Górka Jacek, Przybyła Mateusz
Department of Welding Engineering, Silesian University of Technology, Konarskiego Str. 18a, 44-100 Gliwice, Poland.
FAMET S.A., Szkolna Str. 15, 47-225 Kędzierzyn Koźle, Poland.
Materials (Basel). 2024 Jul 18;17(14):3560. doi: 10.3390/ma17143560.
The aim of this study was to analyze the effect of the HFMI (high-frequency mechanical impact) treatment of each weld bead on the properties of a butt joint with a ceramic backing welded by robotic method 135 (MAG-metal active gas welding method) and to determine the effect of HMFI on the stress level. This analysis was based on a comparison of three butt joints made of a S690QL plate, in the as-welded condition, with the HFMI of each bead and with the heat treatment carried out with PWHT stress relief annealing. The high-frequency (90 Hz) peening of each weld bead was linked with a stress reduction in the weld via the implementation of compressive stresses into the joint. The HFMI pneumatic hammer was used for this. The correctness of treatment was achieved when 100% of the surface of each bead including the face was treated. As part of the post-welding tests, basic tests were carried out based on the standards for the qualification of welding technology, and as a supplementary test, a stress state analysis using the Barkhausen effect was carried out. The tests carried out showed that the use of high-frequency peening after each pass did not affect the negative results of all the required tests when qualifying the welding technology of S690QL sheet metal compared to the test plates in the as-welded condition and after heat treatment-stress relief annealing. Inter-pass peening of the welded face and HAZ (heat-affected zone) resulted in a reduction in post-weld residual stresses at a distance of 12 mm from the joint axis compared to the stress measurement result for the sample in the as-welded condition. This allowed for a positive assessment of peening in the context of reducing the notch, which is the concentration of tensile stresses in the area of the fusion line and HAZ. The tests carried out showed that the peening process does not reduce the strength properties of welded joints, and the results obtained allow the technology to be qualified based on applicable standards.
本研究的目的是分析高频机械冲击(HFMI)处理对采用机器人135方法(MAG-金属活性气体焊接法)焊接且带有陶瓷衬垫的对接接头性能的影响,并确定HFMI对应力水平的影响。该分析基于对由S690QL板材制成的三个对接接头的比较,这三个对接接头处于焊后状态,分别对每条焊缝进行了HFMI处理以及进行了消除应力退火的焊后热处理。通过向接头施加压应力,每条焊缝的高频(90赫兹)喷丸处理与焊缝中的应力降低相关联。为此使用了HFMI气动锤。当每条焊缝包括焊缝表面的100%都得到处理时,处理的正确性得以实现。作为焊后测试的一部分,根据焊接工艺评定标准进行了基本测试,并且作为补充测试,利用巴克豪森效应进行了应力状态分析。所进行的测试表明,与处于焊后状态和热处理 - 消除应力退火后的测试板相比,在对S690QL金属薄板的焊接工艺进行评定时,每次焊道后使用高频喷丸处理不会影响所有所需测试的负面结果。与焊后状态样品的应力测量结果相比,对焊缝表面和热影响区(HAZ)进行层间喷丸处理可使距接头轴线12毫米处的焊后残余应力降低。这使得在减少缺口方面(即熔合线和热影响区区域中的拉应力集中)对喷丸处理能够做出积极评价。所进行的测试表明,喷丸处理过程不会降低焊接接头的强度性能,并且所获得的结果允许根据适用标准对该工艺进行评定。