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首页> 外文期刊>Shock and vibration >Study on the Fracture Behavior of Cracks Emanating from Tunnel Spandrel under Blasting Loads by Using TMCSC Specimens
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Study on the Fracture Behavior of Cracks Emanating from Tunnel Spandrel under Blasting Loads by Using TMCSC Specimens

机译:用TMCSC标本用爆破载荷下隧道弯曲裂缝裂缝行为的研究

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Radial cracks may exist around tunnel edge, and these cracks may propagate and weaken tunnel stability under nearby blasting operations. In order to study the blast-induced fracture behavior of radial cracks emanating from a tunnel spandrel, a tunnel model containing a spandrel crack (TMCSC) with different inclination angles was proposed in this paper. Crack propagation gauges (CPGs) and strain gauges were used in the experiments to measure crack initiation moment and propagation time. Finite difference models were established by using AUTODYN code to simulate crack propagation behavior and propagation path. ABAQUS code was used to calculate dynamic stress intensity factors (SIFs). The results show that (1) crack inclination angles affect crack initiation angles and crack propagation lengths significantly; (2) critical SIFs of both mode I and mode II decrease gradually with the increase of the crack propagation speed; (3) the dynamic energy release rates vary during crack propagation; and (4) there are “crack arrest points” on the crack propagation paths in which the crack propagation speed is very small.
机译:隧道边缘周围可能存在径向裂缝,并且这些裂缝可以在附近的爆破操作下传播和削弱隧道稳定性。为了研究从隧道弯曲件发出的径向裂缝的喷射诱导的断裂行为,本文提出了一种含有不同倾斜角的散发裂纹(TMCSC)的隧道模型。在实验中使用裂缝展示仪(CPG)和应变仪测量裂纹开始时刻和传播时间。通过使用AUTODYN代码来模拟裂缝传播行为和传播路径来建立有限差分模型。 ABAQUS代码用于计算动态应力强度因子(SIFS)。结果表明,(1)裂缝倾斜角度显着影响裂纹启动角度和裂纹传播长度; (2)两种模式I和模式II的关键SIFS随着裂缝传播速度的增加而逐渐降低; (3)动态能量释放率在裂纹繁殖期间变化; (4)裂缝传播路径上存在“裂缝骤停点”,其中裂缝传播速度非常小。

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