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首页> 外文期刊>Quarterly of Applied Mathematics >TWO TYPES OF ELECTRIC FIELD ENHANCEMENTS BY INFINITELY MANY CIRCULAR CONDUCTORS ARRANGED CLOSELY IN TWO PARALLEL LINES
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TWO TYPES OF ELECTRIC FIELD ENHANCEMENTS BY INFINITELY MANY CIRCULAR CONDUCTORS ARRANGED CLOSELY IN TWO PARALLEL LINES

机译:两种类型的电场通过无限的许多圆形导体在两个平行线上布置

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摘要

In stiff fiber-reinforced composites, high shear stress concentrations occur in narrow regions between neighboring fibers. Electric fields and conductors correspond to shear stresses and cross-sections of fibers respectively in the anti-plane shear model. Due to material failure of composites, there have been intensive studies so far to estimate an electric field in between only a finite number of conductors. Indeed, the composites contain a large number of stiff fibers, and the concentration can be strongly enhanced by some combinations of inclusions. Two types of enhancements in parallel and perpendicular directions by a combination of infinitely many inclusions in a line are the main subjects of this paper. We thus consider the electric fields in between a infinite number of perfectly conducting unit disks arranged closely and regularly in two parallel lines. Asymptotes and optimal blow-up rates for the fields in two kinds of narrow regions are obtained in terms of the distances between conductors. In particular, very strong enhancement in the parallel direction is exhibited to have the blow-up rate substantially different from the existing result in the case of finite inclusions.
机译:在硬纤维增强复合材料中,在相邻纤维之间的窄区域中发生高剪切应力浓度。电场和导体分别对应于剪切应力和分别在反平面剪切模型中的纤维横截面。由于复合材料的材料故障,到目前为止已经有密集的研究,以估计仅在有限数量的导体之间的电场。实际上,复合材料含有大量的硬纤维,可以通过一些夹杂物组合强大地增强浓度。通过一条线的无限许多夹杂物的组合是平行和垂直方向的两种类型的增强是本文的主要主题。因此,我们认为电场在无限数量的完美导电单元盘之间,其在两个平行线上紧密地和规则地布置。在导体之间的距离方面获得了两种窄区域的渐近和最佳爆破速率。特别地,展示了平行方向上的非常强大的增强,以使爆破速率与有限夹杂物的情况基本上不同于现有的结果。

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