Influence of residual stress models prescribed in design codes for steel I-section behavior

IF 0.3 4区 工程技术 Q4 ENGINEERING, MULTIDISCIPLINARY Revista Internacional de Metodos Numericos para Calculo y Diseno en Ingenieria Pub Date : 2022-01-01 DOI:10.23967/j.rimni.2022.09.008
Í. Lemes, J. Silva, E. Batelo, R. Silveira
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引用次数: 2

Abstract

Non-uniform cooling of steel cross-sections during the manufacturing process generates a state of residual stresses in the cross-section. Design codes describe the distribution of these stresses in different ways. This work aims to numerically investigate the influence of these models on the behavior of bare steel and steel-concrete composite sections by the curves: flexural stiffness-bending moment, moment-curvature and yield curves (initial and full yield). These procedures are important for the study of the simplified curves used in some methodologies of the refined plastic hinge method (RPHM) analysis. The study will use the strain compatibility method (SCM), where, if the axial strain of the cross-section point is known, the section stiffness is obtained using the tangential Young's modulus derived from the materials constitutive relationship. A fiber discretization algorithm is applied and the residual stresses are explicitly inserted into the fibers automatically. The methodology was calibrated using the moment-curvature relationship and the flexural stiffness-bending moment curve. These results were numerically stable and good convergence with literature data was obtained. In general, the residual stress model of the American standard (AISC, 2016) defines a larger elastic region within the interaction diagrams then European model (CEN, 2005). The results obtained showed that the initial yield curves for steel I-sections under minor axis bending require revision for application to RPHM, mainly due to the loss of symmetry in relation to the M axis in the normal force-bending moment (NM) interaction diagram.
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设计规范中规定的残余应力模型对工字钢性能的影响
在制造过程中,钢截面的非均匀冷却会在截面上产生残余应力状态。设计规范以不同的方式描述了这些应力的分布。本工作旨在通过弯曲刚度-弯矩、弯矩-曲率和屈服曲线(初始屈服和完全屈服)来数值研究这些模型对裸钢和钢-混凝土组合截面行为的影响。这些步骤对于研究精塑性铰分析方法中所用的简化曲线具有重要意义。本研究将使用应变相容性方法(SCM),其中,如果截面点的轴向应变已知,则使用由材料本构关系导出的切向杨氏模量获得截面刚度。采用纤维离散化算法,自动将残余应力显式插入到纤维中。利用弯矩-曲率关系和弯曲刚度-弯矩曲线对方法进行了标定。这些结果在数值上是稳定的,与文献数据有很好的收敛性。一般来说,美国标准(AISC, 2016)的残余应力模型在相互作用图中定义了比欧洲模型(CEN, 2005)更大的弹性区域。结果表明,由于法向力-弯矩(NM)相互作用图中相对于M轴的对称性丧失,需要对工字型钢在小轴弯曲下的初始屈服曲线进行修正才能应用于RPHM。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
26
审稿时长
6 months
期刊介绍: International Journal of Numerical Methods for Calculation and Design in Engineering (RIMNI) contributes to the spread of theoretical advances and practical applications of numerical methods in engineering and other applied sciences. RIMNI publishes articles written in Spanish, Portuguese and English. The scope of the journal includes mathematical and numerical models of engineering problems, development and application of numerical methods, advances in software, computer design innovations, educational aspects of numerical methods, etc. RIMNI is an essential source of information for scientifics and engineers in numerical methods theory and applications. RIMNI contributes to the interdisciplinar exchange and thus shortens the distance between theoretical developments and practical applications.
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