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A comparative study of dynamic, ductile fracture initiation in two specimen configurations

机译:两种试样配置中动态延性断裂萌生的比较研究

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In this work a single edge notched plate (SEN(T)) subjected to a tensile stress pulse is analysed, using a 2D plane strain dynamic finite element procedure. The interaction of the notch with a pre-nucleated hole ahead of it is examined. The background material is modelled by the Gurson constitutive law and ductile failure by microvoid coalescence in the ligament connecting the notch and the hole is simulated. Both rate independent and rate dependent material behaviour is considered. The notch tip region is subjected to a range of loading rates I by varying the peak value and the rise time of the applied stress pulse. The results obtained from these simulations are compared with a three point bend (TPB) specimen subjected to impact loading analysed in an earlier work (3). The variation of J at fracture initiation, J_c, with average loading rate J is obtained from the finite element simulations. It is found that the functional relationship between J_c and J is fairly independent of the specimen geometry and is only dependent on material behaviour.
机译:在这项工作中,使用2D平面应变动态有限元程序分析了承受拉应力脉冲的单边缺口板(SEN(T))。检查缺口与缺口前面的预成核孔之间的相互作用。通过Gurson本构定律对背景材料进行建模,并通过连接缺口和孔的韧带中的微孔聚结来模拟延性破坏。速率无关和速率依赖的材料行为均被考虑。通过改变施加的应力脉冲的峰值和上升时间,使切口尖端区域经受一定的加载速率I。从这些模拟中获得的结果与在早期工作中分析过的三点弯曲(TPB)试样的冲击载荷进行了比较(3)。从有限元模拟中可以得出在断裂开始时J随平均加载速率J的变化J_c。发现J_c和J之间的函数关系完全独立于样品的几何形状,并且仅取决于材料的行为。

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