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Experimental investigation of fracture damage of notched granite beams under cyclic loading using DIC and AE techniques

机译:使用DIC和AE技术在循环载荷下缺口花岗岩梁断裂损伤的实验研究

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Fracture experiments of three-point bending notched granite beams were performed under cyclic loading using digital image correlation (DIC) and acoustic emission (AE) techniques. The damage evolution process of the specimen under cyclic loading was analysed on the basis of AE ring count and b value. The strain and displacement fields and the fracture process zone (FPZ) ahead of the crack tip were revealed by DIC. The results showed that the AE characteristics of rock fracture indicated a noticeable Kaiser effect in the stage of cyclic loading and unloading. Moreover, when the loading force reached 70% of its peak value, the AE characteristics showed the Felicity effect. The damage produced during the loading-unloading process contributed to the development of the cracks leading to the catastrophic fracture. Besides, a relatively high loading rate was found to help to suppress the development of the FPZ at the crack tip.
机译:使用数字图像相关(DIC)和声发射(AE)技术在循环载荷下进行三点弯曲的花岗岩梁的断裂实验。基于AE环计数和B值分析了循环载荷下标本的损伤进化过程。 DIC揭示了裂纹尖端前方的应变和位移场和断裂处理区(FPZ)。结果表明,岩石骨折的AE特性表明了循环载荷和卸载阶段的显着的kaiser效果。此外,当装载力达到其峰值的70%时,AE特性显示了剧情效果。卸载过程中产生的损坏有助于开发导致灾难性骨折的裂缝。此外,发现相对较高的加载率有助于抑制裂缝尖端的FPZ的发展。

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