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A Study to Increase Weld Penetration in P91 Steel During TIG Welding by using Activating Fluxes

机译:通过使用激活助焊剂在TIG焊接期间提高P91钢焊接穿透焊接渗透的研究

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Activated Flux TIG (ATIG) welding is a unique joining process, invented at Paton Institute of electric welding in 1960. ATIG welding process is also known as flux zoned TIG (FZTIG). In this process, a thin layer of activating flux is applied along the line on the surface of the material where the welding is to be carries out. The ATIG process aids to increase the weld penetration in thick materials. Activating fluxes used in the literature show the use of oxides like TiO2, SiO2, Cr2O3, ZnO, CaO, Fe2O3, and MnO2 during welding of steels. In the present study, ATIG was carried out on P-91 steel. Though, Tungsten Inert Gas welding gives excellent quality welds, but the penetration obtained in such welding is still demanding. P91 steel which is ferritic steel is used in high temperature applications. As this steel is, generally, used in thick sections, fabrication of such structures with TIG welding is limited, due to its low depth of penetration. To increase the depth of penetration in P91while welding with ATIG, the role of various oxides were investigated. Apart from the oxides mentioned above, in the present study the role of B2O3, V2O5 and MgO, during ATIG welding of P91 was investigated. It was seen that, compared to TIG welding, there was phenomenal increase in weld penetration during ATIG welding. Amongst all the oxides used in this study, maximum penetration was achieved in case of B2O3. The measurements of weld penetration, bead width and heat affected zone of the weldings were carried out using an image analysis technique.
机译:活性助焊剂TIG(ATIG)焊接是一个独特的连接过程,在1960年的帕多腾电焊研究所发明。ATIG焊接过程也称为助焊剂划分TIG(FZTIG)。在该过程中,沿着焊接的材料表面上的线施加薄的激活磁通层。 ATIG工艺辅助提高厚材料的焊接渗透。在文献中使用的活化助熔剂显示在钢焊接期间使用TiO 2,SiO 2,Cr 2 O 3,ZnO,CaO,Fe 2 O 3和MnO2等氧化物。在本研究中,ATIG在P-91钢上进行。虽然,钨惰性气体焊接提供了优异的焊缝,但在这种焊接中获得的渗透仍然需要。 P91钢是铁素体钢的高温应用。通常,在厚的部分中使用这种钢,由于其低深度的穿透深度,因此使用TIG焊接的这种结构的制造受到限制。为了通过ATIG增加P91焊接中的渗透深度,研究了各种氧化物的作用。除了上述氧化物之外,在本研究中,研究了B2O3,V2O5和MgO在P91的ATIG焊接期间的作用。有人看出,与TIG焊接相比,ATIG焊接期间焊接穿透性的显着增加。在本研究中使用的所有氧化物中,在B2O3的情况下实现了最大渗透性。使用图像分析技术进行焊接焊接渗透,珠宽和热影响区域的测量。

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