A. Bukvić, D. Petrović, I. Radisavljević, Saša Dimitrić
{"title":"Influence of heat input on the tensile properties of austenitic-ferritic welded joints","authors":"A. Bukvić, D. Petrović, I. Radisavljević, Saša Dimitrić","doi":"10.5937/vojtehg70-36252","DOIUrl":null,"url":null,"abstract":"Introduction/purpose: During exploitation tests of gasoline storage tanks, cracks can form in an austenitic-ferrite welded joint, which can compromise the entire tank. Methods: In order to obtain a welded joint of satisfactory strength and durability, the paper analyzes the influence of heat input on the tensile characteristics of welded joints. In the current literature and practice, additional materials for welding the tank elements are selected according to the chemical compositions of the elements of basic materials, with the help of the Schaeffler diagram. In this paper, the characteristics of welded joints of gasoline storage tanks are examined, when the largest part of the tank is made of fine - grained microalloyed steel NIOMOL 490 K, while the roof part of the tank is made of austenitic steel. Slabs of these two materials were welded by the MIG process with additional material MIG 18/8/6, at different amounts of heat input. Conclusion: The analysis of the results obtained by tensile testing according to SRPS EN ISO 6892-1: 2020 standard concluded that the behavior of the joint as a whole depends on the properties of each individual part of the welded joint and their mutual influence. It was also concluded that the mutual influence is better if welding is performed with a lower amount of heat input, because then a lower degree of mixing of additional material with basic materials is achieved.","PeriodicalId":30576,"journal":{"name":"Vojnotehnicki Glasnik","volume":"6 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2022-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Vojnotehnicki Glasnik","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.5937/vojtehg70-36252","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 1
Abstract
Introduction/purpose: During exploitation tests of gasoline storage tanks, cracks can form in an austenitic-ferrite welded joint, which can compromise the entire tank. Methods: In order to obtain a welded joint of satisfactory strength and durability, the paper analyzes the influence of heat input on the tensile characteristics of welded joints. In the current literature and practice, additional materials for welding the tank elements are selected according to the chemical compositions of the elements of basic materials, with the help of the Schaeffler diagram. In this paper, the characteristics of welded joints of gasoline storage tanks are examined, when the largest part of the tank is made of fine - grained microalloyed steel NIOMOL 490 K, while the roof part of the tank is made of austenitic steel. Slabs of these two materials were welded by the MIG process with additional material MIG 18/8/6, at different amounts of heat input. Conclusion: The analysis of the results obtained by tensile testing according to SRPS EN ISO 6892-1: 2020 standard concluded that the behavior of the joint as a whole depends on the properties of each individual part of the welded joint and their mutual influence. It was also concluded that the mutual influence is better if welding is performed with a lower amount of heat input, because then a lower degree of mixing of additional material with basic materials is achieved.
简介/用途:在汽油储罐开采试验中,奥氏体-铁素体焊接接头会产生裂纹,危及整个储罐。方法:为了获得令人满意的强度和耐久性焊接接头,分析了热输入对焊接接头拉伸特性的影响。在目前的文献和实践中,根据基本材料中元素的化学组成,借助舍弗勒图选择焊接罐件的附加材料。本文对汽油储罐的焊接接头特性进行了研究,当储罐的最大部分采用细晶微合金钢NIOMOL 490 K,罐顶部分采用奥氏体钢。这两种材料的板在不同的热量输入下,用MIG工艺与额外的材料MIG 18/8/6焊接。结论:根据SRPS EN ISO 6892-1: 2020标准对拉伸试验结果进行分析,得出的结论是,接头的整体行为取决于焊接接头各个单独部分的性能及其相互影响。还得出结论,如果以较低的热输入量进行焊接,则相互影响更好,因为这样可以实现较低程度的附加材料与基本材料的混合。