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首页> 外文期刊>Rock Mechanics and Rock Engineering >Applications of Digital Image Correlation (DIC) and the Strain Gage Method for Measuring Dynamic Mode I Fracture Parameters of the White Marble Specimen
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Applications of Digital Image Correlation (DIC) and the Strain Gage Method for Measuring Dynamic Mode I Fracture Parameters of the White Marble Specimen

机译:数字图像相关性(DIC)和应变计法测量动态模式的动态模式I裂缝参数

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摘要

Digital image correlation (DIC) and the strain gage method are both widely used in characterizing the fracture mechanisms of materials. However, the quantitative comparisons of rock fracture parameters between the two methods have been studied insufficiently. In this paper, dynamic three-point bending impact tests were performed on white marble specimens using DIC and the strain gage method simultaneously. The complete cracking process was recorded by two high-speed cameras situated on either side of the specimen. The crack propagation velocities were obtained and the dynamic stress intensity factors (DSIFs) were calculated by both methods for analysis and comparison. The experimental results show that the crack propagation velocities almost remain constant during the cracking process, and the evolutions of strain values recorded by gages are consistent with the modified strain variations obtained theoretically. DSIFs calculated by DIC show good agreement with the results obtained from strain gages #1 to #4, while the size effect and the multiple stress waves interfere with the strain signals sensed in strain gage #5, causing a relatively larger deviation in the DSIF. In addition, the complete fracture process (including the variations in successive displacement and strain fields) can be obtained by the DIC method, while a rough changing trend in the DSIF can be given by the strain gage method with a limited number of strain gages.
机译:数字图像相关(DIC)和应变计方法均广泛用于表征材料的断裂机制。然而,已经研究了两种方法之间的岩石断裂参数的定量比较。在本文中,在白色大理石标本上使用DIC和应变计法同时进行动态三点弯曲冲击试验。完全开裂过程由位于样本两侧的两个高速相机记录。获得裂缝繁殖速度,通过两种用于分析和比较的方法计算动态应力强度因子(DSIF)。实验结果表明,在开裂过程中裂缝传播速度几乎保持恒定,并且测量记录的应变值的演变与理论上获得的修饰菌株变化一致。由DIC计算的DSIF与从应变计#1至#4获得的结果表现出良好的一致性,而尺寸效应和多个应力波干扰应变计#5中感测的应变信号,导致DSIF中的相对较大的偏差。另外,通过DIC方法可以获得完整的断裂过程(包括连续位移和应变场中的变化),而DSIF中的粗糙变化趋势可以通过具有有限数量的应变计的应变计方法给出。

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