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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Capability of martensitic low transformation temperature welding consumables for increasing the fatigue strength of high strength steel joints
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Capability of martensitic low transformation temperature welding consumables for increasing the fatigue strength of high strength steel joints

机译:Martensitic低变换温度焊接耗材的能力,用于增加高强度钢结构的疲劳强度

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摘要

The use of low transformation temperature (LTT) filler materials represents a smart approach for increasing the fatigue strength of welded high strength steel structures apart from the usual procedures of post weld treatment. The main mechanism is based on the effect of the low start temperature of martensite formation on the stress already present during welding. Thus, compressive residual stress formed due to constrained volume expansion in connection with phase transformation become highly effective. Furthermore, the weld metal has a high hardness that can delay the formation of fatigue cracks but also leads to low toughness. Fundamental investigations on the weldability of an LTT filler material are presented in this work, including the characterization of the weld microstructure, its hardness, phase transformation temperature and mechanical properties. Special attention was applied to avoid imperfections in order to ensure a high weld quality for subsequent fatigue testing. Fatigue tests were conducted on the welded joints of the base materials S35512 and S9600L using conventional filler materials as a comparison to the LTT filler. Butt joints were used with a variation in the weld type (DY-weld and V-weld). In addition, a component-like specimen (longitudinal stiffener) was investigated where the LTT filler material was applied as an additional layer. The joints were characterized with respect to residual stress, its stability during cyclic loading and microstructure. The results show that the application of LTT consumables leads to a significant increase in fatigue strength when basic design guidelines are followed. This enables a benefit from the lightweight design potential of high-strength steel grades.
机译:低变换温度(LTT)填料材料代表了一种智能方法,用于增加焊接高强度钢结构的疲劳强度,除了焊接后焊接治疗的常用程序之外。主要机理基于马氏体形成的低启动温度对焊接期间已经存在的应力的影响。因此,由于与相变的受约束的体积膨胀而形成的压缩残余应力变得非常有效。此外,焊接金属具有高硬度,可以延迟疲劳裂缝的形成,但也导致低韧性。在该工作中提出了对LTT填充材料的可焊性的基本研究,包括焊接微观结构的表征,其硬度,相变温度和机械性能。采用特别关注避免缺陷,以确保随后疲劳检测的高焊接质量。使用常规填料材料与LTT填充物的比较,在基材S35512和S9600L的焊接接头上进行疲劳试验。对接接头与焊接型(Dy-Weld和V-Weld)的变化一起使用。另外,研究了组分样样品(纵向加强筋),其中LTT填充物材料作为附加层施加LTT填充物。相对于残余应力,其循环载荷和微观结构期间的稳定性表征。结果表明,当遵循基本设计指南时,LTT消耗品的应用导致疲劳强度的显着增加。这使得能够从高强度钢等级的轻质设计潜力中受益。

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