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Effects of the ratio of flaw size to specimen size on cracking behavior

机译:裂纹尺寸与试样尺寸之比对裂纹行为的影响

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摘要

To investigate the size effects on the cracking behavior of flaw-containing specimens under compressive loading, rectangular parallelepiped specimens containing a single centrally located flaw are numerically loaded using the bonded-particle model (BPM). Effects of the ratio of flaw size (length) to specimen size on cracking behavior are carefully studied. The numerical results show that increasing the ratio of flaw size to specimen size within a reasonable range (≤0.33) has no obvious effects on the first crack initiation stress, but decreases the uniaxial compressive strength. In specimens of a high flaw size to specimen size ratio, the newly generated cracks have longer extension length, which allows for easier crack identification as compared with that of the low ratio specimens. These phenomena are also observed in the physical test. Based on the present study, recommendations are given on choosing appropriate specimen widths in the BPM simulation. The failures of flaw-containing specimens as well as the outward bending effect of narrow specimens are also discussed.
机译:为了研究尺寸对压缩载荷下含裂纹的试样开裂行为的影响,使用键合颗粒模型(BPM)对包含单个位于中心的裂纹的长方体试样进行数值加载。仔细研究了裂纹尺寸(长度)与试样尺寸之比对裂纹行为的影响。数值结果表明,在合理范围内(≤0.33)增加缺陷尺寸与试样尺寸的比值对第一裂纹起始应力没有明显影响,但会降低单轴抗压强度。在高缺陷尺寸与样品尺寸比的样品中,新产生的裂纹具有较长的延伸长度,与低比例样品相比,裂纹识别更容易。在物理测试中也观察到了这些现象。根据目前的研究,在BPM模拟中建议选择合适的样品宽度。还讨论了含缺陷试样的失效以及窄试样的向外弯曲效应。

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