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首页> 外文期刊>Measurement and Control: Journal of the Institute of Measurement and Control >Measurement and analysis on the sensitization behavior of SS-304 welds using Nb-based stabilization through flux-coated gas tungsten arc welding
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Measurement and analysis on the sensitization behavior of SS-304 welds using Nb-based stabilization through flux-coated gas tungsten arc welding

机译:基于Nb基于Nb的SS-304焊缝敏化行为的测量与分析通过助焊剂铜焊弧焊

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The objective of this research work is to enhance the microstructure and intergranular corrosion resistance of AISI 304 stainless steel by diffusing the stabilizing element, that is, Niobium (Nb), using a comparatively new methodology termed as flux-coated gas tungsten arc welding. In this process, a suitable material in powder form (pure Nb powder of size < 20 mu m) is mixed with acetone and then coated on the V-joint of the plates before welding. The welded joint's surface microstructure and chemistry have been analyzed by optical microscopy, scanning electron microscopy and energy-dispersive x-ray spectroscopy. The microstructural results demonstrate that the diffusion of Nb changes the ferrite morphology of the weld joint to lathy ferrite from vermicular ferrite because of an increase in supercooling during solidification. The results of the investigations indicate that the flux-added weldments exhibited 26 HV more microhardness than conventional welded weldments in the fusion zone. Furthermore, the corrosion behavior of both gas tungsten arc welding-treated and flux-coated gas tungsten arc welding-treated weldments has been evaluated by the double-loop electrochemical potential kinetic reactivation test. The latter revealed that Nb-diffused weldment features insulative and protective properties and displays zero degree of sensitization, whereas conventional welded weldment gives a degree of sensitization of 2.53.
机译:该研究的目的是通过扩散稳定元件,即使用铌(Nb),所述稳定元素,即使用相对新的方法作为助焊剂镀铜钨电弧焊接来提高AISI 304不锈钢的微观结构和晶间腐蚀性。在该方法中,将粉末形式的合适材料(尺寸<20μm的纯Nb粉末<20μm)与丙酮混合,然后在焊接之前涂覆在板的V-ken上。通过光学显微镜,扫描电子显微镜和能量分散X射线光谱分析焊接接头的表面微观结构和化学。微观结构结果表明,由于在凝固过程中过冷的增加,Nb的扩散将焊接接头的铁素体形态改变为物质铁素体的损伤铁氧体。调查结果表明,磁通添加焊的焊接比融合区中的常规焊接焊接更多的微硬度显示出26个HV。此外,通过双回路电化学潜在的动力反应试验评估了气体钨弧焊处理和助焊剂铜焊接处理的焊接的腐蚀行为。后者透露,Nb漫射焊接具有绝缘和保护性能,并且显示零敏感程度,而传统的焊接焊接可致以2.53的敏化程度。

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