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The effect of welding defects to the tensile behavior in corrosive environment of AISI 304L stainless steel joined with shielded metal electrode

机译:屏蔽金属电极连接焊接缺陷对腐蚀环境中的拉伸行为的影响

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Purpose: Determination of the tensile behavior of welded constructions made of austenitic stainless steel in corrosive environments is of great importance for the safer ude pf the construction. When austenitic stainless steels are welded together, welding defects can occur in some cases. And stainless steels are used in corrosive environments. Thus, we are aimed to investigate the effect of welding defects the tensile- behavior in corrosive environment of AISI 304 L stainless steel joined with shielded metal electrode.Design/methodology/approach: Hardness measurements and micro-macro structures examination were made before the corrosion test to characterize the structure of the weld zone. Corrosion tests were carried out in accordance with EN ISO 9227 by exposing the welded tensile specimens to salt spray for 24-96-240-480-720-1000 hours. After the salt spray test, tensile tests were performed. The fractured surfaces were examined following the tensile tests by scanning electron microscope (SEM).Findings: A significant decrease in the tensile strength of the material was observed with the increase of the salt spraying period as a result of the tests. It is worth noting that corrosion products were occurred especially in the areas of welding defects.Research limitations/implications: This study was performed on materials containing welding defects. In addition, the corrosive environment was provided by salt spraying. It should not be forgotten that the materials may behave differently in different corrosive environments.Originality/value: While there are studies regarding effects of welding defects and corrosion individually, no study has been found in the literature which considers the effect of welding defects within corrosive environments on the material strength. Therefore, this study presents novel findings by considering both detrimental effects at the same time. The study shows significant decrease in strength of the material due to welding defects and corrosive environment.
机译:目的:测定腐蚀性环境中奥氏体不锈钢制成的焊接结构的拉伸行为对于更安全的UDE PF结构非常重要。当奥氏体不锈钢焊接在一起时,在某些情况下可能发生焊接缺陷。和不锈钢用于腐蚀性环境。因此,我们旨在调查焊接缺陷的抗菌环境在屏蔽金属电极连接的腐蚀环境中的腐蚀性环境的影响.Design/methodology/approach:硬度测量和微米结构在腐蚀前进行检查测试表征焊接区的结构。通过将焊接的拉伸试样暴露于24-96-240-480-720-1000小时,根据EN ISO 9227进行腐蚀试验。在盐雾试验之后,进行拉伸试验。通过扫描电子显微镜(SEM),在拉伸试验后检查裂缝表面。采用试验的盐喷射期的增加,观察到材料的拉伸强度显着降低。值得注意的是,腐蚀产品尤其在焊接缺陷领域发生。研究限制/影响:本研究是对含有焊接缺陷的材料进行的。此外,腐蚀性环境由盐喷涂提供。不应该忘记这些材料在不同的腐蚀环境中可能不同。物质强度的环境。因此,本研究通过同时考虑既有不利影响,提出了新颖的发现。该研究由于焊接缺陷和腐蚀性环境而显着降低了材料的强度。

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