Estudo dos efeitos da aplicação de revestimentos duros em aço baixo carbono através do processo de soldagem SMAW

Abel Eduardo Netto, Almir Turazi
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Abstract

One way to increase the useful life of low carbon steels is the application, through welding, of surface coatings with specific chemical compositions in the desired region of the sample. As it is a fusion welding process, microstructural changes occur in the material and must be considered. This work aims to evaluate the effects of the chemical composition of the coating and the type of electrical current on the mechanical properties of low carbon steels after application of chrome-based coatings (DIN E10-UM-60GR and E6-UM-60G). For hardfacing, the SMAW process was used, with the making of overlapping strands laterally. Abrasive wear and Vickers hardness tests were performed and, after analyzing the results, it was observed that the E10-UM-60GR electrode (with higher C and Cr contents) obtained superior performance, suffering less abrasive wear and obtaining an average hardness bigger. The use of the E6-UM-60G electrode generated strands with a lower degree of dilution and greater influence on the properties of the HAZ (heat-affected zone).
采用SMAW焊接工艺在低碳钢上应用硬涂层的效果研究
增加低碳钢使用寿命的一种方法是通过焊接,在样品的所需区域应用具有特定化学成分的表面涂层。由于是熔焊过程,材料中会发生显微组织变化,必须加以考虑。本工作旨在评估涂层化学成分和电流类型对应用铬基涂层(DIN E10-UM-60GR和E6-UM-60G)后低碳钢机械性能的影响。对于堆焊,采用了SMAW工艺,并在横向上制作重叠的钢绞线。进行磨粒磨损和维氏硬度测试,分析结果发现,C、Cr含量较高的E10-UM-60GR电极性能优越,磨粒磨损较小,平均硬度较大。使用E6-UM-60G电极生成的股具有较低的稀释度和对HAZ(热影响区)性能的较大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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