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Buckling behaviour of underwater vessels by experimental, numerical and analytical approaches

机译:通过实验,数值和分析方法对水下船舶的屈曲行为

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This paper reports the buckling behaviour of glass/vinylester polymer composite filament wound shells of underwater vessels. The shells were tested for buckling under hydrostatic loading and microstrains as a function of applied hydrostatic pressure were measured. Numerical analysis was performed for critical buckling pressure based on Block Lancoz buckling analysis and for Von-Mises stresses and strains based on static analysis using ANSYS. Von-Mises stresses corresponding to hydrostatic pressures were computed analytically by Reduced Stiffness Matrix method. The numerical results of critical buckling pressure for 10 mm thick vessels showed 7.12 % deviation from the experimental results. The microstrains predicted by FEA were in good agreement with the experimental strains. Von-Mises stresses predicted by FEA agreed well with the analytical computations.DOI: http://dx.doi.org/10.3329/jname.v11i1.16087
机译:本文报道了玻璃/乙烯基酯聚合物复合细丝缠绕的水下容器的屈曲行为。测试了壳体在静水载荷下的屈曲,并测量了微应变随施加的静水压力的变化。基于Block Lancoz屈曲分析,对临界屈曲压力进行了数值分析;基于ANSYS的静态分析,对Von-Mises应力和应变进行了数值分析。通过减小刚度矩阵法解析地计算了与静水压力相对应的冯·米塞斯应力。 10 mm厚容器的临界屈曲压力的数值结果与实验结果相差7.12%。 FEA预测的微菌株与实验菌株非常吻合。 FEA预测的Von-Mises应力与解析计算非常吻合.DOI:http://dx.doi.org/10.3329/jname.v11i1.16087

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