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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Some studies on nickel based Inconel 625 hard overlays on AISI 316L plate by gas metal arc welding based hardfacing process
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Some studies on nickel based Inconel 625 hard overlays on AISI 316L plate by gas metal arc welding based hardfacing process

机译:基于气体金属电弧焊接的硬币工艺,基于镍316L板的镍的Inconel 625硬叠层研究

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摘要

The aim of the study was to examine the characteristics of Inconel 625 hard overlays over AISI 316L used for oil and gas industry applications. Weaving technique was adopted using robotic gas metal arc welding (GMAW) process in this study to reduce the dilution % and contact angle. Multiple overlapped beads were fabricated with a welding current of 120 Amps, welding speed of 250 mm/min with sinewave weaving technique. The hard overlays were then examined to expose the microstructural variation and mechanical integrity. In addition, reciprocating wear test and three-body abrasion tests were performed to study the wear characteristics. Microstructural results showed the existence of precipitates rich in Mo and Nb dispersed in the interdendritic regions with a dendritic structure. Hardfaced overlay and interface samples showed an increase of 17.8% and 3.7% respectively in ultimate tensile strength than the substrate material. Microhardness test exhibited intended results which follow an increasing trend from substrate to the overlay with an average of 246.02 HV(0.5 )at the overlay region and 184.94 HV(0.)(5 )on the substrate zone. Wear test results revealed excellent wear resistance of the hardfaced samples in comparison with substrate specimens. Co-efficient of friction (CoF) of hardfaced samples were 0.16 and 0.12 while the CoF of substrate specimen were 0.25 and 0.53 at room temperature and 180 degrees C respectively in ball on flat reciprocating wear test. Specific wear rate of hardfaced samples during the three-body abrasion test at 50 N and 130 N load decreased by 39% in comparison with substrate. The surfaces of the worn samples from the wear test were characterized by SEM wear tracks and Energy Dispersive Spectroscopy analysis.
机译:该研究的目的是检查用于石油和天然气工业应用的AISI 316L的Inconel 625硬叠层的特性。在该研究中使用机器人气金属弧焊(GMAW)工艺采用织造技术,以减少稀释度和接触角。用120安培的焊接电流制造多个重叠的珠粒,焊接速度为250毫米/分钟,具有正弦波织物技术。然后检查硬覆盖物以暴露微观结构的变化和机械完整性。此外,进行往复磨损试验和三体磨损试验以研究磨损特性。微观结构结果表明,在具有树突式结构的富含Mo和Nb的沉淀物存在的存在。对于基底材料,HardFaced覆盖层和界面样品分别增加了17.8%和3.7%,而不是基材材料。微硬度测试表现出遵循从基板的增加趋势到覆盖物的延续趋势,平均在覆盖区域处和184.94HV(0.)(5)在衬底区域上。磨损试验结果显示出与底物标本相比的硬漂样品的优异耐磨性。硬替代样品的摩擦(COF)的共同效率为0.16和0.12,而在往复往复磨损试验上分别在室温下为0.25和0.53和180℃。与底物相比,在50n和130n的三体磨损试验期间,在50 n和130n的三体磨损试验期间的特定磨损率降低了39%。通过SEM磨损轨道和能量分散光谱分析,特征来自磨损试验的磨损样品的表面。

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