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Ultimate Strength of Pit Corrosion Damnification on Pressure-Resistant Shells of Underwater Glider

机译:水下滑翔机耐压壳体上坑腐蚀损伤的极限强度

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The ultimate strength of the pressure-resistant shells is degraded due to corrosion pit on the surface of the shells. The underwater glider is prone to pit corrosion damage after working in the water for a long time. This study is aimed at development of an assessing formula for ultimate strength of pressure-resistant shells with pit damage. Firstly, a parameterized geometry model of the pit is determined under the assumption that the pits are elliptical. Secondly, a finite element numerical simulation model is established and the numerical simulation results are analyzed to find that the effect of pit damage on the pressure-resistant shell is obvious. Thirdly, the influences of some parameters (relative length, relative width, and relative depth) of pit on the ultimate strength are studied. The regular curve of the influence of geometric parameters on ultimate strength is drawn. Lastly, the ultimate strength assessment formula of pressure-resistant shells was obtained from the data by nonlinear FEM based on the regression function of multiple nonlinear regression analysis by nonlinear regression analysis function regress which can provide the foundation to assess the ultimate strength of damaged pressure-resistant shells.
机译:耐压壳的极限强度由于壳表面上的腐蚀坑而降低。长时间在水中工作后,水下滑翔机很容易发生坑腐蚀腐蚀。这项研究旨在开发一种评估公式,用于评估带有凹坑损坏的耐压壳体的极限强度。首先,在凹坑为椭圆形的假设下确定凹坑的参数化几何模型。其次,建立了有限元数值模拟模型,并对数值模拟结果进行分析,发现凹坑损伤对耐压壳体的影响是明显的。第三,研究了坑的一些参数(相对长度,相对宽度和相对深度)对极限强度的影响。绘制了几何参数对极限强度的影响的规则曲线。最后,基于多元非线性回归分析的回归函数,通过非线性有限元分析的回归函数,利用非线性有限元法从数据中获得了耐压壳体的极限强度评估公式,可以为评估破坏压力的极限强度提供基础。防弹。

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