...
首页> 外文期刊>International journal of impact engineering >Effect of the Lode parameter in predicting shear cracking of 2024-T351 aluminum alloy Taylor rods
【24h】

Effect of the Lode parameter in predicting shear cracking of 2024-T351 aluminum alloy Taylor rods

机译:Lode参数对2024-T351铝合金泰勒棒剪切开裂预测的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Recent investigations have shown that the ductility of a metal may depend on not only the stress triaxiality but also the Lode parameter, especially in the relatively low stress triaxiality range. However, applications using the Lode dependent fracture criterion are few and the value of incorporating the Lode parameter into a fracture criterion to predict impact related fracture is poorly understood. In the present paper, Taylor impact test by using 2024-T351 aluminum alloy rods of 5.95 mm diameter and 29.75 mm length was firstly conducted in a one-stage gas gun in the impact velocity range of 110.8–312.7 m/s. Mushrooming and shear cracking were observed in the test with increasing impact velocity. Subsequently, mechanical tests were conducted in a universal testing machine and a SHPB test facility. By using a hybrid experiment–numerical method, a modified version of Johnson–Cook strength model, a Lode-dependent fracture criterion as well as the Johnson–Cook (JC) fracture criterion were calibrated. Finally, 3D FE model corresponding to the test was built in ABAQUS and then was adopted to predict the shear cracking of the Taylor rods. It was found that FE simulations by using the Lode dependent fracture criterion give reasonable fracture pattern predictions while that using the Johnson–Cook fracture model obviously underestimates the fracture behavior. Detailed analysis shows that the dominant stress state of the material in the projectile's fracture region in the impact event is in the range where the Lode parameter has an obvious influence on the metal's ductility. FE simulations by using virtual metals also show that the Taylor impact fracture behavior prediction is much dependent on the effect of the Lode parameter on a material's ductility.
机译:最近的研究表明,金属的延展性不仅取决于应力三轴性,而且还取决于Lode参数,尤其是在相对较低的应力三轴性范围内。但是,使用依赖于Lode的断裂准则的应用很少,并且对将Lode参数合并到断裂准则中以预测与冲击相关的断裂的价值了解甚少。在本文中,泰勒冲击试验采用的是直径为5.95 mm,长度为29.75 mm的2024-T351铝合金棒,它是在一级气枪中以110.8-312.7 m / s的冲击速度进行测试的。随着冲击速度的增加,在试验中观察到蘑菇和剪切裂纹。随后,在通用测试机和SHPB测试设备中进行了机械测试。通过使用混合实验-数值方法,对Johnson-Cook强度模型的修改版本,与Lode有关的断裂准则以及Johnson-Cook(JC)断裂准则进行了校准。最后,在ABAQUS中建立了与该测试相对应的3D FE模型,然后将其用于预测泰勒棒的剪切开裂。结果发现,使用Lode依赖性断裂准则进行的有限元模拟给出了合理的断裂模式预测,而使用Johnson-Cook断裂模型则明显低估了断裂行为。详细分析表明,在冲击事件中,弹丸断裂区域中材料的主要应力状态处于Lode参数对金属延展性具有明显影响的范围内。使用虚拟金属进行的有限元模拟还表明,泰勒冲击断裂行为的预测很大程度上取决于Lode参数对材料延展性的影响。

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