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Evaluation of the occurrence of mechanical constriction of the Arc in A-TIG welding of austenitic stainless steels

机译:奥氏体不锈钢A-TIG焊接弧形机械收缩发生的评价

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This paper evaluates indications of arc constriction by the thermal and electrical insulation caused by oxides of a single component in A-TIG welding of austenitic stainless steels. Changes in arc dimensions, in its electric voltage and in weld bead morphology caused by three oxide fluxes (SiO_2, Cr_2O_3 e Al_2O_3) applied with two surface densities (30 e 60 g/m2), and with and without a flux-free central strip (of 1, 2 and 4 mm) were studied. Results showed no significant change in the width of the electric arc for the experimental conditions used, therefore not supporting a possible mechanical constriction in the electric arc by oxide electrical and thermal insulation. Lateral filming indicated that the arc is delayed by the fluxes with silica causing the strongest effect. The presence of a clean central strip in the flux layer decreased weld penetration and weld bead cross section, besides the reduction of the width of the bead. Therefore, the resu Its of the present work seem to support Marangoni convection as the main mechanism responsible for increasing penetration in A-TIG welding of stainless austenitic steels.
机译:本文评估了由奥氏体不锈钢焊接中的单个组分的氧化物引起的热电和电绝缘的指示。由两个表面密度(30e 60g / m 2)施加的三种氧化物通量(SiO_2,Cr_2O_3e Al_2O_3),其电压和焊珠形态的电弧尺寸的变化(焊接珠子形态)的变化(30e 60g / m 2),以及无磁通中心条(1,2和4 mm)研究。结果表明,对于所用实验条件,电弧的宽度没有显着变化,因此不支持通过氧化物电气和隔热的电弧中的可能的机械收缩。横向拍摄表明电弧被二氧化硅的助熔剂延迟,导致最强的效果。除了减少珠子的宽度之外,在焊剂层中的清洁中心条的存在降低了焊接穿透和焊珠横截面。因此,本工作的RESU似乎支持Marangoni对流作为负责增加不锈钢奥氏体钢的焊接渗透的主要机制。

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