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Assessing the Fracturing Process of Rocks Based on Burst–Brittleness Ratio (BBR) Governed by Point Load Testing

机译:基于点荷载试验的爆裂脆性比(BBR)评估岩石压裂过程

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Brittleness is an intrinsic mechanical property of rock materials that has attracted significant attention to be properly quantified as it plays an important role in characterization of brittle fracturing. Endeavors have led to the establisliment of many Brittleness Indices (BIs) for various rock types and widespread engineering applications. Among them, assessing burst proneness as a serious challenge in underground mining has received considerable attention. Parallel to BIs' development, variolic Bursting Liability Indices (BLIs) have been proposed to specifically assess coal bursting phenomenon. Despite having different names, both BI and BLI in principle have aimed at evaluating the burst-brittleness level of different rocks for different applications. In this study, the principles of burst and brittleness were discussed followed by the development of a novel so-called burst-brittleness ratio (BBR) to assess the relative burst-brittleness of rock types irrespective of their applications. To do so, the proposed BBR was governed by point load testing (PLT) which has significant advantages over the other rock testing methods used in BI estimation such as direct or indirect tensile testing. To examine the suitability of the proposed ratio, three different rock types from various geological origins including coal, granite and sandstone were selected and tested under uniaxial compressive, indirect tensile Brazilian and point loadings. The high-speed imaging technique and Acoustic Emission (AE) were utilized to characterize the cracking process (e.g., failure under shear or tension) and to monitor the real-time failure behavior of samples- under different loading conditions. The resulting data revealed that the severity of strength loss in coal samples was significantly higher than that observed in other rock types particularly under uniaxial compression endorsing the validity of the proposed BBR.
机译:脆性是岩石材料固有的机械特性,由于它在脆性压裂的表征中起着重要作用,因此引起了人们的极大关注,需要对其进行适当的量化。经过努力,为各种岩石类型和广泛的工程应用建立了许多脆性指数 (BI)。其中,将爆裂倾向评估为地下采矿的严峻挑战受到了相当大的关注。在BI发展的同时,还提出了各种爆煤责任指数(BLIs)来专门评估煤爆裂现象。尽管名称不同,但BI和BLI原则上都旨在评估不同岩石在不同应用中的爆裂脆性水平。在这项研究中,讨论了爆裂和脆性的原理,然后开发了一种新的所谓的爆裂脆性比(BBR),以评估岩石类型的相对爆裂脆性,无论其应用如何。为此,所提出的BBR由点载荷测试(PLT)控制,与BI估计中使用的其他岩石测试方法(如直接或间接拉伸测试)相比,该测试具有显着优势。为了检验所提比率的适用性,我们选择了来自不同地质来源的三种不同岩石类型,包括煤、花岗岩和砂岩,并在单轴压缩、间接拉伸巴西和点荷载下进行了测试。利用高速成像技术和声发射(AE)来表征裂解过程(例如,剪切或拉伸下的破坏),并监测样品在不同加载条件下的实时破坏行为。结果显示,煤样中强度损失的严重程度明显高于其他岩石类型,特别是在单轴压缩下,这证实了所提出的BBR的有效性。

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