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首页> 外文期刊>Materials >Transformation and Precipitation Reactions by Metal Active Gas Pulsed Welded Joints from X2CrNiMoN22-5-3 Duplex Stainless Steels
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Transformation and Precipitation Reactions by Metal Active Gas Pulsed Welded Joints from X2CrNiMoN22-5-3 Duplex Stainless Steels

机译:X2CrNiMoN22-5-3双相不锈钢的金属活性气体脉冲焊接接头的转变和沉淀反应

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The high alloying degree of Duplex stainless steels makes them susceptible to the formation of intermetallic phases during their exposure to high temperatures. Precipitation of these phases can lead to a decreasing of the corrosion resistance and sometimes of the toughness. Starting from the advantages of the synergic Metal Active Gas (MAG) pulsed welding process, this paper analyses the structure formation particularities of homogeneous welded joints from Duplex stainless steel. The effect of linear welding energy on the structure morphology of the welded joints was revealed by macro- and micrographic examinations, X-ray energy dispersion analyses, measurements of ferrite proportion and X-ray diffraction analysis. The results obtained showed that the transformation of ferrite into austenite is associated with the chromium, nickel, molybdenum and nitrogen distribution between these two phases and their redistribution degree is closely linked to the overall heat cycle of the welding process. The adequate control of the energy inserted in the welded components provides an optimal balance between the two microstructural constituents (Austenite and Ferrite) and avoids the formation of undesirable intermetallic phases.
机译:双相不锈钢的高合金化程度使它们在暴露于高温期间易于形成金属间相。这些相的沉淀会导致耐蚀性下降,有时导致韧性下降。从协同金属活性气体脉冲焊接工艺的优势出发,本文分析了双相不锈钢均匀焊接接头的组织形成特性。宏观和显微检查,X射线能量色散分析,铁素体比例测量和X射线衍射分析揭示了线性焊接能量对焊接接头结构形态的影响。结果表明,铁素体向奥氏体的转变与铬,镍,钼和氮在这两个相之间的分布有关,并且它们的重新分布程度与焊接过程的整个热循环密切相关。适当控制插入焊接零件中的能量,可以在两种微观结构成分(奥氏体和铁素体)之间实现最佳平衡,并避免形成不良的金属间相。

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