Fatigue experiments on very high strength steel base material and transverse butt welds

IF 1.7 3区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
R.J.M. Pijpers, M. Kolstein, A. Romeijn, F. Bijlaard
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引用次数: 31

Abstract

Very High Strength Steels (VHSS) with nominal strengths up to 1100 MPa have been available on the market for many years. However, the use of these steels in the civil engineering industry is still uncommon, due to lack of design and fabrication knowledge and therefore limited inclusion in codes. Moreover, in a fatigue loaded VHSS structure absolute and relative stress variation will be higher compared to stresses in structures made of lower grade steels. According to current design codes the fatigue strength of welded connections mainly depends on the applied detail, plate thickness and machining condition, not on steel grade. Recently experiments on plates made of S690 and S1100, with and without transverse butt welds, have been performed in order to study the fatigue strength. Test results show that the characteristic fatigue strengths of plates with and without transverse butt weld lay well above the values according to EN 1993-1-9, mainly because of higher slope of the S-N curves. Crack initiation phase of S1100 specimens is relatively long compared to S690 specimens, while crack propagation is relatively short. An efficient application of VHSS in welded connections requires high fabrication quality and avoidance of large stress concentration in joints.
高强度钢基材与横向对接焊缝的疲劳试验
超高强度钢(VHSS)的标称强度高达1100mpa已在市场上提供了多年。然而,由于缺乏设计和制造知识,这些钢在土木工程行业的使用仍然不常见,因此在规范中受到限制。此外,在疲劳载荷下的VHSS结构中,绝对应力和相对应力变化将比由低等级钢制成的结构中的应力大。根据现行的设计规范,焊接连接的疲劳强度主要取决于应用的细节、板的厚度和加工条件,而不是钢的等级。最近对S690和S1100板材进行了横向对接焊和无横向对接焊的疲劳强度试验。试验结果表明,有无横向对接焊的板的特征疲劳强度均高于en1993 -1-9规定的值,这主要是由于S-N曲线的斜率较大。与S690试样相比,S1100试样的裂纹萌生阶段较长,而裂纹扩展阶段较短。为了在焊接连接中有效地应用VHSS,要求高的制造质量和避免接头中的大应力集中。
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来源期刊
Advanced Steel Construction
Advanced Steel Construction CONSTRUCTION & BUILDING TECHNOLOGY-ENGINEERING, CIVIL
CiteScore
2.60
自引率
29.40%
发文量
0
审稿时长
6 months
期刊介绍: The International Journal of Advanced Steel Construction provides a platform for the publication and rapid dissemination of original and up-to-date research and technological developments in steel construction, design and analysis. Scope of research papers published in this journal includes but is not limited to theoretical and experimental research on elements, assemblages, systems, material, design philosophy and codification, standards, fabrication, projects of innovative nature and computer techniques. The journal is specifically tailored to channel the exchange of technological know-how between researchers and practitioners. Contributions from all aspects related to the recent developments of advanced steel construction are welcome.
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