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Buckling Design Studies of Inverted, Oblate Bulkheads for a Propellant Tank

机译:推进剂舱倒扁圆隔板的屈曲设计研究

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摘要

An investigation of the deformation and buckling characteristics of a composite, oblate bulkhead that has an inverted geometry and is subjected to pressure-only loading is presented for three bulkhead geometries and thicknesses. The effects of a stiffening support ring at the bulkhead to cylinder interface are also evaluated. Buckling analyses conducted using the axisymmetric shell code BOSOR4 are discussed for several bulkhead configurations. These results are analytically verified using results from the Structural Analysis of General Shells (STAGS) code for a selected bulkhead configuration. The buckling characterization of an inverted, oblate bulkhead requires careful attention as small changes in bulkhead parameters can have a significant effect on the critical buckling load. Comparison of BOSOR4 and STAGS results provided a very good correlation between the two analysis methods. In addition, the analysis code BOSOR4 was found to be an efficient sizing tool that is useful during the preliminary design stage of a practical shell structure. Together, these two aspects should give the design engineer confidence in sizing these stability critical structures. Additional characterization is warranted, especially for a composite tank structure, since only one bulkhead configuration was examined closely.
机译:针对三种隔板几何形状和厚度,研究了具有倒置几何形状且仅承受压力载荷的复合扁圆形隔板的变形和屈曲特性。还评估了隔板和气缸界面处的加强支撑环的作用。对于几种隔板配置,讨论了使用轴对称壳体代码BOSOR4进行的屈曲分析。使用选定的舱壁配置的通用壳体结构分析(STAGS)代码的结果对这些结果进行了分析验证。倒扁扁的舱壁的屈曲特性需要引起特别注意,因为舱壁参数的微小变化会严重影响临界屈曲载荷。 BOSOR4和STAGS结果的比较提供了两种分析方法之间的很好的相关性。此外,分析代码BOSOR4被发现是一种有效的尺寸确定工具,在实际壳结构的初步设计阶段非常有用。这两个方面在一起,应该使设计工程师对确定这些稳定性关键结构的大小充满信心。由于仅仔细检查了一个舱壁配置,因此,特别是对于复合罐结构,还需要进行其他表征。

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