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BUCKLING OF COMPOUND SPHERICAL - TOROIDAL SHELLS UNDER EXTERNAL PRESSURE

机译:外压作用下复合球形环壳的屈曲。

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Buckling of shallow spherical shells made from composites, and subjected to external pressure, can be a design limitation in a number of applications, e.g., in pressure safety devices, shallow mirrors, energy concentrators/inflatable space antenna.The magnitude of buckling pressure in shallow spherical caps is strongly dependant on the boundary conditions applied at the cap's outer edge. The current paper examines the use of toroidal shells with closed, circular and non-circular cross-sections, as means of supporting/constraining the outer edge of the cap. This implicitly aims at preventing buckling of the cap or at increasing the cap's buckling load. The toroids can also be internally pressurized, differently laminated, etc. Additionally the point of cap's attachment can be chosen in such a way that buckling load is as large as possible. The effect of some of these parameters on the buckling pressures of spherical caps is quantified. This is an entirely numerical study.
机译:由复合材料制成的并经受外部压力的浅球形壳体的屈曲在许多应用中可能是设计上的限制,例如在压力安全装置,浅镜,能量集中器/可充气空间天线中。 浅球形瓶盖的屈曲压力大小强烈取决于瓶盖外缘的边界条件。本文研究了使用具有封闭,圆形和非圆形横截面的环形壳作为支撑/约束盖的外边缘的方法。这隐含地旨在防止盖的屈曲或增加盖的屈曲载荷。环形线圈也可以在内部加压,不同地层压等。此外,可以以使得屈曲载荷尽可能大的方式选择帽的附接点。量化了其中一些参数对球形盖屈曲压力的影响。这是一个完全数值研究。

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