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Buckling of externally pressurised egg-shaped shells with variable and constant wall thicknesses

机译:壁厚可变和恒定的外部受压蛋形壳的屈曲

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摘要

This study focused on the nonlinear elastic buckling of mass equivalent egg-shaped shells with variable and constant wall thicknesses under uniform external pressure. The shells were made of photosensitive resin and had a nominal mass of 570 g, a nominal major axis of 260.36 mm, and a nominal minor axis of 181.32 mm. Four egg shaped shells were fabricated using the aforementioned parameters and using the rapid prototype technique stereo lithography appearance. Two shells had a constant wall thickness, whereas the remaining shells had a variable wall thickness along the meridian. The geometry of all shells was accurately measured, and the shells were slowly pressurised to destruction, thus yielding good repeatability. On the basis of the measured results, the buckling performance of the tested shells was further studied numerically. The experimental data were found to be in agreement with the numerical predictions. The results revealed that the average collapse pressure for the egg-shaped shells with variable wall thickness was approximately 24% higher than that for the egg-shaped shells with constant wall thickness, thus indicating that the load-carrying capacity of the egg-shaped shells was significantly improved when variable thickness was used.
机译:这项研究的重点是在均匀外压下具有可变和恒定壁厚的等价蛋形壳的非线性弹性屈曲。壳体由光敏树脂制成,标称质量为570 g,标称长轴为260.36 mm,标称短轴为181.32 mm。使用上述参数并使用快速原型技术立体光刻外观制造了四个蛋形壳。两个壳的壁厚恒定,而其余的壳沿子午线的壁厚却可变。精确测量所有壳体的几何形状,然后将壳体缓慢加压至破坏,从而产生良好的可重复性。根据测量结果,对被测壳体的屈曲性能进行了数值研究。发现实验数据与数值预测一致。结果表明,壁厚可变的蛋形壳的平均崩溃压力比壁厚恒定的蛋形壳的平均崩溃压力高约24%,这表明蛋形壳的承载能力当使用可变厚度时,涂层的抗腐蚀性明显改善。

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