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Drawing potential of fiber metal laminates in hydromechanical forming: A numerical and experimental study

机译:纤维金属层压板在流体力学形成中的借鉴潜力:数值和实验研究

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摘要

It is known that fiber metal laminates as one of hybrid materials with thin metal sheets and fiber/resin layers have limited formability in conventional forming methods. This paper presents an experimental and numerical study for drawability of glass fiber-reinforced aluminum laminates under hydromechanical drawing technique. Fiber metal laminates comprised of a layer of woven glass fiber-reinforced prepreg, sandwiched between two layers of aluminum alloy. In order to produce fiber metal laminates, the laminates were subjected to a sufficient squeezing pressure under a controlled heating time and temperature by using a hydraulic hot press. A hydromechanical tooling equipped with blank-holder force and fluid pressure control system was used to form the initial circular fiber metal laminate blank. Finally, the effect of parameters such as pre-bulging pressure, final chamber pressure, and drawing ratio on process variables was evaluated. Also, the characteristic curve of hydromechanical drawing of fiber metal laminate i.e. chamber pressure in terms of drawing ratio was achieved by means of experimental tests and numerical simulations. The results showed that the maximum drawing ratio of defect-free fiber metal laminates, namely without any tearing, wrinkling, and delamination was obtained at pre-bulging and chamber pressure of 35 and 80 bar, respectively.
机译:已知纤维金属层压板作为具有薄金属板和纤维/树脂层的杂交材料之一,其在常规成形方法中具有有限的成形性。本文介绍了水质力学拉伸技术下玻璃纤维增​​强铝层压板的拉伸性的实验和数值研究。由一层编织玻璃纤维增​​强的预浸料坯组成,玻璃金属层叠层夹在两层铝合金之间。为了生产纤维金属层压材料,通过使用液压热压机在受控加热时间和温度下对层压板进行足够的挤压压力。配备有空白支架力和流体压力控制系统的流体力学工具用于形成初始圆形纤维金属层压坯料。最后,评估了诸如预凸出压力,最终腔室压力和拉伸比上的参数的影响。而且,通过实验测试和数值模拟实现了纤维金属层压板的流体机械图的特性曲线。腔室压力在拉伸比中实现。结果表明,无缺陷纤维金属层压板的最大拉伸比,即没有任何撕裂,皱纹和分层,分别在35和80巴的预凸出和腔室压力下获得。

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