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Flow and fracture behavior of aluminum alloy 6082-T6 at different tensile strain rates and triaxialities

机译:铝合金6082-T6在不同拉伸应变速率和三轴度下的流动和断裂行为

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摘要

This study aims to investigate the flow and fracture behavior of aluminum alloy 6082-T6 (AA6082-T6) at different strain rates and triaxialities. Two groups of Charpy impact tests were carried out to further investigate its dynamic impact fracture property. A series of tensile tests and numerical simulations based on finite element analysis (FEA) were performed. Experimental data on smooth specimens under various strain rates ranging from 0.0001~3400 s-1 shows that AA6082-T6 is rather insensitive to strain rates in general. However, clear rate sensitivity was observed in the range of 0.001~1 s-1 while such a characteristic is counteracted by the adiabatic heating of specimens under high strain rates. A Johnson-Cook constitutive model was proposed based on tensile tests at different strain rates. In this study, the average stress triaxiality and equivalent plastic strain at facture obtained from numerical simulations were used for the calibration of J-C fracture model. Both of the J-C constitutive model and fracture model were employed in numerical simulations and the results was compared with experimental results. The calibrated J-C fracture model exhibits higher accuracy than the J-C fracture model obtained by the common method in predicting the fracture behavior of AA6082-T6. Finally, the Scanning Electron Microscope (SEM) of fractured specimens with different initial stress triaxialities were analyzed. The magnified fractographs indicate that high initial stress triaxiality likely results in dimple fracture.
机译:本研究旨在研究铝合金6082-T6(AA6082-T6)在不同应变率和三轴度下的流动和断裂行为。进行了两组夏比冲击试验以进一步研究其动态冲击断裂性能。进行了一系列基于有限元分析(FEA)的拉伸试验和数值模拟。在0.0001〜3400 s -1 范围内的各种应变速率下,光滑试样的实验数据表明,AA6082-T6通常对应变速率不敏感。然而,在0.001〜1 s -1 范围内观察到了清晰的速率敏感性,而高应变速率下的绝热加热抵消了这一特性。基于不同应变速率下的拉伸试验,提出了Johnson-Cook本构模型。在这项研究中,将从数值模拟获得的平均应力三轴性和等效塑性应变用于J-C断裂模型的校准。在数值模拟中均采用了J-C本构模型和断裂模型,并将结果与​​实验结果进行了比较。校正后的J-C断裂模型在预测AA6082-T6断裂行为方面比通过常规方法获得的J-C断裂模型具有更高的准确性。最后,分析了具有不同初始应力三轴性的断裂试样的扫描电子显微镜(SEM)。放大的断口图表明,高初始应力三轴性可能导致酒窝破裂。

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