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首页> 外文期刊>Materials Science and Engineering >Indentation of metallic foam core sandwich panels with soft aluminium face sheets
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Indentation of metallic foam core sandwich panels with soft aluminium face sheets

机译:带有软铝面板的金属泡沫芯夹芯板的压痕

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摘要

A closed-form analytical model is presented for the deformation and fracture behaviour of sandwich panels with ductile foam cores and low yield-strength face sheets when subjected to quasi-static indentation with hemispherical indenters of various diameters and compared with an extensive experimental investigation. The aim is to predict the indentation strength and the influence of the indenter size on it. The face sheet is assumed an isotropic thin sheet undergoing large tensile deformation and bonded to a rigid-plastic foundation. The indentation strength of the sandwich panel is presented as a superposition of the force contributions of the skin, the foam core and the interfacial shear at the skin-foam interface at the point of skin fracture. To validate the model, sandwich panels with 0.32 mm thick sheets of AA 1100-0 aluminium alloy and aluminium closed-cell foam core are quasi-statically indented with spherical indenters of 10,15 and 20 mm diameters. It is established that failure of the sandwich panels is governed by radial skin fracture, and that the indenter size and the foam resistance greatly influence the indentation response as larger indenters are associated with higher failure loads. A simple parameter for system failure is ascertained, the subtended angle at the indenter-skin contact, which is dependent on the product of the indenter radius and the foam compressive strength. The developed model closely predicts the experimental load-displacement history and the failure loads and may be applied to any thin soft sheets bonded to a rigid-plastic foundation, and thus, to other sandwich constructions of similar constituents.
机译:针对具有延展性泡沫芯和低屈服强度面板的夹芯板在各种直径的半球形压头下进行准静态压痕时的变形和断裂行为,提出了一种封闭形式的分析模型,并与大量的实验研究进行了比较。目的是预测压痕强度以及压头尺寸对其的影响。假定面板是各向同性的薄板,该薄板经历大的拉伸变形并粘结到刚性塑料基础上。夹心板的压痕强度表示为皮肤,泡沫芯和在皮肤泡沫点处在皮肤-泡沫界面处的界面剪切的力贡献的叠加。为了验证模型,将厚度为0.32 mm的AA 1100-0铝合金板和铝闭孔泡沫芯的夹心板准静态压入直径为10,15和20 mm的球形压头。可以确定的是,夹层板的破坏是由径向的皮肤破裂控制的,并且压头的尺寸和泡沫阻力极大地影响了压痕的响应,因为较大的压头与较高的破坏载荷有关。确定系统故障的简单参数,即压头与皮肤接触处的对角,该角度取决于压头半径与泡沫抗压强度的乘积。所开发的模型可以密切预测实验载荷位移历史和破坏载荷,并且可以应用于粘结到刚性塑料基础上的任何薄软板,从而应用于相似成分的其他夹心结构。

著录项

  • 来源
    《Materials Science and Engineering》 |2012年第15期|p.175-185|共11页
  • 作者单位

    School of Materials Science and Engineering, The University of New South Wales, ARC Centre of Excellence for Design in Light Metals, Sydney, NSW 2052, Australia;

    School of Materials Science and Engineering, The University of New South Wales, ARC Centre of Excellence for Design in Light Metals, Sydney, NSW 2052, Australia;

    School of Materials Science and Engineering, The University of New South Wales, ARC Centre of Excellence for Design in Light Metals, Sydney, NSW 2052, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sandwich panels; indentation; hemispherical indenters; drawing theory;

    机译:夹心板;缩进;半球形压头;绘画理论;

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