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Determination of dynamic fracture-initiation toughness using three-point bending tests in a modified Hopkinson pressure bar

机译:在改良的Hopkinson压力棒中使用三点弯曲试验确定动态断裂起始韧性

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摘要

We present a procedure for measuring the dynamic fracture-initiation toughness of materials. The method is based on three-point bending tests at high loading rates, performed in an experimental device which is a modification of the classical split Hopkinson pressure bar. Coupled with the loading device, a high-speed photography system was used to measure the crack mouth opening displacement (CMOD) directly on the specimen. The stress intensity factor was calculated by three different simplified methods and the time to fracture was obtained from an appropriate specimen instrumentation. To evaluate the results derived from the simplified methods, a two-dimensional full-numerical analysis of the dynamic bending fracture test was made. The model includes the specimen, the input bar, the impacting projectile and the supporting device and takes into account the possible loss of contact during the experiment between the input bar and the specimen and between the specimen and its supports. From the tests and numerical results, it can be concluded that the CMOD procedure, together with the knowledge of the time to fracture determined using crack gages, seems to be the best method for measuring dynamic fracture-initiation toughness.
机译:我们提出了一种用于测量材料的动态断裂起始韧性的程序。该方法基于在高负载率下的三点弯曲测试,该测试是在实验设备中进行的,该设备是对经典的Hopkinson压力棒的改进。结合加载装置,使用高速摄影系统直接在样品上测量裂纹张口位移(CMOD)。应力强度因子是通过三种不同的简化方法计算得出的,断裂时间是从适当的试样仪器获得的。为了评估简化方法的结果,对动力弯曲断裂试验进行了二维全数值分析。该模型包括样本,输入杆,撞击弹丸和支撑装置,并考虑了实验期间输入杆与样本之间以及样本与其支撑物之间可能失去的接触。从测试和数值结果可以得出结论,CMOD程序以及使用裂缝规确定的断裂时间知识似乎是测量动态断裂起始韧性的最佳方法。

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