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Effect of Gas Metal Arc Welding (GMAW) Parameters on Wear Behavior of Heat Affected Zone of HSLA Steel Plates

机译:气金属弧焊(GMAW)参数对HSLA钢板热影响区磨损行为的影响

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The wear phenomenon may occur for a variety of work conditions in the material. It causes losses in terms of time and costs in the components which are used for heavy machinery due to its re-pair or even replacement. It is important to select suitable materials that exhibit high-quality weldability and resistance to abrasive wear such as the high strength low alloy (HSLA) steel grade 950A. Therefore, it is necessary to study the wear behavior of this kind of steel after components are joined by multi-pass gas metal arc welding (GMAW) process, specifically on the heat affected zone (HAZ). The aim of this research was to evaluate wear resistance by pin on disc test and hardness on heat affected zone of HSLA steel plates with thickness of 14 mm joined by using GMAW process varying different parameters as wire feed speed and voltage. The influence of microstructural features such as carbide precipitation on wear behavior and hardness was investigated using optical microscopy (OM) and scanning electron microscopy (SEM). The results show that microstructure is modified by the heat input of the welding process, affecting the material properties and causing more susceptibility to wear on the welded area.
机译:对于材料中的各种工作条件,可能会发生磨损现象。由于其重新对或甚至更换,它在用于重型机械的时间和成本方面导致损耗。选择合适的材料是表现出高质量的可焊性和耐磨性耐磨性的合适材料,例如高强度低合金(HSLA)钢级950A。因此,在通过多通气气金属弧焊(GMAW)工艺中,特别是在热影响区域(HAZ)上,有必要研究这种钢后的这种钢。该研究的目的是通过使用GMAW过程改变不同参数作为送丝速度和电压,通过使用GMAW过程改变不同参数的厚度为14mm的HSLA钢板的磁盘测试和硬度的耐磨性。研究了使用光学显微镜(OM)和扫描电子显微镜(SEM)研究了诸如碳化物沉淀的微观结构沉淀对磨损行为和硬度的影响。结果表明,微观结构通过焊接过程的热输入来改变,影响材料性能并导致焊接区域的磨损更易感。

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