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Ultimate collapse strength assessment of damaged steel-plated structures

机译:受损钢板结构的极限破坏强度评估

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In an unpredictable world where human intervention or unexpected environmental conditions can prevail, damage can occur to manmade structures. Whilst structural design allows for redundancy, or a structural capability beyond the general working load of the structure, it is necessary to be able to analyse and understand the residual capability of a damaged structure to ensure the safety of personnel in the vicinity of the structure and assess the potential to facilitate repair. Idealised Structural Unit Method (ISUM) can allow rapid assessment of large structural arrangements by simplification into smaller constituent parts, which are assessed against pre-calculated failure data for each part. The method has potential benefits for allowing rapid assessment of damaged steel-plated structure that would otherwise require the use of high fidelity modelling of the entire structures, such as through the use of finite element analysis. This paper presents a study on the use of ISUM to assess damaged steel-plated structures and its limitations through the collapse analysis of stiffened steel panels. A new ISUM is proposed for strength assessment of damaged structural arrangements. Analysis is undertaken to assess the effects of geometrical and material property variations that can occur in a structure as well as the effects of damage aperture size and shape on the collapse strength of stiffened steel panels. The study shows that while ISUM can be applied in the assessment of damaged steel-plated structures, implementing the proposed new ISUM allows greater accuracy in the calculation of the collapse strength of damaged stiffened steel panels. The paper also concludes that the assessment of larger structural units for application in the ISUM assess ment, will allow the effects of the damage on surrounding structure to be captured, which can influence the deflection shapes that will lead to collapse of the structure.
机译:在人为干预或意外环境状况可能普遍存在的不可预测的世界中,人造结构可能会受到损坏。虽然结构设计可以提供冗余或超出结构正常工作负荷的结构能力,但有必要能够分析和了解受损结构的剩余能力,以确保结构附近人员的安全。评估促进维修的潜力。理想化的结构单元方法(ISUM)可以简化为较小的组成部分,从而对大型结构布置进行快速评估,然后根据每个部分的预先计算的失效数据进行评估。该方法具有潜在优势,可以快速评估损坏的镀层钢结构,否则将需要使用整个结构的高保真度建模,例如通过使用有限元分析。本文通过加筋钢板的倒塌分析,介绍了使用ISUM评估受损的镀层钢结构及其局限性的研究。建议使用新的ISUM评估受损结构布置的强度。进行分析以评估结构中可能发生的几何形状和材料属性变化的影响,以及损坏孔的大小和形状对加硬钢板的塌陷强度的影响。研究表明,尽管ISUM可以用于评估受损的镀层钢结构,但实施建议的新ISUM可以在计算受损的加劲钢板的坍塌强度时提供更高的准确性。本文还得出结论,在ISUM评估中对较大结构单元进行评估,将可以捕获损坏对周围结构的影响,这可能会影响挠曲形状,从而导致结构坍塌。

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