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Evaluation of Analysis Techniques for Fluted-Core Sandwich Cylinders

机译:笛芯夹芯圆筒分析技术的评价

摘要

Buckling-critical launch-vehicle structures require structural concepts that have high bending stiffness and low mass. Fluted-core, also known as truss-core, sandwich construction is one such concept. In an effort to identify an analysis method appropriate for the preliminary design of fluted-core cylinders, the current paper presents and compares results from several analysis techniques applied to a specific composite fluted-core test article. The analysis techniques are evaluated in terms of their ease of use and for their appropriateness at certain stages throughout a design analysis cycle (DAC). Current analysis techniques that provide accurate determination of the global buckling load are not readily applicable early in the DAC, such as during preliminary design, because they are too costly to run. An analytical approach that neglects transverse-shear deformation is easily applied during preliminary design, but the lack of transverse-shear deformation results in global buckling load predictions that are significantly higher than those from more detailed analysis methods. The current state of the art is either too complex to be applied for preliminary design, or is incapable of the accuracy required to determine global buckling loads for fluted-core cylinders. Therefore, it is necessary to develop an analytical method for calculating global buckling loads of fluted-core cylinders that includes transverse-shear deformations, and that can be easily incorporated in preliminary design.
机译:临界屈曲的运载工具结构需要具有高弯曲刚度和低质量的结构概念。凹槽芯,也称为桁架芯,夹心结构就是这样一种概念。为了确定一种适合于带槽芯圆柱体初步设计的分析方法,本论文介绍并比较了应用于特定复合带槽芯测试制品的几种分析技术的结果。在整个设计分析周期(DAC)的某些阶段,将根据分析技术的易用性和适当性对分析技术进行评估。提供准确确定全局屈曲载荷的当前分析技术在DAC早期(例如在初步设计期间)并不容易应用,因为它们运行成本太高。在初步设计中很容易采用忽略横向剪切变形的分析方法,但是缺乏横向剪切变形会导致总体屈曲载荷预测值明显高于更详细的分析方法。当前的技术水平要么太复杂以至于不能用于初步设计,要么不能确定为槽形芯圆柱体确定整体屈曲载荷所需的精度。因此,有必要开发一种计算方法,以计算包括横向剪切变形在内的带槽芯圆柱的整体屈曲载荷,并且该方法可以轻松地纳入初步设计中。

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