...
首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Prediction of material behavior during biaxial stretching of superplastic 5083 aluminum alloy
【24h】

Prediction of material behavior during biaxial stretching of superplastic 5083 aluminum alloy

机译:超塑5083铝合金双轴拉伸期间材料行为预测

获取原文
获取原文并翻译 | 示例

摘要

In order to predict the flow behavior of a superplastic Al-Mg alloy sheet under near biaxial tension mode, finite element simulation was performed using commercial FE software (ABAQUS). To capture the time-dependent plastic behavior of the material, three constitutive models, i.e., the Voce model, a power law, and a newly introduced variable m value viscoplastic (VmV) model, were implemented in FE simulations. The models' parameters were assessed from the three uniaxial stress-strain curves ranging from 10(-3) to 10(-1)s(-1). To validate the simulation results, Nakazima hemispherical dome testing was performed under isothermal conditions using a constant strain rate of similar to 0.01s(-1) at 450 degrees C. After the tests, the thickness of the deformed parts was measured and the volume fractions of cavities at different locations were assessed using X-ray micro-tomography, and the impact of the strain path on the rate of cavitation was discussed. Based on the obtained results, when the material behavior was modeled using the VmV model, the accuracy of the prediction was about 2 and 5 times better than the ones from power law and Voce model, respectively. It was also observed that the volume fraction of the cavities exponentially increases with equivalent plastic strain and it depends on the strain path history.
机译:为了预测下邻近双轴拉伸模式超塑性的Al-Mg合金板的流动特性,使用商用有限元软件(ABAQUS)进行有限元模拟。为了捕获该材料,三个构模型,即纯音模型,幂定律,并新引入的变量m的值粘塑性(VMV)模型,是在有限元模拟实现的时间依赖性塑性行为。模型参数是从三个单轴应力 - 应变曲线为10(-3)到10评估(-1)S(-1)。为了验证的仿真结果,在等温条件下,使用的类似的恒定应变速率为0.01s执行Nakazima半球圆顶测试(-1)在450℃下的试验后,变形部分的厚度进行测定,体积分数在不同位置处的空腔使用评估透视微断层摄影术,并讨论了对空化的速率应变路径的影响。基于所获得的结果,当该材料行为使用VMV模型中建模,预测的准确度比分别从幂律和纯音模型的那些更好的约2倍和5倍。还观察到的是,空腔的体积分数指数地等效塑性应变增加,这取决于应变路径历史。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号