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A Hybrid Numerical-Experimental Method for Determination of Dynamic Fracture Properties of Material

机译:一种用于测定材料动态断裂性能的杂种数值实验方法

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A novel hybrid numerical-experimental method to obtain dynamic fracture properties of materials has been developed in the present work. Specimens were tested with one-point bending configuration in the Hopkinson's bar apparatus, from which the impact loading profiles were measured. In this dynamic fracture experiment, the crack tip position was measured by two strips of special strain gage having five gages arranged in one strip. Since the strain gage record only gave strain signal of each gage as a function of time, a novel method is proposed to determine the time at which the crack tip passed each strain gage and the time when the crack finally stopped. From the data of crack tip position as a function of time, the crack speed then can be calculated. These data, i.e. the loading profile and the crack speed, were then used as the input of the Node-Based FEM program developed for dynamic fractures problems. With the proposed method, three dynamic fracture properties of materials i.e dynamic fracture toughness for crack initiation ( K_(Ic)~ d), fracture toughness for crack propagation (K_(ID)), and crack arrest toughness (K_(Ia)) can simultaneously be obtained. The results obtained from the investigation of dynamic fracture properties of Polymethyl Methacrylate (PMMA) material by the present method are well compared with the ones in the literature and from the direct experimental measurement. The good agreement suggests that the hybrid method developed in the present work can be used reliably to determine the dynamic fracture properties of materials.
机译:在本作工作中开发了一种新的杂化数值实验方法,以获得材料的动态断裂性能。在Hopkinson的杆状杆装置中用单点弯曲配置测试样品,测量冲击载体型材。在该动态断裂实验中,裂纹尖端位置由具有在一个条带中布置的五个计的特殊应变计的两条特殊应变计来测量。由于应变计记录仅作为时间的函数获得每个量量的应变信号,所以提出了一种新方法以确定裂纹尖端通过每个应变计的时间以及裂缝最终停止的时间。从裂缝尖端位置的数据作为时间的函数,可以计算裂缝速度。然后,这些数据,即加载轮廓和裂缝速度,作为为动态骨折问题开发的基于节点的FEM程序的输入。利用所提出的方法,材料的三种动态断裂性能,即用于裂纹引发的动态断裂韧性(K_(IC)〜D),用于裂纹繁殖的断裂韧性(K_(ID))和裂纹抑制韧性(K_(IA))同时获得。通过本方法对本方法进行多种聚甲基丙烯酸甲酯(PMMA)材料的动态断裂性能的研究结果与文献中的甲基丙烯酸甲酯(PMMA)材料和直接实验测量相比。良好的协议表明,可以可靠地利用本作工作中开发的混合方法以确定材料的动态断裂性能。

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