首页> 外文会议>International conference on structural engineering, mechanics and computation >Structural stainless steel design by advanced analysis with CSM strain limits
【24h】

Structural stainless steel design by advanced analysis with CSM strain limits

机译:通过对CSM应变极限的高级分析来设计不锈钢结构

获取原文

摘要

Advanced structural analysis is commonly carried out using finite element models constructed using beam elements. Beam elements are incapable of capturing the effects of local buckling. However, disregarding local buckling can lead to overestimations of system strengths leading to unsafe design. In traditional design approaches, time-consuming semi-empirical design calculations are carried out on individual members. However, with improvements in computational power and advances in software, system-level advanced analysis is now viable for widespread use in design. A proposal is made herein, in which strain limits, defined by the Continuous Strength Method, are applied to simulate local buckling in beam element models, thereby controlling the extent to which spread of plasticity, moment redistribution and strain hardening can be exploited. Strains are averaged over a finite length of member to reflect the fact that local buckling requires a finite length over which to develop and to allow for local moment gradient effects. The paper includes a numerical assessment of the proposed method for design at member level, with both I-sections and hollow sections considered. Comparisons against current design methods confirm the significant benefits of the proposed approach. Application of the approach is particularly appropriate for stainless steel structures due to the high material value and the complexities presented by the nonlinear material stress-strain response for traditional design treatments.
机译:通常使用使用梁单元构建的有限元模型来进行高级结构分析。梁单元无法捕获局部屈曲的影响。但是,忽略局部屈曲会导致对系统强度的高估,从而导致设计不安全。在传统的设计方法中,耗时的半经验设计计算是针对单个成员执行的。但是,随着计算能力的提高和软件的进步,系统级的高级分析现在可以在设计中广泛使用。本文提出了一种建议,其中将由连续强度方法定义的应变极限应用于模拟梁单元模型中的局部屈曲,从而控制可塑性的扩展程度,弯矩重新分布和应变硬化的程度。在有限长度的构件上平均应变,以反映以下事实:局部屈曲需要在有限的长度上发展,并允许局部弯矩效应。该论文包括对建议的设计方法进行数值评估的方法,其中考虑了工字型截面和空心型截面。与当前设计方法的比较证实了所提出方法的显着优势。该方法的应用特别适合于不锈钢结构,这是因为其高材料价值以及传统设计处理中非线性材料应力-应变响应所带来的复杂性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号