包层(金属加工)
合金
材料科学
流动应力
铝
有限元法
应变率
冶金
图层(电子)
粘结强度
压力(语言学)
复合材料
结构工程
工程类
哲学
语言学
作者
A. N. Koshmin,А. V. Zinoviev,С. О. Черкасов,Abdullah Mahmoud Alhaj Ali,K. A. Tsydenov,A. Yu. Churyumov
出处
期刊:Metals
[MDPI AG]
日期:2024-07-25
卷期号:14 (8): 852-852
被引量:5
摘要
The roll bonding of an experimental Al-2%Cu-2%Mn alloy with technically pure 1050A aluminum at true deformations of 0.26, 0.33 and 0.40 has been simulated using the QForm 10.3.0 FEM software. The flow stress of the Al-2%Cu-2%Mn alloy has been measured in temperature and strain rate ranges of 350–450 °C and 0.1–20 s−1, respectively. The simulation results suggest that the equivalent strain in the cladding layer is more intense than that in the base layer, reaching 1.0, 1.4 and 2.0 at strains of 0.26, 0.33 and 0.40, respectively. The latter fact favors a decrease in the difference between the flow stresses of the rolled sheet layer contact surfaces by an average of 25% at the highest strain. The experimental roll bonding has achieved good layer adhesion for all the test samples. The average peeling strength of the samples produced at strains of 0.26 and 0.33 proves to be 12.6 and 18.4 N/mm, respectively, and at a strain of 0.40, it has exceeded the flow stress of the 1050A alloy cladding layer. The change in the rolling force for different rolling routes has demonstrated the best fit with the experimental data.
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