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Improvement Of Weld Characteristics By Variation In Welding Processes And Parameters In Joining Of Thick Wall 304ln Stainless Steel Pipe

机译:通过改变厚壁304ln不锈钢管的焊接工艺和参数来改善焊接性能

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摘要

Various properties of weld joints of 25 mm thick wall 325 mm O.D, 304LN austenitic stainless steel pipe prepared by using different welding process and conventional V-groove as per AWS specification have been compared. The welding was carried out by commonly used shielded metal arc welding (SMAW), gas metal arc welding (GMAW) and pulsed current gas metal arc welding (P-GMAW) processes. In P-GMAW process the influence of pulse parameters have been studied by considering their summarized influence defined by a dimensionless hypothetical factor φ=[(I_b/I_p)f·t_b] where, t_b=[(1/f)-t_p] The characteristics of weld joints with respect to their metallurgical, mechanical, corrosion and fracture mechanics properties as well as residual stresses have been studied and compared. Welding of thick wall stainless steel pipe by P-GMAW process significantly improves the tensile properties, reduces the inclusion and porosity content, increases initiation fracture toughness and lowers residual stresses of weld joint in comparison to those observed of SMA and GMA weld joints. The influence of φ on properties of P-GMA weld joints is primarily attributed to the reduction in severity of weld thermal cycle and refinement of microstructure of weld deposit.
机译:比较了25毫米厚壁厚325毫米O.D,304LN奥氏体不锈钢管的焊接接头的各种性能,这些接头通过使用不同的焊接工艺和按照AWS规范的常规V型槽制成。焊接通过常用的屏蔽金属电弧焊(SMAW),气体金属电弧焊(GMAW)和脉冲电流气体金属电弧焊(P-GMAW)工艺进行。在P-GMAW过程中,通过考虑由无量纲假设因子φ= [(I_b / I_p)f·t_b]定义的汇总影响来研究脉冲参数的影响,其中t_b = [(1 / f)-t_p]研究并比较了焊接接头的冶金,机械,腐蚀和断裂力学性能以及残余应力的特性。与SMA和GMA焊接接头相比,采用P-GMAW工艺焊接厚壁不锈钢管可显着提高抗拉性能,减少夹杂物和孔隙率,增加初始断裂韧性并降低焊接接头的残余应力。 φ对P-GMA焊接接头性能的影响主要归因于焊缝热循环强度的降低和焊缝组织的细化。

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