Through-thickness stress in curved laminates of single- and double-skinned construction

S. McRobbie, A.J. Longmuir, J. Wilcox, A.G. Gibson, H.W. Chandler
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引用次数: 13

Abstract

This paper is concerned with the calculation of through-thickness stresses in components in the form of curved shells and then describes the determination of the through-thickness strengths of some fibre-reinforced tubes. The through-thickness stresses in thin shells are often assumed to be zero and this is normally justified by the fact that they are much lower than the in-plane stresses. However, if the shell is of laminated construction, the through-thickness strength can also be relatively low compared with the in-plane strength, so even small levels of tensile stress in the through-thickness direction can lead to damage by delamination. This paper first presents an equilibrium method of calculating the normal and shear components of these stresses for singly curved shells and rings of single- or double-skin construction. The formulae derived are then used to analyse a delamination test in the form of a split ring which is then used to determine the delamination strength of a number of filament wound tubes with various matrix compositions and lay-up geometries. As the changes in curvature can be large, the entire formulation is presented in terms of the current (deformed) coordinate system and the Cauchy stress.

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单层和双层结构弯曲层压板的通厚应力
本文首先计算了弯壳结构构件的通厚应力,然后介绍了几种纤维增强管的通厚强度的计算方法。薄壳的全厚应力通常被假设为零,这通常是由它们比面内应力低得多的事实来证明的。然而,如果壳是层合结构,那么其穿过厚度强度也可能相对于平面强度较低,因此即使在穿过厚度方向上很小的拉应力水平也会导致分层损伤。本文首先提出了一种计算单曲面壳和单或双表皮结构环的这些应力的法向和剪切分量的平衡方法。然后,推导出的公式用于分析劈裂环形式的分层测试,然后用于确定具有各种基体成分和叠层几何形状的许多长丝缠绕管的分层强度。由于曲率变化可能很大,因此整个公式以当前(变形)坐标系和柯西应力的形式表示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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