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Effects of Rock Specimen Size on Mechanical Properties in Laboratory Testing

机译:岩石标本大小对实验室检测中力学性能的影响

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摘要

The design of rock engineering projects requires an estimation of the strength of intact rock blocks. These blocks can be significantly larger than the typical laboratory test specimen; thus, understanding the specimen size effect on mechanical properties is essential. In this paper, a series of uniaxial compression tests and Brazilian disc tests were conducted on cylindrical samples with diameters varying from 20 to 150 mm, and direct shear tests were conducted on cubic samples with side lengths varying from 50 to 200 mm. The results showed that the uniaxial compressive strength (UCS), cohesion, and Young's modulus decrease with increasing specimen size, whereas the tensile strength initially increases and then decreases. Moreover, the applicability of different size effect models to experimental data was assessed. It was concluded that the fitting equations of UCS and cohesion are almost the same, whereas that of tensile strength is significantly different. The size effect law of rock mechanics parameters may be affected by the failure mode.
机译:岩石工程项目的设计需要估计完整岩块的强度。这些块可以明显大于典型的实验室试样;因此,了解对机械性能的标本尺寸影响至关重要。在本文中,在圆柱形样品上进行了一系列单轴压缩测试和巴西盘试验,直径从20至150mm变化,直接剪切测试在立方体样品上进行,侧长度从50至200mm变化。结果表明,单轴抗压强度(UCS),凝聚力和杨氏模量随着样品尺寸的增加而降低,而拉伸强度最初增加,然后降低。此外,评估了不同尺寸效应模型对实验数据的适用性。得出结论是,UCS和凝聚力的拟合方程几乎是相同的,而拉伸强度的拟合方程显着不同。岩石力学参数的大小效应法可能受到故障模式的影响。

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