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Experimental and numerical analysis of titanium/aluminum clad metal sheets in sheet hydroforming

机译:薄板液压成形钛铝复合板的实验与数值分析

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摘要

Clad metals are becoming increasingly emphasized in sheet metal applications. In this research, sheet hydroforming process (SHF) was adopted to improve the formability of Ti/Al clad metal sheets and SUS 304 metal sheets used in computer, communication, and consumer product housings. Both finite element simulation and experimental verification were carried out to investigate the deformation of blanks. Several significant process parameters, such as holding force, friction, counter pressure history, and blank dimensions, were discussed for improving the formability of the two metal sheets. In SHF simulation, a virtual film technique was proposed to realistically approach the hydraulic loading condition during SHF. Finally, the deformed shape and thickness distribution of parts manufactured with SHF were compared with the results of simulation. Good agreements were obtained.
机译:覆金属在钣金应用中越来越受到重视。在这项研究中,采用片材液压成形工艺(SHF)来改善用于计算机,通信和消费品外壳的Ti / Al复合金属板和SUS 304金属板的可成形性。进行了有限元模拟和实验验证,以研究毛坯的变形。讨论了几个重要的工艺参数,例如保持力,摩擦力,反压力历程和毛坯尺寸,以提高两个金属板的可成形性。在SHF仿真中,提出了一种虚拟胶片技术来逼近SHF期间的水力加载条件。最后,将用SHF制造的零件的变形形状和厚度分布与仿真结果进行了比较。获得了良好的协议。

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