New Weldable Steel for Rebars

Stanisław Klusek, P. Sędek, Kamil Kubik
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Abstract

A new steel grade, developed at the CELSA steelworks in Ostrowiec Świętokrzyski and used in the production of rebars, contributes greatly to the development of industrial and civil engineering. Steel B600B is characterised by yield point fyk = 600 MPa and immediate tensile strength ftk = 700 MPa. Tests revealed that the steel satisfies all requirements of related standards, both in terms of strength and processing properties. The mechanical properties of the new steel grade are higher by 20% than those of currently produced steels characterised by the highest mechanical properties (characteristic yield point Re= 500 MPa). As a result, the application of the new steel provides notable technical and economic advantages. The new steel grade meets requirements concerning technical class C in accordance with PN-EN 1992-1-1, which indicates that the steel has a significant yield point margin (being an important advantage in terms of limit state design). Plastic steels are easier to weld and less susceptible to welding crack formation. Technological (research-related) tests revealed the favourable welding properties of the new steel. Welding tests were performed using the manual metal arc welding method, i.e. the most common welding process used when making structural reinforcements. The welding tests involved the making of butt, overlap and cruciform joints. The strength and technological tests revealed that the steel satisfied the requirements specified in the PN-EN ISO 17660-1 standard.
新型可焊钢筋
位于Ostrowiec Świętokrzyski的CELSA钢铁厂开发了一种新的钢材等级,用于生产钢筋,对工业和土木工程的发展作出了巨大贡献。B600B钢的屈服点fyk = 600mpa,瞬时抗拉强度ftk = 700mpa。试验表明,该钢在强度和加工性能方面均满足相关标准的要求。新钢种的机械性能比目前生产的具有最高机械性能(特征屈服点Re= 500 MPa)的钢材高20%。因此,新钢的应用具有显著的技术和经济优势。新钢种符合PN-EN 1992-1-1有关技术等级C的要求,这表明该钢具有显著的屈服点余量(在极限状态设计方面是一个重要的优势)。塑钢更容易焊接,不易产生焊接裂纹。技术(研究)试验表明,这种新型钢具有良好的焊接性能。焊接试验采用手工金属弧焊方法进行,即在制造结构增强材料时最常用的焊接工艺。焊接试验包括对接、重叠和十字形接头的制作。强度和工艺试验表明,该钢满足PN-EN ISO 17660-1标准的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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