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Transverse stress decay in a specially orthotropic strip under localized normal edge loading

机译:局部正交法向荷载作用下特殊正交各向异性带材中的横向应力衰减

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Solutions are presented for the stresses in a specially orthotropic infinite strip which is subjected to localized uniform normal loading on one edge while the other edge is either restrained against normal displacement only, or completely fixed. The solutions are used to investigate the diffusion of load into the strip and in particular the decay of normal stress across the width of the strip. For orthotropic strips representative of a broad range of balanced and symmetric angle-ply composite laminates, minimum strip widths are found that ensure at least 90% decay of the normal stress across the strip. In addition, in a few cases where, on the fixed edge the peak shear stress exceeds the normal stress in magnitude, minimum strip widths that ensure 90% decay of both stresses are found. To help in putting these results into perspective, and to illustrate the influence of material properties on load diffusion in orthotropic materials, closed-form solutions for the stresses in similarly loaded orthotropic half-planes are obtained. These solutions are used to generate illustrative stress contour plots for several representative laminates. Among the laminates, those composed of intermediate-angle plies, i.e., from about 30° to 60°, exhibit marked changes in normal stress contour shape with stress level. The stress contours are also used to find 90% decay distances in the half-planes. In all cases, the minimum strip widths for 90% decay of the normal stress exceed the 90% decay distances in the corresponding half-planes, in amounts ranging from only a few percent to about 50% of the half-plane decay distances. The 90% decay distances depend on both material properties and the boundary conditions on the supported edge.
机译:提出了一种特殊正交异性无限条带中应力的解决方案,该条带在一个边缘上承受局部均匀的法向载荷,而另一条边缘仅受制于法向位移,或者完全固定。这些解决方案用于研究载荷在带材中的扩散,尤其是在带材整个宽度上法向应力的衰减。对于代表广泛范围的平衡和对称角-层复合材料层压板的正交各向异性带材,发现最小带材宽度可确保整个带材上的法向应力衰减至少90%。另外,在少数情况下,在固定边缘上的峰值剪切应力在大小上超过了法向应力,找到了确保两种应力衰减90%的最小条带宽度。为了帮助将这些结果放到透视图中,并说明材料特性对正交异性材料中载荷扩散的影响,获得了载荷相似的正交异性半平面中应力的闭合形式解。这些解决方案用于为几个代表性的层压板生成说明性的应力轮廓图。在层压板中,由中间夹层即约30°至60°构成的层压板在法向应力轮廓形状中随应力水平表现出明显的变化。应力等值线还用于在半平面中找到90%的衰减距离。在所有情况下,法向应力90%衰减的最小条带宽度超过相应半平面中90%的衰减距离,其量仅为半平面衰减距离的百分之几到大约50%。 90%的衰减距离取决于材料特性和支撑边缘的边界条件。

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