首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Surface tension-induced stress concentration around a nanosized hole of arbitrary shape in an elastic half-plane
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Surface tension-induced stress concentration around a nanosized hole of arbitrary shape in an elastic half-plane

机译:表面张力在弹性半平面内任意形状的纳米孔周围引起的应力集中

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This paper studies surface tension-induced stress concentration around a nanosized hole of arbitrary shape inside an elastic half-plane. Of particular interest is the maximum hoop stress on the hole’s boundary with relation to the point of maximum curvature and the distance between the hole and the free surface of the half-plane. The shape of the hole is characterized by a conformal mapping which maps the exterior of the hole onto the exterior of the unit circle in the image plane. On using the technique of conformal mapping and analytic continuation, the complex potentials of the half-plane are expressed in a series form with unknown coefficients to be determined by Fourier expansion method. Detailed numerical results are shown for elliptical, triangular, square and rectangular holes. Two basic conclusions are that the hoop stress increases with decreasing hole size and the maximum hoop stress generally appears nearby but not exactly at the point of maximum curvature. In addition, it is shown that the hoop stress nearby the point of maximum curvature on the hole’s boundary increases rapidly with decreasing distance between the hole and the free surface of the half-plane. On the other hand, if the distance between the hole and the free surface is more than three times the hole size, the effect of the free surface on the stress concentration around the hole is ignorable and the elastic half-plane can be treated approximately as an elastic whole plane.
机译:本文研究了在弹性半平面内任意形状的纳米孔周围表面张力引起的应力集中。特别令人感兴趣的是,相对于最大曲率点以及孔与半平面自由表面之间的距离,孔边界上的最大环向应力。孔的形状的特征在于共形映射,该共形映射将孔的外部映射到像平面中的单位圆的外部。在利用保角映射和解析连续化技术的基础上,半平面的复数电位以具有未知系数的序列形式表示,可以通过傅里叶展开法确定。显示了椭圆,三角形,正方形和矩形孔的详细数值结果。两个基本结论是,环向应力会随着孔尺寸的减小而增加,并且最大环向应力通常会出现在最大曲率点附近,但并不精确。此外,结果表明,孔边界处最大曲率点附近的环向应力会随着孔与半平面自由表面之间距离的减小而迅速增加。另一方面,如果孔与自由表面之间的距离大于孔尺寸的三倍,则可忽略自由表面对孔周围应力集中的影响,并且可以将弹性半平面大致视为弹性的整个平面。

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