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首页> 外文期刊>Engineering Structures >Pin-ended press-braked S960 ultra-high strength steel angle section columns: Testing, numerical modelling and design
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Pin-ended press-braked S960 ultra-high strength steel angle section columns: Testing, numerical modelling and design

机译:销结束的印刷机制动S960超高强度钢角度柱:测试,数值建模和设计

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The structural performance and compression resistances of pin-ended press-braked S960 ultra-high strength steel (UHSS) angle section columns have been studied based on experiments and numerical modelling, and are reported in the present paper. An experimental programme was firstly performed on two series of press-braked S960 UHSS angle section column specimens, with each series containing six specimens of the same cross-section dimension but different member lengths, and included initial torsional and global geometric imperfection measurements and pin-ended column tests. The detailed pin-ended column test setup, procedures and results, including the failure loads, deformations at the failure loads, load-mid-height lateral deflection curves and failure modes, were fully reported. It is worth noting that two distinct flexural buckling orientations about the minor principle axis were observed from the tests, namely 'C' orientation (indicating that the failed column specimens buckled towards the angle corners) and 'reverse C' orientation (signifying that the failed column specimens buckled towards the angle tips). A numerical modelling programme was then followed; finite element (FE) models were firstly developed to replicate the test responses, and then adopted to perform parametric studies to generate further numerical data over a wide range of cross-section dimensions and member lengths. Given that the current design codes for steel structures, as used in Europe, Australia/New Zealand and North America, are only applicable to members and joints with material grades up to S700 (or S690), the relevant codified design provisions for press-braked S700 (or S690) high strength steel angle section columns were evaluated for their applicability to press-braked S960 UHSS angle section columns, based on the obtained test and numerical data. The evaluation results revealed that the European code yields unduly conservative and scattered compression resistance predictions when applied to press-braked S960 UHSS angle section columns, while the Australian/New Zealand standard and North American specification lead to a higher degree of design accuracy and consistency, on average, when used for press-braked S960 UHSS angle section columns, though some of the compression resistance predictions are unsafe for those failing by flexural buckling in the 'C' orientation.
机译:基于实验和数值模拟,研究了销端压制制动S960超高强度钢(UHSS)角截面柱的结构性能和压缩电阻,并在本文中报道。首先在两系列压榨制动的S960 UHSS角截面柱试样上进行实验程序,每个系列包含相同横截面尺寸但不同成员长度的六个标本,包括初始扭转和全球几何不完美测量和引脚结束列测试。完全报道了详细的引脚结束列测试设置,程序和结果,包括故障载荷,故障负载变形,加载 - 中高横向偏转曲线和故障模式。值得注意的是,从测试中观察到关于次要原理轴的两个不同的弯曲屈曲方向,即'C'取向(表示失败的列标本朝向角度角弯曲)和'反向C'方向(表示失败柱试样弯曲朝向角度提示)。然后跟踪数值建模程序;首先开发有限元(FE)模型以复制测试响应,然后采用参数化研究以在各种横截面尺寸和成员长度上产生进一步的数值数据。鉴于欧洲,澳大利亚/新西兰和北美使用的钢结构的当前设计守则仅适用于高达S700(或S690)的材料等级的成员和关节,所针对新闻包的相关编纂设计规定S700(或S690)基于所获得的测试和数值数据,评估了高强度钢角度柱的适用性,以适用于压制制动的S960 UHSS角度截面柱。评估结果表明,欧洲代码在施加压织制动的S960 UHSS角截面柱时产生过度保守和散落的压缩性预测,而澳大利亚/新西兰标准和北美规范则导致更高程度的设计精度和一致性,平均而言,当用于压制制动的S960 UHSS角度截面柱时,尽管某些压缩性预测对于在“C”方向上通过弯曲弯曲而失效的人不安全。

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