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Determining the transverse shear stiffness of steel storage rack upright frames

机译:确定钢制储物架立式框架的横向剪切刚度

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摘要

The stability of steel storage racks in the cross-aisle direction is typically ensured by cold-formed steel bolted upright frames. Sensitive to second-order effects, accurately determining the shear stiffness of these frames is essential for seismic design and for ensuring the stability of the rack, especially for high-bay racks and racks supporting the building enclosure, where the outer rack frames must withstand cross-aisle horizontal actions due to wind loading. The main international racking specifications adopt different approaches to determining the shear stiffness of cold-formed steel storage rack upright frames. The Rack Manufacturers Institute (RMI) specification conservatively uses Timoshenko and Gere's theory. The European Specification EN 15512 recommends testing, however it is not clear whether the shear stiffness obtained using the recommended test procedure is correct. The newly revised Australian Standard AS 4084 adopted the European approach but also introduced an alternative test method for determining the combined bending and shear stiffness of upright frames in the transverse direction. This paper reviews and analyses the factors influencing the shear deformation of cold-formed steel bolted upright frames and introduces the alternative test set-up adopted in the revised Australian Standard. 36 upright frames have been tested using the two test methods, and experimental results are presented, discussed and compared with finite element analysis results. Recommendations on how to use the test outcomes in design are also provided. Based on these recommendations, the paper shows that the two test methods are not equivalent and yield different results for the transverse shear stiffness of upright frames.
机译:通常通过冷弯的钢制螺栓直立框架来确保钢制货架在横向通道方向上的稳定性。对二阶效应敏感,准确地确定这些框架的抗剪刚度对于抗震设计和确保机架的稳定性至关重要,尤其是对于高架机架和支撑建筑物机柜的机架,其中外部机架框架必须承受-由于风荷载导致的过道水平动作。国际主要货架规格采用不同的方法来确定冷弯型钢存储架立式框架的剪切刚度。机架制造商协会(RMI)规范保守地使用Timoshenko和Gere的理论。欧洲规范EN 15512建议进行测试,但是尚不清楚使用推荐的测试程序获得的剪切刚度是否正确。新修订的澳大利亚标准AS 4084采用了欧洲方法,但还引入了另一种测试方法,用于确定直立框架在横向上的组合弯曲和剪切刚度。本文回顾并分析了影响冷弯型钢制直立框架的剪切变形的因素,并介绍了修订后的澳大利亚标准中采用的替代测试设置。使用这两种测试方法测试了36个直立框架,并给出了实验结果,进行了讨论并与有限元分析结果进行了比较。还提供了有关如何在设计中使用测试结果的建议。根据这些建议,本文表明两种测试方法并不等效,并且对立式框架的横向剪切刚度得出不同的结果。

著录项

  • 来源
    《Journal of Constructional Steel Research》 |2012年第2012期|p.107-116|共10页
  • 作者单位

    Griffith School of Engineering, Griffith University, Gold Coast QLD 4222, Australia;

    School of Civil Engineering, The University of Sydney, Sydney NSW 2006, Australia;

    Department of Mechanical and Structural Engineering, University of Trento, via Mesiano 77, 38123 Trento (TN), Italy;

    Modulblok S.pA, via Vanelis 6,33010 Pagnacco (UD), Italy;

    Modulblok S.pA, via Vanelis 6,33010 Pagnacco (UD), Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    steel storage racks; shear stiffness; upright frames;

    机译:钢制储物架剪切刚度直立框架;
  • 入库时间 2022-08-18 00:15:10

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