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Evaluation of Methods for Determining Crack Initiation in Compression Tests on Low-Porosity Rocks

机译:低孔隙度岩石压缩试验中确定裂纹萌生方法的评价

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摘要

Laboratory testing of rocks is traditionally carried out to determine the peak strength using the ISRM Suggested Methods or other suitable standards. However, it is well known that in low-porosity crystalline rocks there are at least three distinct stages of compressive loading that can be readily identified if the stress-strain response is monitored during the loading process: (1) crack initiation, (2) unstable crack growth, i.e., crack coalescence and (3) peak strength. Crack initiation is noted as the first stage of stress-induced damage in low-porosity rocks, yet the suggested guidelines of the ISRM for compression tests make no mention of crack initiation. In addition, recent research suggests that crack initiation can be used as an estimate for the in situ spalling strength, commonly observed around underground excavations in massive to moderately jointed brittle rocks. Various methods have been proposed for identifying crack initiation in laboratory tests. These methods are evaluated using ten samples of Aspo Diorite and the results are compared with a simplified method, lateral strain response. Statistically, all methods give acceptable crack-initiation values. It is proposed that the ISRM Suggested Methods be revised to include procedures suitable for establishing the crack-initiation stress.
机译:传统上,使用ISRM建议方法或其他合适的标准对岩石进行实验室测试以确定峰强度。但是,众所周知,在低孔隙度的晶体岩石中,如果在加载过程中监测应力-应变响应,则可以很容易地识别出至少三个不同的压缩加载阶段:(1)裂纹萌生,(2)裂纹扩展不稳定,即裂纹合并和(3)峰值强度。裂纹萌生被认为是低孔隙率岩石中应力引起的破坏的第一阶段,但是ISRM建议的压缩试验准则并未提及裂纹萌生。此外,最近的研究表明,可以将裂纹萌生作为现场剥落强度的估算值,通常在大块到中等节理的脆性岩石地下开挖中观察到。已经提出了各种方法来鉴定实验室测试中的裂纹萌生。这些方法使用十个Aspo Diorite样品进行评估,并将结果与​​简化方法横向应变响应进行比较。从统计上讲,所有方法均给出可接受的裂纹起始值。建议对ISRM建议方法进行修订,以包括适合于建立裂纹萌生应力的程序。

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