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Estimation of the Onset of Crack Growth in Ductile Materials

机译:韧性材料中裂纹扩展开始的估计

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摘要

In this paper, the ductile fracture mechanism is discussed. The results of numerical and experimental analyses were used to estimate the onset of crack front growth. It was assumed that the ductile fracture in front of the crack starts at the location along the crack front where the accumulated effective plastic strain reaches a critical value. According to numerous research articles, the critical effective plastic strain depends on the stress triaxiality and the Lode angle. The experimental program was performed using five different specimen geometries, three different materials, and three different temperatures of +20 °C, −20 °C, and −50 °C. Using the experimental data and results of the finite element computations, the critical effective plastic strains were determined for each material and temperature. However, before the critical effective plastic strain was determined, a careful calibration of the stress–strain curves was performed after modification of the Bai–Wierzbicki procedure. It was found that critical effective plastic strain was a function of triaxiality factor and Lode parameter, as expected, and that the fracture locus was useful to estimate the onset of ductile crack growth.
机译:本文讨论了韧性断裂机理。数值和实验分析的结果被用来估计裂纹前沿增长的开始。假定裂纹前部的延性断裂始于沿着裂纹前部的位置,在该位置累积的有效塑性应变达到临界值。根据大量研究文章,临界有效塑性应变取决于应力三轴性和洛德角。实验程序是使用五种不同的样品几何形状,三种不同的材料以及+20°C,-20°C和-50°C的三种不同温度执行的。使用实验数据和有限元计算结果,确定每种材料和温度的临界有效塑性应变。但是,在确定临界有效塑性应变之前,对Bai-Wierzbicki程序进行修改之后,对应力-应变曲线进行了仔细的校准。发现,临界有效塑性应变是三轴因子和Lode参数的函数,正如预期的那样,并且断裂轨迹可用于估计延性裂纹扩展的开始。

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