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首页> 外文期刊>Journal of ship production and design >Residual Ultimate Strength of Steel Plates with Longitudinal Crack and Pitting Corrosion under Axial compression: Nonlinear Finite Element Method Investigations
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Residual Ultimate Strength of Steel Plates with Longitudinal Crack and Pitting Corrosion under Axial compression: Nonlinear Finite Element Method Investigations

机译:轴压下纵向裂纹钢板钢板的剩余终极强度:非线性有限元法研究

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摘要

The main aim of present study was to determine the ultimate strength of cracked and corroded plates under uniform in-plane compression. Corrosion is considered as pitting-type corrosion at one side of the plate with a central longitudinal crack. Nonlinear finite element analysis using commercial computer code, ANSYS, is used to determine the ultimate strength of deteriorated plates. Different geometrical parameters, including the aspect ratio (AR) and thickness of the plate, number of pits, pit depth-to-thickness ratio, and crack length, are considered. It is found that the AR of plates have great influence on the ultimate strength of cracked-pitted plates. Because of the position and orientation of the crack, the length of central longitudinal crack has no influence on ultimate strength reduction of cracked and cracked-pitted plates. The results show that regardless of the number of pits and crack length, in thin plates where buckling controls failure modes at ultimate strength, the number of pits has less influence on reduction of the ultimate strength than thick plates where yielding controls failure mode. Also it is concluded that in rectangular plates, arrangements of pits has more effect on reduction of the ultimate strength of cracked-pitted plates than the number of pits.
机译:目前研究的主要目的是确定裂纹和腐蚀板在均匀的面内压缩下的极限强度。腐蚀被认为是板在板的一侧具有焦型腐蚀,具有中心纵向裂缝。非线性有限元分析使用商业计算机代码ANSYS,用于确定劣化板的极限强度。考虑不同的几何参数,包括板的纵横比(AR)和厚度,凹坑的凹坑,坑深度到厚度比和裂缝长度。发现板的AR对裂解板的最终强度有很大影响。由于裂缝的位置和取向,中央纵裂的长度对裂纹和裂纹板的极限强度降低没有影响。结果表明,无论凹坑和裂缝长度的数量如何,在薄板中,屈曲控制故障模式以极限强度,凹坑的数量对厚度的强度的影响较小,而不是厚板,其中屈服于控制失效模式。此外,它的结论是,在矩形板中,坑的布置对降低裂解板的最终强度的影响比凹坑的数量更高。

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