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Ferritic stainless steel welding with the A-TIG_process

机译:使用A-TIG的铁素体不锈钢焊接工艺

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The main advantage of the TIG with flux process (A-TIG welding) is the possibility of obtaining greater penetration of the weld bead while employing the same welding parameters as conventional TIG welding. Various studies have shown the influence of active fluxes on the geometric characteristics of stainless steel austenitic welds. However, little is known about the influence of this process on the geometric and metallurgical characteristics of the weld beads in ferritic stainless steels. In this work, different types of flux are applied when welding ferritic stainless steel with the objective of verifying possible influences on the weld bead's profile, on its visual appearance, on the microstructure, on the hardness of the welded zone and on the impact resistance (Charpy test). The bead-on-plate welds were produced without using any addition metal. Six types of flux were used – one being an oxide produced in a laboratory (TiO_2) and five commercial fluxes. The results showed that use of the flux allows an increase in penetration with significant changes in the appearance of the weld bead. It was also confirmed that the microstructure and the hardness of the weld bead for the steel studied were not affected by the type of flux used, with the microstru ture analysed under an optical microscope. The steel in the study showed a high degree of fragility at ambient temperature.
机译:带有助焊剂处理的TIG(A-TIG焊接)的主要优点是,在采用与传统TIG焊接相同的焊接参数的同时,可以获得更大的焊缝熔深。各种研究表明,活性焊剂对不锈钢奥氏体焊缝的几何特性有影响。然而,关于该工艺对铁素体不锈钢中焊缝的几何和冶金特性的影响知之甚少。在这项工作中,在焊接铁素体不锈钢时使用了不同类型的焊剂,目的是检验对焊缝外形,外观,微观结构,焊接区硬度和耐冲击性的可能影响(夏比测试)。在不使用任何添加金属的情况下进行了珠焊。使用了六种助焊剂-一种是实验室生产的氧化物(TiO_2),另外五种是商用助焊剂。结果表明,使用焊剂可以增加熔深,同时改变焊道的外观。还证实了所研究钢的焊缝的显微组织和硬度不受所用焊剂类型的影响,并且在光学显微镜下对显微组织进行了分析。研究中的钢在环境温度下显示出高度的脆性。

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