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Stress field in a porous material containing periodic arbitrarily-shaped holes with surface tension

机译:多孔材料中的应力场,其含有周期性的任意形状的孔,具有表面张力

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In the mechanical analysis of a structure/composite with periodic holes/inhomogeneities based on analytic techniques, the holes/inhomogeneities are usually assumed to be circular. In this paper, we develop an efficient method (based on complex variable techniques) to calculate the surface tension-induced stress field in a porous material containing a periodic array of unidirectional holes of arbitrary shape. In this method, we use conformal mapping and Faber series techniques to address a finite representative unit cell (RUC) consisting of a single arbitrarily-shaped hole with a constant surface tension imposed on the hole's boundary and periodic deformations imposed on the edge of the RUC. Several numerical examples are presented to verify the accuracy of our method and to study the influence of the shape and volume fraction of the periodic holes on the stress concentration in the structure. We show that the maximum hoop stress around periodic holes of some shapes (such as triangle, pentagon or hexagon) may appear exactly at the point(s) of maximum curvature when the hole volume fraction exceeds a certain value. Moreover, when the hole volume fraction falls below about 7%, it is found that the surface tension-induced stress concentration around periodic holes can be treated approximately as that around a single hole with the same hole shape and size in an infinite plane.
机译:在基于分析技术的周期孔/不均匀性的结构/复合材料的机械分析中,通常假设孔/不均匀性是圆形的。在本文中,我们开发了一种有效的方法(基于复杂的可变技术),以计算含有多孔材料中的表面张力诱导的应力场,其包含任意形状的周期性孔的周期性阵列。在该方法中,我们使用共形映射和Faber系列技术来解决由单个任意形状的孔组成的有限代表性单元电池(RUC),该孔具有施加在孔的边界和周期性变形上施加在RUC的边缘上的周期性变形的恒定表面张力。提出了几个数值例子以验证我们方法的准确性,并研究周期孔的形状和体积分数对结构中应力集中的影响。我们表明,当孔体积分数超过一定值时,某些形状的周期孔周围的最大箍应力可能恰好在最大曲率的时刻显示。此外,当空穴体积分数低于约7%时,发现周期孔周围的表面张力引起的应力浓度可以大致围绕单个孔处理,其在无限平面中具有相同的孔形状和尺寸。

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