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Finite element analysis of the effect of flexible pad on the deformation of metal foils in flexible pad laser shock microforming

机译:柔性垫对柔性焊盘激光冲击微造型金属箔变形效果的有限元分析

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Flexible Pad Laser Shock Forming (FPLSF) is a new microforming process using laser-induced shock pressure and a flexible pad. This process involves high strain-rate (~10~5 s~(-1)) plastic deformation of metallic foils along with the hyperelastic deformation of the flexible elastomer pad over which the foil is positioned. This paper studies the influence of flexible pad on the Shockwave propagation behavior and the plastic deformation of metal foil in FPLSF using finite element analysis. The effect of flexible pad materials such as silicone rubber, polyurethane rubber and natural rubber on the deformation of copper foils has been analysed in detail. An increase in crater depth is observed with the reduction in flexible pad hardness. However, it is found that there exists an optimum hardness of the flexible pad to achieve perfect hemispherical craters on metal foils, as bending of foils at non-deformed region is observed with softer pads whereas flattening of crater surface occurs with harder pads. The effect of flexible pad thickness on the foil deformation was analyzed at six different thickness levels: 300 μm, 600 μm, 900 μm, 1200 urn, 1500μm, and 2000 urn. Similarly, there exists an optimum flexible pad thickness to maximize the crater depth and achieve the hemispherical shapes. Analysis of flexible pad thickness indicates that the pad thickness influences the elastic recovery of the flexible pad and hence the plastic deformation of the metallic foils.
机译:柔性焊盘激光冲击成型(FPLSF)是一种新的微碎片工艺,使用激光感应冲击压力和柔性垫。该过程涉及高应变率(〜10〜5s〜(-1))金属箔的塑性变形以及箔在其定位的柔性弹性体垫的超复杂变形。本文采用有限元分析研究柔性垫对电力垫对冲击波传播行为的影响和FPLSF中金属箔的塑性变形。柔性垫材料如硅橡胶,聚氨酯橡胶和天然橡胶在铜箔变形上的影响已经详细分析。通过减少柔性垫硬度来观察到陨石坑深度的增加。然而,发现柔性垫的最佳硬度,以在金属箔上实现完美的半球形陨石坑,因为用更柔软的垫观察在非变形区域处的箔的弯曲,而火山口表面的扁平化用更硬的垫。在六种不同的厚度水平下分析柔性垫厚度对箔变形的影响:300μm,600μm,900μm,1200瓮,1500μm和2000瓮。类似地,存在最佳的柔性垫厚度,以最大化火山口深度并实现半球形。柔性焊盘厚度的分析表明焊盘厚度影响柔性垫的弹性恢复,从而影响金属箔的塑性变形。

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