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Microstructural and mechanical properties assessment of the P91 A-TIG weld joints

机译:P91 A-TIG焊接接头的显微组织和力学性能评估

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In the current work, the effects of CeO2 and MoO3 based activating flux on heat input, weld bead geometry, and angular distortion during single pass A-TIG welding of the P91 steel were evaluated and compared with the conventional TIG welding. The A-TIG weldments developed using CeO2 and MoO3 based activating flux were also undergone for microstructure, microhardness, tensile test, and Charpy impact test study. It was observed that, the heat input increases in presence of activating fluxes at same welding input variables namely welding current, welding speed and arc length. An increase of 200% and 300% in joint penetration was obtained with CeO2 based flux and MoO3 based flux, respectively as compared to the conventional TIG weldments. Microstructure study reveals the presence of lath martensite, prior austenite grain boundaries along with MX (M: Nb, V, and X: C, N) and M23C6 (M: Fe, Mo, Mn, and Cr) type of precipitates in different zones of the weldments. Tensile strength of the A-TIG weldments was found better than that of the base metal. However, the Impact toughness of the A-TIG weldments was found to very low than the base metal. (C) 2017 The Society of Manufacturing Engineers. Published by Elsevier Ltd. All rights reserved.
机译:在当前工作中,评估了基于CeO2和MoO3的活化通量对P91钢单道A-TIG焊接过程中的热输入,焊缝几何形状和角度变形的影响,并与常规TIG焊接进行了比较。还对使用基于CeO2和MoO3的活化焊剂开发的A-TIG焊件进行了显微组织,显微硬度,拉伸试验和夏比冲击试验研究。观察到,在相同的焊接输入变量即焊接电流,焊接速度和电弧长度的情况下,在激活焊剂的存在下,热量输入增加。与传统的TIG焊件相比,基于CeO2的焊剂和基于MoO3的焊剂的焊缝熔深分别增加200%和300%。显微组织研究表明,在不同区域中存在板条状马氏体,先前的奥氏体晶界以及MX(M:Nb,V和X:C,N)和M23C6(M:Fe,Mo,Mn和Cr)类型的析出物的焊件。发现A-TIG焊件的抗拉强度比母材的抗拉强度更好。但是,发现A-TIG焊件的冲击韧性比母材低。 (C)2017年制造工程师学会。由Elsevier Ltd.出版。保留所有权利。

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