首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >In situ microtensile testing and X-ray microtomography-based finite element modelling of open-cell metal foam struts and sandwich panels
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In situ microtensile testing and X-ray microtomography-based finite element modelling of open-cell metal foam struts and sandwich panels

机译:开孔金属泡沫支柱和夹芯板的原位微拉伸试验和基于X射线显微照相的有限元建模

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Microtensile testing was used to determine the mechanical properties of individual aluminium alloy foam struts. Finite element modelling of as-tested struts was carried out using X-ray microtomography scans of the undeformed struts to define the geometry. Strut deformation was described by continuum viscoplastic damage constitutive equations calibrated by microtensile test data of the aluminium alloy in its optimally aged condition. The as-tested strut finite element model was used to develop a procedure that compensates for the effect of grip slippage inherent in the microtensile testing of metal foam struts, which results in a considerable reduction in observed elastic stiffness compared to the typical value of 70 GPa for aluminium alloys. The calibrated constitutive equations were then implemented in finite element models of sandwich panels with the aluminium metal foam as its core material. The finite element models were used in simulations of cases of low energy impact to represent tool drop conditions in order to investigate the suitability of new wing skin designs using metal foam core sandwich panels. An optimal strut aspect ratio was identified through simulation that provides the greatest energy absorption per unit mass while ensuring core damage is accurately reflected by face-sheet deformation, which is necessary for detection and repair.
机译:使用微拉伸试验来确定各个铝合金泡沫支柱的机械性能。使用X射线显微断层扫描扫描未变形的支撑杆来确定几何形状,对被测支撑杆进行有限元建模。通过在最佳时效条件下铝合金的微拉伸试验数据校准的连续粘塑性损伤本构方程来描述支撑杆变形。测试的支撑杆有限元模型用于开发一种程序,该程序补偿了金属泡沫支撑杆的微拉力测试中固有的抓地力滑移的影响,与典型值70 GPa相比,观察到的弹性刚度大大降低用于铝合金。然后,在以泡沫铝为核心材料的夹芯板的有限元模型中实施了校正后的本构方程。有限元模型用于模拟低能冲击情况,以表示工具掉落情况,以研究使用金属泡沫芯夹芯板的新型机翼蒙皮设计的适用性。通过仿真确定了最佳的支柱长宽比,可以提供最大的每单位质量能量吸收,同时确保通过面板变形准确反映芯部损坏,这对于检测和修复是必不可少的。

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