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首页> 外文期刊>Journal of Constructional Steel Research >Use of induction-heating in steel structures: Material properties and novel brace design
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Use of induction-heating in steel structures: Material properties and novel brace design

机译:在钢结构中使用感应加热:材料性能和新颖的支架设计

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Induction heat (IH) treatment technology is a very efficient way to increase several times the strength of a selected part of steel elements. This paper presents an experimental investigation on the material properties of IH-treated steel elements and a novel application to steel braces. The IH treatment technology and manufacturing process are first reviewed and then, the new material properties obtained by a series of coupon tests and Vickers hardness tests are reported. Compared with the conventional steel, the IH-treated steel offers two-to-three times higher yield stress and tensile strength, but three times lower fracture ductility. The proposed steel brace is a steel tube with a partial strength enhancement in its cross-section. One-half of the section is treated by IH, while the remaining maintains the properties of conventional steel. The conventional steel part yields earlier and dissipates energy, whereas the IH steel part remains elastic until large deformation. An intentional eccentricity is also introduced along the brace length to magnify further the contrast of material benefits. The effective combination of the partial strength enhancement and eccentricity provides the brace with a beneficial multiphase response. The brace exhibits a high tensile post-yielding stiffness nearly equal to 20% of the initial stiffness and stably dissipates energy during cyclic loading up to 2.0% story drift by delaying the onset of local buckling. (C) 2018 Elsevier Ltd. All rights reserved.
机译:感应加热(IH)处理技术是一种非常有效的方法,可以将选定钢部件的强度提高几倍。本文介绍了经过IH处理的钢元件的材料性能的实验研究,以及在钢支撑中的新应用。首先回顾了IH处理技术和制造工艺,然后报告了通过一系列试样测试和维氏硬度测试获得的新材料性能。与常规钢相比,经过IH处理的钢的屈服应力和拉伸强度高2至3倍,但断裂延展性却低3倍。所提出的钢制支撑件是在横截面上具有部分强度增强的钢管。一半的断面用IH处理,而其余的则保留了常规钢的性能。常规钢零件屈服较早并耗散能量,而IH钢零件保持弹性直至大变形。沿支架长度还引入了故意的偏心距,以进一步扩大材料效益的反差。局部强度增强和偏心率的有效组合为支架提供了有益的多相响应。撑杆具有很高的屈服后刚度,几乎等于初始刚度的20%,并且通过延迟局部屈曲的发生,在循环荷载过程中稳定地耗散能量,直至故事漂移达2.0%。 (C)2018 Elsevier Ltd.保留所有权利。

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