Influence of pores on the fatigue life of welded joints and investigation of acceptance criteria defined in standard documents

IF 2.4 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING
Matthias Jung, René Fenzl
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引用次数: 0

Abstract

Inner defects in welded joints constitute concurrent sites for fatigue failure in welds, especially when high fatigue resistance is enforced at weld toe and root. Existing standards limit the size of pores and other inner defects in proportion to the sheet or weld thickness, but for larger dimensions cutoff values are in place. This leads to overly high acceptance criteria when it comes to thicker sheets, as for example those used for wind turbine towers. To analyze the influence of pores on the fatigue life, specimens with targeted pore sizes larger than the usually accepted were tested under fatigue loading. In the present study, a numerical model for fatigue assessment was developed based on the experimental results, which allowed further variance of pore sizes and locations. It is shown, that for larger weldments the acceptable pore size can be increased by up to 87.5 % without the necessity to reduce the applicable design curve. But, the location of the pore with regard to the specimens surface has a large influence, with pores in a distance to the surface smaller than 13 % of the sheet thickness leading to a reduction in the applicable design curve by up to 4 FAT classes — an effect that is currently not considered in common weld quality documents.

气孔对焊接接头疲劳寿命的影响及标准文件中规定的验收准则的探讨
焊接接头内部缺陷是焊缝疲劳破坏的多发部位,尤其当焊缝趾部和根部具有较高的抗疲劳性能时。现有的标准限制气孔和其他内部缺陷的尺寸与板材或焊缝厚度成比例,但对于较大尺寸的截止值是适当的。当涉及到较厚的薄板时,这会导致过高的验收标准,例如用于风力涡轮机塔的薄板。为了分析孔隙对疲劳寿命的影响,在疲劳载荷作用下,对目标孔隙尺寸大于常用孔隙尺寸的试样进行了疲劳试验。在本研究中,基于实验结果建立了一个疲劳评估的数值模型,该模型允许进一步改变孔隙大小和位置。结果表明,对于较大的焊接件,在不减小设计曲线的情况下,可接受孔径可增加87.5%。但是,孔的位置相对于试样表面有很大的影响,孔与表面的距离小于板材厚度的13%,导致适用的设计曲线减少多达4个FAT等级-目前在普通焊接质量文件中没有考虑到这一影响。
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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来源期刊
Welding in the World
Welding in the World METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
4.20
自引率
14.30%
发文量
181
审稿时长
6-12 weeks
期刊介绍: The journal Welding in the World publishes authoritative papers on every aspect of materials joining, including welding, brazing, soldering, cutting, thermal spraying and allied joining and fabrication techniques.
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