首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Universal bounds on the electrical and elastic response of two-phase bodies and their application to bounding the volume fraction from boundary measurements
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Universal bounds on the electrical and elastic response of two-phase bodies and their application to bounding the volume fraction from boundary measurements

机译:两相物体的电和弹性响应的通用界及其在边界测量中限制体积分数的应用

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Universal bounds on the electrical and elastic response of two-phase (and multiphase) ellipsoidal or parallelopipedic bodies have been obtained by Nemat-Nasser and Hori. Here we show how their bounds can be improved and extended to bodies of arbitrary shape. Although our analysis is for two-phase bodies with isotropic phases it can easily be extended to multiphase bodies with anisotropic constituents. Our two-phase bounds can be used in an inverse fashion to bound the volume fractions occupied by the phases, and when the volume fraction is asymptotically small reduce to those of Capdeboscq and Vogelius, for electrical conductivity, and Capdeboscq and Kang, for elasticity. Other volume fraction bounds derived here utilize information obtained from thermal, magnetic, dielectric or elastic responses. One bound on the volume fraction can be obtained by simply immersing the body in a water filled cylinder with a piston at one end and measuring the change in water pressure when the piston is displaced by a known small amount. This bound may be particularly effective for estimating the volume of cavities in a body. We also obtain new bounds utilizing just one pair of (voltage, flux) electrical measurements at the boundary of the body.
机译:Nemat-Nasser和Hori已获得两相(和多相)椭圆形或平行六面体的电和弹性响应的通用界。在这里,我们展示了如何改善其边界并将其扩展到任意形状的物体。尽管我们的分析是针对具有各向同性相的两相体,但可以轻松地扩展到具有各向异性成分的多相体。我们的两相界可以反向使用,以约束各相所占的体积分数,并且当体积分数渐近变小时,对于电导率,请减小到Capdeboscq和Vogelius的弹性,对于Capdeboscq和Kang的弹性,是弹性的。此处导出的其他体积分数范围利用了从热,磁,介电或弹性响应中获得的信息。通过简单地将主体浸入到一端装有活塞的充满水的圆柱体中,并测量活塞位移小已知量时水压的变化,可以得出体积分数的界线。该边界对于估计体内空腔的体积可能特别有效。我们还利用在人体边界处的一对(电压,磁通)电气测量值获得了新的边界。

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