of samples cannot be guaranteed. Therefore guided wave technique as a nondestructive inspection method is proposed for the strength development monitoring of cemented paste backfill. In this paper, the acoustic parameters of guided wave propagation in the different cement-tailings ratios (1:4, 1:8) and different curing times (within 42 d) of CPBs were measured. Combined with the uniaxial compression strength of CPB, relationships between CPB strength and the guided wave acoustic parameters were established. Results indicate that with the increase of backfill curing time, the guided wave velocity decreases sharply at first; on the contrary, attenuation of guided waves increases dramatically. Finally, both velocity and attenuation tend to be stable. When the CPB strength increases with curing time, guided wave velocity shows an exponentially decreasing trend, while the guided wave attenuation shows an exponentially increasing trend with the increase of the CPB strength. Based on the relationship curves between CPB strength and guided wave velocity and attenuation, the guided wave technique in monitoring the strength development of CPB proves feasible.
胶结充填料浆(CPB)的强度直接影响采矿安全和进度。目前,通过对充填料芯样进行单轴压缩试验来获得原位回填强度。同时,该方法耗时且不能保证样品的完整性。因此,提出了导波技术作为一种无损检测方法,用于监测胶结充填料浆的强度发展。本文测量了 CPB 在不同水泥-尾砂比(1:4、1:8)和不同养护时间(42d 内)下的导波传播声参数。结合 CPB 的单轴抗压强度,建立了 CPB 强度与导波声参数之间的关系。结果表明,随着回填养护时间的增加,导波速度先急剧下降;相反,导波衰减急剧增加。最后,速度和衰减都趋于稳定。当 CPB 强度随养护时间增加时,导波速度呈指数下降趋势,而导波衰减随 CPB 强度的增加呈指数增加趋势。基于 CPB 强度与导波速度和衰减之间的关系曲线,证明了导波技术在监测 CPB 强度发展方面是可行的。