Effect of post weld heat treatment on metallurgical and mechanical properties of electron beam welded AISI 409 ferritic steel

Akash Doomra, S. Sandhu, Beant Singh
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引用次数: 11

Abstract

The applicability of ferritic stainless steel is restricted due to its low weldability, and this can be attributed to the severe grain growth in the weld zone during the solidification of the weld pool and formation of fully ferritic structure. This study aims to investigate the weldability of 18 mm thick AISI 409 ferritic stainless steel plates using an electron beam welding process without the use of filler metal. The joints were investigated for metallography characterization (microstructure, macrostructure, and microhardness) and mechanical behavior (tensile strength and impact toughness) in aswelded condition and after post-weld heat treatment at 550 oC for 75 minutes. The weld zone exhibited large columnar grains in the direction perpendicular to the weld centerline and got refined after post-weld heat treatment. The ultimate tensile strength, yield strength, and microhardness of the weld zone were found higher than the base metal. The impact toughness of weld zone was found to be reduced by 45%, but the post-weld heat treatment improved the toughness by 40%. Results revealed that the electron beam welding process could be successfully employed for welding of AISI 409 ferritic stainless steel, which will increase its application range that requires thicker section of welded plates. Post-weld heat treatment was found to be advantageous for improving the microstructure and mechanical properties.
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焊后热处理对电子束焊接AISI 409铁素体钢冶金性能和力学性能的影响
铁素体不锈钢的可焊性较低,限制了其适用性,这是由于焊缝熔池凝固过程中焊缝区晶粒生长严重,形成全铁素体组织所致。本研究旨在研究18mm厚AISI 409铁素体不锈钢板在不使用填充金属的情况下的电子束焊接可焊性。在焊接状态下和焊后550℃热处理75分钟后,研究了接头的金相表征(微观组织、宏观组织和显微硬度)和力学行为(抗拉强度和冲击韧性)。焊缝区沿垂直于焊缝中心线方向呈大柱状晶粒,经焊后热处理后晶粒细化。焊缝区的极限抗拉强度、屈服强度和显微硬度均高于母材。焊缝区的冲击韧性降低了45%,但焊后热处理使其韧性提高了40%。结果表明,电子束焊接技术可以成功地应用于AISI 409铁素体不锈钢的焊接,从而扩大了电子束焊接技术的应用范围。焊后热处理有利于改善组织和力学性能。
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