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Buckling and ultimate strength of perforated plate panels subject to axial compression: experimental and numerical investigations with design formulations

机译:受轴向压缩的多孔板的屈曲和极限强度:设计公式的实验和数值研究

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摘要

It has been recognised that the current shipbuilding industry design practice for perforated plates is not relevant with relatively large opening size and/or with large plate thickness, and it is believed that this problem has caused structural damage accidents in actual ship structures with openings. The motive of the present study was to resolve this issue by introducing a new design formulation of the critical buckling strength for perforated plates, which is pertinent to the structural design application on the safety side. For this purpose, a series of experimental and numerical studies are undertaken on buckling and ultimate strength of plates and stiffened panels with an opening and subject to axial compressive actions. A total of 90 perforated plates and also a total of 9 stiffened panels with an opening are tested up to and beyond ultimate strength, where important parameters of influence such as plate aspect ratio, plate slenderness ratio, opening size and shape, and opening location are varied. Elastic-plastic large deflection finite element method analyses are performed on the test structures. Existing and newly derived design-formula solutions of buckling and ultimate strength of the test plate panels are compared with experimental results and non-linear finite element method computations, indicating that the critical buckling strength formulation developed in the present study as well as an existing ultimate strength formula is useful for design and strength assessment of steel plate panels with an opening. The experimental database on buckling collapse of steel plate panels with an opening will be very useful for future use. Details of experiments and numerical computations together with insights developed from the present study are documented.
机译:已经认识到,当前的穿孔板的造船工业设计实践与较大的开口尺寸和/或较大的板厚度无关,并且可以相信,该问题已经在具有开口的实际船舶结构中引起了结构损坏事故。本研究的目的是通过引入一种新的穿孔板临界屈曲强度设计公式来解决该问题,该公式与安全性方面的结构设计应用有关。为此,对具有开口并受到轴向压缩作用的板和加劲板的屈曲和极限强度进行了一系列实验和数值研究。总共测试了90个穿孔板以及总共9个带有开口的加劲板,其强度达到甚至超过了极限强度,其中重要的影响参数包括板的长宽比,板的细长比,开口的尺寸和形状以及开口的位置多变。在试验结构上进行了弹塑性大挠度有限元方法分析。将现有和新推导的试验板屈曲和极限强度的设计公式解与实验结果和非线性有限元方法的计算结果进行了比较,表明本研究开发的临界屈曲强度公式以及现有的极限强度公式可用于带开口的钢板的设计和强度评估。具有开口的钢板面板屈曲塌陷的实验数据库对于将来的使用非常有用。记录了实验和数值计算的详细信息以及从本研究中获得的见解。

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