首页> 外文期刊>International Journal of Pressure Vessels and Piping >Experimental and numerical studies on the buckling of the hemispherical shells made of maraging steel subjected to extremely high external pressure
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Experimental and numerical studies on the buckling of the hemispherical shells made of maraging steel subjected to extremely high external pressure

机译:对钢制钢制型钢弯曲的实验和数值研究经受极高的外压

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This work is devoted to the nonlinear buckling of the hemispherical shells subjected to extremely high external pressure. The shells are made of maraging steel with yield strength of 2100 MPa. The experiment on a tentatively devised laboratory-scale hemispherical shell is conducted in high pressure chamber, after preciously fabricated, optically and ultrasonically measured. Numerical predictions are carried out and proved to have a good agreement with experimental results. The laboratory-scale hemispherical shell can borne the pressure as high as about 139 MPa and demonstrates an unstable post-buckling character and a local dimple post-buckling mode near the base. Based on the study, a segmented hemispherical configuration is conceived and evaluated numerically, which can provide a reference for the deep-sea pressure hull design made of maraging steel.
机译:这项工作致力于使半球壳受到极高的外部压力的非线性屈曲。 壳由屈服钢制成,屈服强度为2100MPa。 暂定设计的实验室标度半球形壳的实验在高压室进行,经过真正制造,光学和超声测量。 进行了数值预测,并证明了与实验结果具有良好的一致性。 实验室标度半球形壳体可以承载高达约139MPa的压力,并在底座附近展示了一个不稳定的后屈曲特性和局部凹凸后屈曲模式。 基于该研究,在数控上构思和评估分段的半球形配置,这可以为由钢的深海压力船体设计提供参考。

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