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首页> 外文期刊>Journal of Materials Processing Technology >Experimental investigation into the electropulsing assisted punching process of 2024T4 aluminum alloy sheet
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Experimental investigation into the electropulsing assisted punching process of 2024T4 aluminum alloy sheet

机译:2024T4铝合金板电捕辅助冲压工艺的实验研究

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Graphical abstractDisplay OmittedAbstractDuring the punching process of high strength lightweight materials such as 2024T4 aluminum alloy, the severe die wear and edge fracture of the punched part are one of the main concerns of manufacturing industries and the scientific community. Researches have found that the electric current can reduce the metals’ flow stress, improve their ductility, and promote the dislocation annihilation below the annealing temperature. Therefore, the electric current was proposed to help improve the punching process of 2024T4 aluminum alloy sheet in this paper. The experiments of electropulsing assisted punching (EAP) were carried out by applying different values of electric current on the specimens at different punching phases. For convenience to compare the punching results, the punching load, the surface quality of the punched profile and edge strain hardening (ESH) were analyzed under different electropulsing ways. In addition, the uniaxial tensile tests of punched parts were carried out to evaluate the influence of electropulsing on the ultimate tensile load of punched specimen with a hole. The results show that the electropulsing has a significant effect on reducing the punching load and improving the surface quality of the punched profile. Moreover, the anisotropy of material and the ESH of the punched edge, which are characterized by the level or distribution of microhardness, are eliminated partially due to the electropulsing induced annealing effect. The ultimate tensile load has been effectively enhanced by electropulsing, which may stem from the fact that elimination of ESH and the healing and arrest of microcracks and microvoids near punched edge.]]>
机译:<![cdata [ 图形抽象 显示省略 抽象 在高强度轻质材料的冲压过程中,如2024t4铝合金,严重的模具磨损和边缘骨折的冲孔部分是制造业和科学界的主要问题之一。研究发现,电流可以降低金属的流量应力,提高它们的延展性,促进退火温度以下的脱位湮灭。因此,提出了电流以帮助提高本文2024T4铝合金板的冲压过程。通过在不同冲孔相的样品上施加不同的电流值,进行振动辅助冲孔(EAP)的实验。为方便地比较冲压率,冲压载荷,在不同的拍摄方式下分析冲压型和边缘应变硬化(ESH)的表面质量。此外,进行了冲孔部件的单轴拉伸试验,以评估电禁止电禁止对具有孔的冲孔标本的最终拉伸载荷的影响。结果表明,电捕诱导对减少冲压负荷并改善冲孔轮廓的表面质量具有显着影响。此外,由于电捕诱导的退火效果,部分地消除了由微硬度的水平或分布的皮干边缘的材料和eSh的各向异性。通过电禁忌得到了最终拉伸载荷,这可能源于消除eSH的事实以及在冲压边缘附近的微裂纹和微侵害的愈合和防止。 ]]>

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