1060-H112铝合金动态力学行为研究:实验与数值模拟

IF 1.4 4区 工程技术 Q3 ENGINEERING, MECHANICAL Journal of Strain Analysis for Engineering Design Pub Date : 2022-11-10 DOI:10.1177/03093247221135413
Yunfei Deng, Ruiwen Wang, Yinbo Zhang, Huapeng Wu, Gang Wei
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引用次数: 0

摘要

1060-H112铝合金具有高延展性,广泛应用于工业工程中。对其动态力学行为的研究具有理论和工程应用价值。本文采用万能材料试验机和霍普金森压缩棒进行室温至250℃的准静态拉伸试验和高应变率压缩试验。采用混合试验-数值模拟方法,对修正的Johnson-Cook (MJC)强度模型和Cockcroft-Latham (C-L)断裂准则参数进行了标定。随后,对直径12.66 mm、长度50.64 mm的1060-H112铝合金试样在176.3-483.03 m/s范围内进行了Taylor冲击试验。试验中观察到镦粗和拉伸撕裂。采用轻气枪系统对直径12.68 mm的钝头弹丸对2mm 1060-H112铝合金板进行了冲击试验,获得了冲击速度相关参数和破坏模式。最后,在ABAQUS/Explicit有限元仿真软件中建立了与试验相对应的三维模型,预测了Taylor杆的失效模式以及目标冲击试验的速度参数和失效模式。结果表明,MJC强度模型和C-L断裂准则能较准确地预测两次试验的试验结果。结果表明,MJC强度模型和C-L断裂准则具有较高的精度,将在1060-H112铝合金在工业工程中的应用中发挥重要作用。
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Study of dynamic mechanical behavior of 1060-H112 aluminum alloy: Experimental and numerical simulation
1060-H112 aluminum alloy with high ductility is widely used in industrial engineering. The study of its dynamic mechanical behavior has theoretical and engineering application value. In this paper, quasi-static tensile tests from room temperature to 250°C and high strain rate compression tests were conducted using a universal material testing machine and a Hopkinson compression bar. By using a hybrid test-numerical simulation method, a modified Johnson-Cook (MJC) strength model and Cockcroft-Latham (C-L) fracture criterion parameters were calibrated. Subsequently, Taylor impact tests were performed on 1060-H112 aluminum alloy specimens with a diameter of 12.66 mm and a length of 50.64 mm in the range of 176.3–483.03 m/s. Upsetting and tensile tearing were observed in the tests. A 12.68 mm diameter blunt nosed projectile impact test on 2 mm 1060-H112 aluminum alloy plate was also conducted with a light gas gun system, and the speed related parameters and failure modes were obtained. Finally, a three-dimensional model corresponding to the test was established in ABAQUS/Explicit finite element simulation software, and the failure modes of the Taylor rod and the velocity parameters and failure modes of the target impact test were predicted. The results show that the MJC strength model and the C-L fracture criterion can predict the experimental results of the two tests accurately. It shows that the MJC strength model and C-L fracture criterion have high accuracy, and they will play an important role in the application of 1060-H112 aluminum alloy in industrial engineering.
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来源期刊
Journal of Strain Analysis for Engineering Design
Journal of Strain Analysis for Engineering Design 工程技术-材料科学:表征与测试
CiteScore
3.50
自引率
6.20%
发文量
25
审稿时长
>12 weeks
期刊介绍: The Journal of Strain Analysis for Engineering Design provides a forum for work relating to the measurement and analysis of strain that is appropriate to engineering design and practice. "Since launching in 1965, The Journal of Strain Analysis has been a collegiate effort, dedicated to providing exemplary service to our authors. We welcome contributions related to analytical, experimental, and numerical techniques for the analysis and/or measurement of stress and/or strain, or studies of relevant material properties and failure modes. Our international Editorial Board contains experts in all of these fields and is keen to encourage papers on novel techniques and innovative applications." Professor Eann Patterson - University of Liverpool, UK This journal is a member of the Committee on Publication Ethics (COPE).
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