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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Experimental and numerical investigation of failure during bending of AA6061 aluminum alloy sheet using the modified Mohr-Coulomb fracture criterion
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Experimental and numerical investigation of failure during bending of AA6061 aluminum alloy sheet using the modified Mohr-Coulomb fracture criterion

机译:使用改良的Mohr-Coulomb骨折标准弯曲AA6061铝合金板弯曲期间的试验和数值研究

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In this paper, the modified Mohr-Coulomb (MMC) ductile fracture criterion was adopted to analyze the fracture behavior of the AA6061-T6 aluminum alloy sheet during the U-bending process. Appropriate calibration procedures were employed using various tension tests. A finite element (FE) model was built using the commercial FE code Abaqus/Explicit incorporating the calibrated MMC fracture criterion. It was found that the MMC criterion calibrated by the uniaxial, plane strain, notched, and modified in-plane shear tension tests can predict the onset of fracture in the U-bending process with reasonable accuracy. The error of the predicted fracture displacement was about 2% as compared to experiments. Due to the dependency of the fracture prediction accuracy on the stress state, the effects of process parameters on stress triaxiality and normalized Lode angle parameter were investigated. The negligible effect of process parameters on the stress state confirmed that the calibrated fracture criterion (MMC) was able to predict fracture in different forming conditions with equal accuracy. Also, the proportional stress and strain state in the U-bending process indicate that, besides the high fracture prediction accuracy of the MMC's damage accumulation function, the fracture forming limit diagram (under proportional loading assumption) can serve as a reliable tool for estimating the onset of fracture in the U-bending process. Therefore, a series of studies were also conducted on damage evolution, crack propagation, principal strains, and fracture displacement during the U-bending process under various forming conditions.
机译:本文采用改性的MoHR-Coulomb(MMC)延展性裂缝标准来分析U弯曲过程中AA6061-T6铝合金片的断裂行为。采用适当的校准程序使用各种张力试验。使用商业FE代码ABAQUS /显式建造了有限元(FE)模型,该模型含有校准的MMC裂缝标准。发现由单轴,平面应变,缺口和改性的内面剪切张力试验校准的MMC标准可以预测U弯曲过程中的断裂发作,具有合理的精度。与实验相比,预测断裂位移的误差约为2%。由于断裂预测精度对应力状态的依赖性,研究了研究过程参数对应力三轴性和标准化典型角参数的影响。过程参数对应力状态的可忽略效果证实,校准的骨折标准(MMC)能够在不同的成形条件下预测具有相同精度的裂缝。此外,U弯曲过程中的比例应力和应变状态表明,除了MMC损坏累积功能的高断裂预测精度之外,骨折形成限位图(按比例负载假设)可以作为估计的可靠工具骨折过程中的骨折发作。因此,在各种成形条件下在U弯曲过程中,还对损伤进化,裂纹繁殖,主菌株和断裂位移进行了一系列研究。

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