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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Structural relationships of metallurgical and mechanical properties influenced by Ni-based fillers on Gas Tungsten Arc Welded Ferritic /Austenitic SS dissimilar joints
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Structural relationships of metallurgical and mechanical properties influenced by Ni-based fillers on Gas Tungsten Arc Welded Ferritic /Austenitic SS dissimilar joints

机译:钨极氩弧焊铁素体/奥氏体不锈钢异种接头上镍基填料影响的冶金和力学性能的结构关系

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摘要

Coupling and shaft assemblies in paper and pulp industries make use of dissimilar joints of austenitic/ferritic stainless steels AISI 316L and AISI 430. The joining of these 4mm thick Ni-Cr based AISI 316L and Cr based AISI 430 alloys were carried out by adopting current continuous (CCGTAW) and pulsing current (PCGTAW) in Gas Tungsten Arc Welding has been addressed. Ni-Cr based ERNiCr-3 and Ni-Cu based Nb-free ERNiCu-7 filler rods were employed to join these types of dissimilar combinations. The weldments were systematically characterized using optical microscopy (OM) and scanning electron microscopy (SEM) equipped with energy dispersive X-ray spectroscopy (EDS). It is recommended from the studies that the welds obtained from ERNiCu-7 fillers were free from deleterious Laves phase formation. Irrespective of fillers, the tensile failures were experienced at the base metal side of AISI 430. In ambient temperature condition Charpy V-notch impact trials highlighted that the weld joints employing ERNiCu-7 observed better tensile and impact toughness than current continuous GTAW weldments. This study is highly demanded in paper and pulp industries and effectively addressed the choice of fillers in conquering the Laves phase.
机译:造纸和纸浆工业中的联轴器和轴组件使用奥氏体/铁素体不锈钢的异种接头AISI 316L和AISI430。这些4mm厚的Ni-Cr基AISI 316L和Cr基AISI 430合金的接合是通过采用电流进行的。解决了钨极氩弧焊中的连续(CCGTAW)和脉冲电流(PCGTAW)问题。使用Ni-Cr基ERNiCr-3和Ni-Cu基无Nb ERNiCu-7填充棒来连接这些类型的不同组合。使用配备了能量色散X射线光谱仪(EDS)的光学显微镜(OM)和扫描电子显微镜(SEM)对焊件进行系统地表征。研究建议从ERNiCu-7填料获得的焊缝中无有害的Laves相形成。不管使用哪种填充剂,在AISI 430的贱金属侧都经历了拉伸破坏。在环境温度条件下,夏比V型缺口冲击试验表明,与目前的连续GTAW焊接相比,采用ERNiCu-7的焊接接头具有更好的拉伸和冲击韧性。这项研究在造纸和纸浆工业中有很高的要求,并有效地解决了征服Laves相的填料选择问题。

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