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Characterization of Gas Metal Arc Welding welds obtained with new high Cr-Mo ferritic stainless steel filler wires

机译:用新型高Cr-Mo铁素体不锈钢填充焊丝获得的气体保护金属电弧焊焊缝的特性

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摘要

Several compositions of metal cored filler wire were manufactured to define the best welding conditions for homogeneous welding, by Gas Metal Arc Welding (GMAW) process, of a modified AISI 444 ferritic stainless steel dedicated to automotive exhaust manifold applications. The patented grade is know under APERAM trade name K44X and has been developed to present improved high temperature fatigue properties. All filler wires investigated contained 19% Cr and 1.8% Mo, equivalent to the base metal K44X chemistry, but various titanium and niobium contents. Chemical analyses and microstructural observations of fusion zones revealed the need of a minimum Ti content of 0.15% to obtain a completely equiaxed grain structure. This structure conferred on the fusion zone a good ductility even in the as-welded state at room temperature. Unfortunately, titanium additions decreased the oxidation resistance at 950℃ if no significant Nb complementary alloying was made. The combined high Ti and Nb additions made it possible to obtain for the welded structure, after optimized heat treatment, high temperature tensile strengths and ductility for the fusion zones and assemblies, rather close to those of the base metal. 950℃ aging heat treatment was necessary to restore significantly the ductility of the as welded structure. Both fusion zone and base metal presented rather homogenized properties. Finally, with the optimized composition of the cored filler wire - 0.3 Ti minimum (i.e. 0.15% in the fusion zone) and high Nb complementary additions, the properties, including the thermal fatigue strength, of the K44X assemblies are excellent.
机译:制造了几种金属芯填充焊丝成分,以定义一种改良的AISI 444铁素体不锈钢专用气体,通过气体金属电弧焊(GMAW)工艺进行均匀焊接的最佳焊接条件,该AISI 444铁素体不锈钢专用于汽车排气歧管应用。该专利牌号以APERAM的商品名K44X闻名,并且已经开发出具有改进的高温疲劳性能的产品。研究的所有填充焊丝均含有19%的Cr和1.8%的Mo,相当于贱金属K44X的化学成分,但钛和铌的含量不同。熔合区的化学分析和显微结构观察表明,需要最小的Ti含量为0.15%才能获得完全等轴的晶粒结构。即使在室温下的焊接状态下,这种结构也使融合区具有良好的延展性。不幸的是,如果不进行明显的Nb互补合金化,添加钛会降低950℃的抗氧化性。经过优化的热处理后,高Ti和Nb的高添加量组合可以使焊接结构获得较高的抗熔区和组件高温拉伸强度和延展性,与母材非常接近。为了使焊接结构的延展性显着恢复,必须进行950℃时效热处理。熔融区和贱金属都呈现出相当均匀的性能。最后,通过优化芯焊丝的成分-最小0.3 Ti(即在熔融区为0.15%)和高Nb补充添加量,K44X组件的性能(包括热疲劳强度)非常出色。

著录项

  • 来源
    《Materials & design 》 |2013年第10期| 474-483| 共10页
  • 作者单位

    Universite Montpellier Ⅱ, Mechanical and Civil Engineering Laboratory, 30907 Nimes, France,Air Liquide, 95310 Saint Ouen l'Aumone, France;

    Universite Montpellier Ⅱ, Mechanical and Civil Engineering Laboratory, 30907 Nimes, France;

    Universite Montpellier Ⅱ, Mechanical and Civil Engineering Laboratory, 30907 Nimes, France;

    Universite Montpellier Ⅱ, Mechanical and Civil Engineering Laboratory, 30907 Nimes, France;

    Air Liquide, 95310 Saint Ouen l'Aumone, France;

    APERAM. 62330 lsbergues, France;

    APERAM. 62330 lsbergues, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ferritic stainless steel; Welding; Oxidation; Tensile test; Thermal fatigue;

    机译:铁素体不锈钢;焊接;氧化;拉伸试验;热疲劳;

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