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Theoretical and Experimental Investigations of the Blast Vibration Resistance of Cement-Grouted Rock

机译:水泥灌浆岩爆抗抗震性的理论与实验研究

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The impact of blast vibrations on cement-grouted rock is an unresolved challenge in construction projects where blasting is conducted near the grouted areas. This study investigates the blast vibration resistance of cement-grouted rock using both theoretical and experimental approaches. An analytical model is first presented based on structural characteristics and mechanical properties to describe the stress wave propagation in cement-grouted rock mass and to investigate the failure modes at its bonding interfaces. A model to calculate the safe vibration velocity (SVV) is then proposed to study the effects of the incident angle, in-situ stress, and bonding strength on cement-grouted rock. Next, an experiment was conducted to analyse the blast vibration resistance of cement-grouted rock and to validate the SVV model. Finally, several recommendations regarding safe blast vibration velocities for grouted areas were provided. The results indicate that cement-grouted rock has a high blast vibration resistance, which can be improved by increasing the incident angle, in-situ stress, or bonding strength. A normally incident wave was identified as the most dangerous for cement-grouted rock; thus, the SVV is the minimal in that case. For 3, 7, and 28-day-old cement-grouted rock, the SVV is suggested to be 6, 9, and 13 cm/s, respectively.
机译:爆炸振动对水泥灌浆岩石的影响是在灌浆区域附近进行爆破的建设项目中的一个未解决的挑战。本研究通过理论和实验方法调查了水泥灌浆岩石的抗抗震性。首先基于结构特征和机械性能来提出分析模型,以描述水泥灌浆岩体中的应力波传播,并在其粘接界面处研究失效模式。然后提出了一种计算安全振动速度(SVV)的模型,以研究入射角,原位应力和粘合强度对水泥灌浆岩石的影响。接下来,进行实验以分析水泥灌浆岩石的抗抗震性,并验证SVV模型。最后,提供了关于灌浆区域的安全爆炸振动速度的若干建议。结果表明,水泥灌浆岩具有高抗抗震性,可以通过增加入射角,原位应力或粘合强度来提高。通常入射的波被鉴定为水泥灌浆岩石最危险;因此,SVV是这种情况下的最小值。对于3,7和28天历史的水泥灌浆岩,SVV分别为6,9和13cm / s。

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