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Investigations on material properties and residual stresses in cold-formed high strength steel irregular hexagonal hollow sections

机译:冷弯型高强钢不规则六角空心型材材料性能及残余应力研究

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摘要

This paper presents an experimental investigation on the material properties variation and residual stress distribution within the cold-formed high strength steel (HSS) irregular hexagonal hollow sections (IHexHS) with two different fabrication methods. The test specimens were manufactured through press-braking and gas metal arc welding (GMAW). Tensile coupons tests were conducted on specimens fabricated from the critical locations within cold-formed HSS irregular hexagonal hollow sections, namely the flat portions, corner portions of either half or quarter sections. New material models to predict the material properties for the tensile coupons with both rounded responses and yield plateau followed by significant strain hardening were proposed. In conjunction with conventional tensile coupon testing, non-contact digital image correlation (DIC) measurement through which strain fields along the gauge length before and after the occurrence of diffuse necking was carried out to obtain the accurate strain field after necking. Moreover, the residual stresses measurements for HSS IHexHS were also performed, membrane and bending residual stresses distributions on the investigated sections were measured in longitudinal directions with 59 strips cut by wire-cutting method and more than 708 strain readings obtained. Results of the residual stress distributions and magnitudes are presented and discussed. Based on the measurement results, predictive models for residual stress distribution were developed and can be subsequently applied for predicting structural behaviour of the cold-formed HSS IHexHS.
机译:本文对冷弯型高强度钢(HSS)不规则六边形空心截面(IHexHS)材料性能变化和残余应力分布进行了实验研究。试样通过压力制动和气体金属电弧焊(GMAW)制造。对冷成型高速钢不规则六边形空心截面内关键位置的试样,即半截面或四分之一截面的平面部分、角部进行拉伸试样试验。提出了新的材料模型来预测拉伸试样的材料特性,同时具有圆润响应和屈服平台,然后是显着的应变硬化。结合传统的拉伸试样测试,进行非接触式数字图像相关(DIC)测量,通过该测量,在发生漫反射颈缩之前和之后沿标距长度的应变场,以获得颈缩后的精确应变场。此外,还对HSS IHexHS进行了残余应力测量,测量了所研究截面上的膜和弯曲残余应力分布,采用线切割法切割了59条带材,获得了708多个应变读数。提出并讨论了残余应力分布和大小的结果。基于测量结果,开发了残余应力分布的预测模型,随后可用于预测冷成型高速钢IHexHS的结构行为。

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