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An experimental methodology to characterise post-necking behaviour and quantify ductile damage accumulation in isotropic materials

机译:特征术后行为的实验方法,并量化各向同性材料的延性损伤积累

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摘要

The development of ductile damage, that occurs beyond the point of necking in a tensile test, can be difficult to quantify. An experimental methodology has been developed to accurately characterise the postnecking deformation response of a material through continuous monitoring of the specimens shape up until rupture. By studying the evolution of the neck geometry, the correct values of the local stress and strain have been determined in samples of grade 304L stainless steel and C110 copper. Notched bar specimens of various notch acuities were examined enabling the effects of stress triaxiality on ductile fracture to be determined. The methodology developed has provided a robust framework for macroscopic measurements of ductile damage during the necking process. To characterise the material degradation process, the elastic modulus reduction method was employed on hourglass-shaped specimens of the same materials. Stiffness degradation was measured using a small gauge extensometer during uninterrupted tensile tests with partial elastic unloadings. A metallographic study was conducted on progressively damaged specimens in order to validate the macroscopic damage measurements. A new non-linear ductile damage accumulation law has been developed and calibrated, which provides an advanced representation of the experimental results, and a significant improvement compared to linear accumulation models frequently employed. This realistic modelling approach considers the degradation of the material when it has undergone severe plastic deformation, and provides a more accurate representation of the near failure behaviour by considering the effects of stress triaxiality. The methodology provides accurate data for damage model development and calibration, to improve the predictions of remnant life from ductile damage in engineering components. (C) 2019 Published by Elsevier Ltd.
机译:在拉伸试验中颈颈部的延伸点发生的延展性损伤的发展可能难以量化。已经开发了一种实验方法,以通过连续监测样品成形直到破裂,精确地表征材料的后结垢变形响应。通过研究颈部几何形状的演化,已经在304L不锈钢和C110铜的样品中确定了局部应力和菌株的正确值。检查各种缺口缩小的缺口律棒标本,使应激三轴性对待确定的韧性骨折的影响。该方法为在缩颈过程中提供了一种稳健的框架,用于颈部损伤的巨次损伤。为了表征材料劣化过程,采用弹性模量减少方法在相同材料的沙漏形样品上。在具有部分弹性卸载的不间断拉伸试验期间,使用小规格扩展仪测量刚度劣化。在逐渐受损的标本上进行了金相研究,以验证宏观损伤测量。已经开发和校准了新的非线性延性累积累积法,其提供了实验结果的高级表示,与经常使用的线性累积模型相比,具有显着改进。这种现实的建模方法考虑了当经过严重的塑性变形时材料的降解,并通过考虑应激三轴性的影响来提供更准确的近衰竭行为的表示。该方法提供了损伤模型开发和校准的准确数据,以改善从工程部件中的韧性损伤的残余寿命的预测。 (c)2019年由elestvier有限公司出版

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