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ILLUSTRATING MEMBRANE-DOMINATED REGIMES IN PRESSURIZED THIN SHELLS

机译:说明加压薄壳中的膜主导地区

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摘要

Pressurized thin-wall structures cover a broad range of applications, including storage tanks, pressurized rubber flood barriers, and large span enclosures. To accurately model such structures, the analyst must select the appropriate mechanical formulation (e.g. membrane vs shell). Membranes are assumed to have negligible bending stiffness and respond to compression by wrinkling; shells resist axial compression (before buckling) and bending efficiently. While theoretical research on these differences is vast, this study aims to explicitly clarify the consequences of this choice and permit a comparison of error between membrane and shell formulations. Therefore, this paper presents a parametric study of canonical pressurized thin-wall structural geometries (i.e. semi-cylinder, hemisphere) to illustrate the transitions between membrane and bending dominant behavior. The mathematical models of a pneumatic 5-parameter shell and membrane are presented and employed to quantify the effects of variables such as thickness and geometry on the amount of membrane, bending, and shear energy. The effects of inflation pressure, self-weight, and hydrostatic loads are also considered. The graphical results, presented in terms of dimensionless quantities in the design space, are general and should be of interest to the theorist and practitioner alike.
机译:加压薄壁结构涵盖了广泛的应用,包括储罐,加压橡胶防洪障碍和大跨度外壳。为了准确地模拟这种结构,分析师必须选择合适的机械制剂(例如膜VS壳)。假设膜具有可忽略的弯曲刚度并通过皱纹反应压缩;壳体抵抗轴向压缩(屈曲前)和有效弯曲。虽然对这些差异的理论研究是巨大的,但本研究旨在明确澄清这种选择的后果,并允许比较膜和壳配方之间的误差。因此,本文介绍了规范加压薄壁结构几何形状(即半圆柱,半球)的参数研究,以说明膜与弯曲显性行为之间的过渡。提出了一种气动5-比参数壳和膜的数学模型,并采用诸如膜,弯曲和剪切能量的变量和几何形状的效果。还考虑了充气压力,自重和静水载荷的影响。在设计空间中的无量纲量方面提出的图形结果是一般的,并且应该对理论者和从业者相似地感兴趣。

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