不同热处理条件下铝合金薄板回弹对不同工艺参数的敏感性评价

Q2 Materials Science Engineering Solid Mechanics Pub Date : 2021-01-01 DOI:10.5267/J.ESM.2021.1.005
S. Hakimi, A. Soualem
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引用次数: 1

摘要

由工具控制的永久变形的成形步骤在材料内部产生应力分布,这直接取决于后者的加工硬化性能。移除工具后边界条件的变化迫使材料以与新边界条件相容的方式重新分配截面中的应力。这种新的分布必然是由局部的弹性变形来运作的,这种变形在全局上导致了一种被称为回弹的总体形状变化。这种几何偏差可以通过工具的精细聚焦最小化,但由于几个参数的影响,通常不能完全消除。因此,研究不同工艺因素和物理冶金参数对不同金属回弹的影响,对设计和合理实现成形工具具有重要意义。这项工作的主要目的是找到解决钣金成形中遇到的问题,如回弹问题。我们的工作有两个基本目的:第一是在理论分析的基础上进行实验研究。为此,对u型拉伸弯曲装置进行了零件的新设计,并使之适应于拉力试验机。这种设计的优点是可以同时修改和组装影响回弹的所有参数,也可以在同一台设备上进行多个成形工序。第二个目标是回弹的实验和数值预测,研究了不同拉伸弯曲工艺参数如冲床速度、板料方向(各向异性)、保温时间和冲模间隙对铝合金板在3种不同轧制方向(0°、45°、90°)下热处理回弹行为的影响。利用ABAQUS/CAE软件建立了拉伸弯曲的有限元模型。通过分析可知,在拉伸弯曲过程中,回弹受板料各向异性和热处理的影响。将得到的实验结果与数值模拟结果进行了比较,发现两者吻合较好。
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Evaluation of the sensitivity of springback to various process parameters of aluminum alloy sheet with different heat treatment conditions
The forming steps by permanent deformation controlled by the tools generate a distribution of stresses inside the material which directly depends on the work hardening properties of the latter. The change in boundary conditions following the removal of the tools imposes the material to redistribute the stresses in the sections in a manner compatible with the new boundary conditions. This new distribution necessarily operates by local elastic deformations that result globally in a general change of shape called springback. This geometrical deviation can be minimized by the meticulous focus of the tools, but it cannot generally be completely annihilated due to the influence of several parameters. For this reason, the study of the influence of the different technological factors and physico-metallurgical parameters on the springback for the different metals is very important to design and properly realize forming tools. The main objective of this work is to find solutions to problems encountered in sheet metal forming such as the problem of springback. Our work has two essential purposes: the first is summarized in an experimental study based on theoretical analyses. To this end, much effort is made to add a new design of parts for a U-type stretch-bending device and adapt it to a tensile testing machine. This design has the advantage of modifying and assembling all parameters affecting springback at the same time and also of carrying out several forming processes on the same device. The second goal is the experimental and numerical prediction of springback, and the study of the effect of various stretch-bending process parameters such as punch velocity, the orientation of the sheet (anisotropy), hold time and punch-die clearance on springback behavior under heat treatment of aluminum alloy sheets with three different rolling directions (0°,45°,90°). A finite element (FE) model of stretch-bending has been established by utilizing ABAQUS/CAE software. From this analysis, it can be concluded that the springback is affected by the anisotropy of the sheet and the heat treatment in the stretch-bending process. The obtained experimental results were compared with the numerical simulations found in good agreement.
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来源期刊
Engineering Solid Mechanics
Engineering Solid Mechanics Materials Science-Metals and Alloys
CiteScore
3.00
自引率
0.00%
发文量
21
期刊介绍: Engineering Solid Mechanics (ESM) is an online international journal for publishing high quality peer reviewed papers in the field of theoretical and applied solid mechanics. The primary focus is to exchange ideas about investigating behavior and properties of engineering materials (such as metals, composites, ceramics, polymers, FGMs, rocks and concretes, asphalt mixtures, bio and nano materials) and their mechanical characterization (including strength and deformation behavior, fatigue and fracture, stress measurements, etc.) through experimental, theoretical and numerical research studies. Researchers and practitioners (from deferent areas such as mechanical and manufacturing, aerospace, railway, bio-mechanics, civil and mining, materials and metallurgy, oil, gas and petroleum industries, pipeline, marine and offshore sectors) are encouraged to submit their original, unpublished contributions.
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