首页> 外文会议>ASME Pressure Vessels Piping Conference >PROPOSAL OF DUCTILE DAMAGE MODEL BASED ON UNIT CELL ANALYSIS FOR PREDICTION OF DUCTILE CRACK GROWTH RESISTANCE OF CRACKED COMPONENT
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PROPOSAL OF DUCTILE DAMAGE MODEL BASED ON UNIT CELL ANALYSIS FOR PREDICTION OF DUCTILE CRACK GROWTH RESISTANCE OF CRACKED COMPONENT

机译:基于单元元分析的韧性损伤模型预测裂纹部件的韧性裂纹增长阻力的建议

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The aim of this study is to propose the damage model on the basis of the mechanism for ductile fracture related to void growth and applicable to ductile fracture assessment for steels. In order to determine damage evolution law, void growth behavior in the material was investigated by elasto-plastic finite element analyses using unit cell model with an initial void. From the results of the unit cell analyses, it was evident that a void in unit cell grew nonlinearly with increasing applied macroscopic strain. Moreover, the relationships between normalized void volume fraction and normalized strain by each critical value corresponding to crack initiation were independent of stress-strain relationship of material and stress triaxiality state. Based on this characteristic associated with void growth, damage evolution law representing nonlinear damage accumulation was derived. Then, using the damage evolution law, ductile damage model reflecting void growth behavior and ductility of material was proposed. For validation and application of the proposed damage model, ductile crack growth tests using bend specimens with a machined notch or a fatigue pre-crack were conducted for low carbon steel. The proposed damage model was implemented in finite element analyses and ductile crack growth simulations were performed for each bending test. Then, it was shown that the proposed model could accurately predict ductile crack growth resistance from machined notch root and fatigue pre-crack tip (R-curves) and the validity and applicability of proposed damage model to cracked components could be confirmed.
机译:这项研究的目的是基于与空洞生长相关的延性断裂机理,提出适用于钢的延性断裂评估的损伤模型。为了确定损伤演化规律,使用具有初始空隙的晶胞模型,通过弹塑性有限元分析研究了材料中的空隙生长行为。从晶胞分析的结果可以看出,随着施加的宏观应变的增加,晶胞中的空隙呈非线性增长。而且,归一化的空隙体积分数和归一化应变之间的关系(对应于裂纹萌生的每个临界值)与材料的应力-应变关系和应力三轴状态无关。基于与空隙增长相关的这一特征,得出了代表非线性损伤累积的损伤演化定律。然后,根据损伤演化规律,提出了反映空洞生长行为和材料延性的延性损伤模型。为了验证和应用建议的损伤模型,针对低碳钢,使用带有机加工缺口或疲劳预裂纹的弯曲试样进行了延性裂纹扩展测试。在有限元分析中实施了建议的损伤模型,并对每个弯曲试验进行了延性裂纹扩展模拟。结果表明,所提出的模型可以从加工后的缺口根部和疲劳裂纹前尖端(R曲线)准确地预测出延性裂纹扩展阻力,并证实了所提出的损伤模型对裂纹部件的有效性和适用性。

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