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Investigation on Microsheet Metal Deformation Behaviors in Ultrasonic-Vibration-Assisted Uniaxial Tension with Aluminum Alloy 5052

机译:铝合金5052在超声振动辅助的单轴拉伸中金属薄板变形行为的研究

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摘要

Ultrasonic vibration (UV) is widely used in the forming, joining, machining process, etc. for the acoustic softening effect. For parts with small dimensions, UV with limited output energy is very suitable for the microforming process and has been gaininf more and more attention. In this investigation, UV-assisted uniaxial tensile experiments were carried out utilizing GB 5052 thin sheets of different thicknesses and grain sizes, respectively. The coupling effects of UV and the specimen dimension on the properties of the material were analyzed from the viewpoint of acoustic energy in activating dislocations. A reduction of flow stress was found for the existing acoustic softening effects of UV. Additionally, the residual effects of UV were demonstrated when UV was turned off. The uniform deformation ability of thin sheet could be improved by increasing the hardening exponent with UV. The experimental results indicate that UV is very helpful in improving the forming limit in microsheet forming, e.g., microbulging and deep drawing processes.
机译:超声波振动(UV)被广泛用于成形,连接,机械加工等过程中,以实现声学软化效果。对于小尺寸的零件,具有有限输出能量的UV非常适合微成型工艺,并已越来越受到关注。在这项研究中,分别使用不同厚度和晶粒尺寸的GB 5052薄板进行了紫外线辅助的单轴拉伸实验。从声能激活位错的角度分析了紫外线和样品尺寸对材料性能的耦合作用。对于现有的紫外线声软化效果,发现流应力的降低。此外,当关闭UV时,将显示UV的残留效果。可以通过增加紫外线的硬化指数来提高薄片的均匀变形能力。实验结果表明,UV对于改善微片成形中的成形极限是非常有帮助的,例如,微凸起和深冲过程。

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