首页> 外文期刊>Journal of neurosurgical sciences >Evaluation of microstructural and mechanical properties of dissimilar Inconel 625 nickel alloy-UNS S32205 duplex stainless steel weldment using MIG welding
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Evaluation of microstructural and mechanical properties of dissimilar Inconel 625 nickel alloy-UNS S32205 duplex stainless steel weldment using MIG welding

机译:使用MIG焊接评估不同Inconel 625镍合金-uns32205双相不锈钢焊接的微观结构和力学性能

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摘要

Inconel 625 nickel alloy and UNS S32205 duplex stainless steel (DSS) were welded with ER2209 filler metal using MIG (Metal Inert Gas) welding method. The weld metal obtained by DSS filler metal was subjected to mechanical and microstructural evaluation. Toughness and hardness properties had been examined by mechanical and microstructural characterization of weld metal, fusion line, and HAZ (Heat Affected Zone) region, and precipitations were investigated by light microscopy (LM), scanning electron microscopy (SEM), and energy-dispersive spectrometry (EDS). Corrosion behavior of base metals and face and root of weld metal were examined by using potentiodynamic polarization test. Additionally, detailed elemental analysis and mapping of weld metal with both optical emission spectrometer (OES) and X-Ray spectrometer were attained. Results demonstrate a significant decrease in toughness of the welding due to the presence of Nb and Mo rich intermetallic precipitations in the Inconel HAZ and root region, although there is no significant increase in hardness. Potentiodynamic polarization test shows that the dilution-induced microstructural transformation in the root of weld has the worst corrosion resistance in the weld metal. Therefore, this dissimilar welding does not have optimum properties for neither toughness nor corrosion.
机译:Inconel 625镍合金和Unt S32205双相不锈钢(DSS)用MIG(金属惰性气体)焊接方法用ER2209填充金属焊接。通过DSS填充金属获得的焊接金属进行机械和微观结构评估。通过焊接金属,融合线和HAZ(热影响区)区域的机械和微观结构进行检查韧性和硬度特性,通过光学显微镜(LM),扫描电子显微镜(SEM)和能量分散来研究沉淀光谱法(EDS)。通过使用电位动力学偏振试验检查基础金属和面部和焊接金属根系的腐蚀行为。另外,达到了具有光发射光谱仪(OES)和X射线光谱仪的焊接金属的详细元素分析和绘制。结果表明,由于存在的Nb和No浓度的金属间沉淀因子,焊接的韧性韧性显着降低,尽管硬度没有显着增加。电位动力学偏振试验表明,焊缝根系中的稀释诱导的微观结构变换具有焊缝金属中最差的耐腐蚀性。因此,这种不同的焊接不具有韧性和腐蚀的最佳性质。

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