Dent-to-Stiffener Evaluation Concept for Thin-Walled Steel Cylinders

IF 0.5 Q4 ENGINEERING, CIVIL
Oğuzhan Akarsu, Barış Bayrak, Mahmut Kiliç, Mahyar Maali, Abdulkadir Cüneyt Aydin
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引用次数: 0

Abstract

Abstract Defects/imperfections can occur during manufacturing, assembly, welding, and other processes, which can reduce the critical buckling load. However, the axial buckling load is beyond the scope of this work, and there are many studies on the stiffening effect of longitudinal dents. This concept combined the idea of the dent-to-stiffener evaluation concept for thin-walled steel cylinders. This study aims to transform the dents into artificial dents for a stiffening effect on the buckling phenomena. For this purpose, 37 thin-walled steel cylinder models, including the perfect model, were designed for varying dent shapes, dent widths, dent depths, dent lengths, and dent angles. The study also contributed to the effect of dent parameters on the critical buckling load of thin-walled steel cylinders. In particular, increasing the initial buckling will motivate the industry to convert dents into stiffeners with small artificial touches to enhance the longevity of the structure. The results showed that the introduction of certain artificial dents can significantly increase the critical buckling load of cylinders, thus improving their resistance against buckling, which has significant implications for various industries that use thin-walled steel cylinders in their structures. The proposed simulations for transforming dents into artificial stiffeners can be a valuable tool for enhancing the longevity and safety of thin-walled steel cylinders and other structures.
薄壁钢瓶凹痕-加强评价概念
缺陷/缺陷可以在制造、装配、焊接和其他过程中发生,可以降低临界屈曲载荷。然而,轴向屈曲载荷超出了本文的研究范围,对纵向凹痕的加筋效应研究较多。这一概念结合了薄壁钢瓶的凹痕-加劲评估概念。本研究旨在将凹痕转化为人工凹痕,对屈曲现象产生加劲作用。为此,设计了37个薄壁钢瓶模型,包括完美模型,用于不同的凹痕形状,凹痕宽度,凹痕深度,凹痕长度和凹痕角度。研究还揭示了凹痕参数对薄壁钢瓶临界屈曲载荷的影响。特别是,增加初始屈曲将促使行业将凹痕转化为加强筋,通过小的人工接触来延长结构的寿命。结果表明,引入一定的人工凹痕可以显著提高钢瓶的临界屈曲载荷,从而提高钢瓶的抗屈曲能力,这对在结构中使用薄壁钢瓶的各行业具有重要意义。所提出的将凹痕转化为人工加强筋的模拟可以为提高薄壁钢瓶和其他结构的寿命和安全性提供有价值的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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