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The elasticity and failure of fluid-filled cellular solids: Theory and experiment

机译:充液多孔固体的弹性和破坏:理论与实验

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摘要

We extend and apply theories of filled foam elasticity and failure to recently available data on foods. The predictions of elastic modulus and failure mode dependence on internal pressure and on wall integrity are borne out by photographic evidence of distortion and failure under compressive loading and under the localized stress applied by a knife blade, and by mechanical data on vegetables differing only in their turgor pressure. We calculate the dry modulus of plate-like cellular solids and the cross over between dry-like and fully fluid-filled elastic response. The bulk elastic properties of limp and aging cellular solids are calculated for model systems and compared with our mechanical data, which also show two regimes of response. The mechanics of an aged, limp beam is calculated, thus offering a practical procedure for comparing experiment and theory. This investigation also thereby offers explanations of the connection between turgor pressure and crispness and limpness of cellular materials.
机译:我们将填充泡沫的弹性和破坏理论扩展到最新的食品数据中。弹性模量和破坏模式对内压和壁完整性的依赖关系的预测,是通过在压缩载荷下和在刀片施加的局部应力作用下的变形和破坏的照相证据,以及关于蔬菜的机械数据(仅它们的差异)来证明的膨胀压力。我们计算了板状多孔固体的干模量以及干状和完全充满流体的弹性响应之间的交点。计算了模型系统的li行和老化的细胞固体的整体弹性,并与我们的力学数据进行了比较,这些数据还显示了两种响应方式。计算了老化的li行横梁的力学,从而为比较实验和理论提供了实用的程序。因此,该研究还提供了膨胀压力与多孔材料的脆性和柔软性之间的联系的解释。

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