首页> 外文期刊>Thin-Walled Structures >Geometrically non-linear analysis with stiffness reduction for the stability design of stainless steel structures: Application to members and planar frames
【24h】

Geometrically non-linear analysis with stiffness reduction for the stability design of stainless steel structures: Application to members and planar frames

机译:刚度降低的几何非线性分析,用于不锈钢结构的稳定性设计:应用于构件和平面框架

获取原文
获取原文并翻译 | 示例

摘要

This paper focuses on the development of beam-column flexural stiffness reduction factor (CuN) applicable to the in-plane stability design of stainless steel beam-columns and frames with compact cold-formed square and rectangular hollow sections. The proposed tau(MN) accounts for the deleterious influence of material non-linearity, residual stresses and member out-of-straightness. The use of a Geometrically Non-linear Analysis (GNA) with the proposed tau(MN) eliminates the need for member buckling strength checks and thus, only cross-sectional strength checks are required. The proposed approach, aligned to AISC standards, is aimed at facilitating greater and more efficient use of stainless steel.Two types of tau(MN )are proposed: analytical and approximate. The analytical tau(MN) presumes knowing the maximum internal second order moment (M-r2) within a member. It is developed by means of extending the formulations for evaluating the elastic second order effects to the inelastic range. The accuracy of the analytical tau(MN) is verified for beam-columns and sub-assemblages. Since in practical design M-r2 is not known in advance, an approximate expression of tau(MN), which is more likely to be used relative to the analytical tau(MN) , is proposed by fitting variables to the analytically determined (MN). The accuracy of the approximate tau(MN) is verified for frames with different geometrical and loading configurations. Furthermore, the proposed approach is compared against the Direct Analysis Method (DM). Results show that, compared to the DM, GNA coupled with the approximate tau(MN) provides improved estimations, since the proposed tau(MN) can more accurately capture stiffness reduction resulted from material non-linearity and well capture additional second order effects due to material nonlinearity.
机译:本文着重研究梁柱抗弯刚度降低系数(CuN)的发展,该系数适用于具有紧凑型冷弯方形和矩形空心截面的不锈钢梁柱和框架的面内稳定性设计。提出的tau(MN)解释了材料非线性,残余应力和构件不平直性的有害影响。通过将tau(MN)与几何非线性分析(GNA)结合使用,消除了对构件屈曲强度检查的需要,因此,仅需要进行截面强度检查。所提出的方法符合AISC标准,旨在促进更大和更有效地使用不锈钢。提出了两种类型的tau(MN):分析型和近似型。分析tau(MN)假定知道一个成员内的最大内部二阶矩(M-r2)。它是通过将用于评估弹性二阶效应的公式扩展到非弹性范围来开发的。验证了分析tau(MN)的准确性,适用于梁柱和子组件。由于在实际设计中M-r2事先未知,因此通过将变量拟合到解析确定的(MN)来提出相对于解析tau(MN)更可能使用的tau(MN)的近似表达式。 。对于具有不同几何形状和负载配置的框架,验证了近似tau(MN)的准确性。此外,将所提出的方法与直接分析方法(DM)进行了比较。结果表明,与DM相比,GNA与近似tau(MN)耦合提供了改进的估计,因为拟议的tau(MN)可以更准确地捕获材料非线性导致的刚度降低,并很好地捕获由于材料非线性。

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