Górka Jacek
Department of Welding Engineering, Silesian University of Technology, Konarskiego 18A, 44-100 Gliwice, Poland.
Materials (Basel). 2018 Jul 11;11(7):1192. doi: 10.3390/ma11071192.
The article presents tests aimed to verify the possibility of Thermomechanically Controlled Processed (TMCP) steels T-joints laser welding. The 10 mm thick high-yield-point steel S700MC obtained in an industrial manufacturing process was used for tests of laser welding. The joints made during the tests were single- and double-sided. Subsequent nondestructive tests revealed that the laser-welded joints represented quality level B in accordance with PN-EN ISO 13919-1. Single-sided welding performed at the output laser beam power of 11 kW provided the penetration depth of just 8 mm without visibly deforming of the joint. The double-sided welded joints were characterized by proper geometry and the presence of gas pores in the welds not compromising the requirements of quality level B (strict requirements). The identified weld structure was bainitic-ferritic. The weld hardness was by approximately 60 HV1 higher than that of the base material (280 HV1). The HAZ (Heat Affected Zone) area was slightly softer than the base material. The tests of thin foils performed using a high-resolution scanning transmission electron microscope revealed that, during welding, an increase in the content of the base material in the weld was accompanied by an increase in contents of alloying microagents Ti and Nb, particularly near the fusion line. The above-named alloying microagents, in the form of fine-dispersive (Ti,Nb)(C,N) type precipitates, could reduce plastic properties of joints.
本文介绍了旨在验证热机械控制轧制(TMCP)钢T型接头激光焊接可能性的试验。采用在工业制造过程中获得的10毫米厚的高屈服点钢S700MC进行激光焊接试验。试验中制作的接头有单面和双面两种。随后的无损检测表明,根据PN-EN ISO 13919-1标准,激光焊接接头的质量等级为B级。在输出激光束功率为11千瓦的情况下进行的单面焊接,熔深仅为8毫米,接头无明显变形。双面焊接接头的几何形状合适,焊缝中存在气孔,但不影响B级质量等级(严格要求)。所确定的焊缝组织为贝氏体-铁素体。焊缝硬度比母材(280 HV1)高约60 HV1。热影响区(HAZ)比母材稍软。使用高分辨率扫描透射电子显微镜对薄箔进行的测试表明,在焊接过程中,焊缝中母材含量的增加伴随着合金化微合金元素Ti和Nb含量的增加,尤其是在熔合线附近。上述合金化微合金元素以细分散的(Ti,Nb)(C,N)型析出物形式存在,会降低接头的塑性性能。