Kik Tomasz, Moravec Jaromír, Švec Martin
Department of Welding Engineering, Silesian University of Technology, Konarskiego 18A, 44-100 Gliwice, Poland.
Department of Engineering Technology, Technical University of Liberec, 461 17 Liberec, Czech Republic.
Materials (Basel). 2020 Nov 22;13(22):5289. doi: 10.3390/ma13225289.
The article presents the results of research on the influence of temperature and time changes of the annealing process on the values and distribution of stresses in the simulated heat-affected zone of S700MC steel welded joints. For this purpose, tests were carried out on a thermal cycle simulator, as well as heating the prepared samples in accordance with the recorded welding thermal cycles, and then annealing at temperatures from 200 to 550 °C. The stresses values in the tested samples before and after the annealing process were measured by using X-ray diffraction (XRD). The performed tests were verified with the results of numerical analyses using the finite element method (FEM) performed in the VisualWeld (SYSWELD) environment as, on the one hand, the verification of the obtained results, and, on the other hand, the source of data for the development of a methodology for conducting analyses of heat treatment processes of S700MC steel welded structures. Also presented are three examples of numerical analyses for Gas Metal Arc (GMAW), laser and hybrid welding and then the annealing process of the obtained joints at selected temperatures. The main purpose of the work was to broaden the knowledge on the influence of annealing parameters on the values and distribution of stresses in welded joints, but also to signal the possibility of using modern software in engineering practice.
本文介绍了退火过程中温度和时间变化对S700MC钢焊接接头模拟热影响区应力值及分布影响的研究结果。为此,在热循环模拟器上进行了试验,并按照记录的焊接热循环对制备好的试样进行加热,然后在200至550℃的温度下进行退火。通过X射线衍射(XRD)测量退火过程前后测试样品中的应力值。利用在VisualWeld(SYSWELD)环境中使用有限元方法(FEM)进行的数值分析结果对所进行的试验进行了验证,一方面用于验证所得结果,另一方面作为开发S700MC钢焊接结构热处理过程分析方法的数据来源。还给出了气体保护金属电弧焊(GMAW)、激光焊和混合焊的三个数值分析示例,以及所得接头在选定温度下的退火过程。这项工作的主要目的是拓宽关于退火参数对焊接接头应力值及分布影响的知识,同时表明在工程实践中使用现代软件的可能性。