Bembenek Michał, Prysyazhnyuk Pavlo, Shihab Thaer, Machnik Ryszard, Ivanov Olexandr, Ropyak Liubomyr
Department of Manufacturing Systems, Faculty of Mechanical Engineering and Robotics, AGH University of Science and Technology, 30-059 Krakow, Poland.
Department of Welding, Ivano-Frankivsk National Technical University of Oil and Gas, 076019 Ivano-Frankivsk, Ukraine.
Materials (Basel). 2022 Jul 21;15(14):5074. doi: 10.3390/ma15145074.
An analysis of common reinforcement methods of machine parts and theoretical bases for the selection of their chemical composition were carried out. Prospects for using flux-cored arc welding (FCAW) to restore and increase the wear resistance of machine parts in industries such as metallurgy, agricultural, wood processing, and oil industry were presented. It is noted that conventional series electrodes made of tungsten carbide are expensive, which limits their widespread use in some industries. The scope of this work includes the development of the chemical composition of tungsten-free hardfacing alloys based on the Fe-Mo-B-C system and hardfacing technology and the investigation of the microstructure and the mechanical properties of the developed hardfacing alloys. The composition of the hardfacing alloys was developed by extending the Fe-Mo-B-C system with Ti and Mn. The determination of wear resistance under abrasion and impact-abrasion wear test conditions and the hardness measurement by means of indentation and SEM analysis of the microstructures was completed. The results obtained show that the use of pure metal powders as starting components for electrodes based on the Fe-Mo-B-C system leads to the formation of a wear-resistant phase Fe(Mo,B) during FCAW. The addition of Ti and Mn results in a significant increase in abrasion and impact-abrasion wear resistance by 1.2 and 1.3 times, respectively.
对机械零件的常见强化方法及其化学成分选择的理论基础进行了分析。介绍了在冶金、农业、木材加工和石油工业等行业中使用药芯焊丝电弧焊(FCAW)修复和提高机械零件耐磨性的前景。值得注意的是,传统的碳化钨系列焊条价格昂贵,这限制了它们在某些行业的广泛应用。这项工作的范围包括基于Fe-Mo-B-C体系开发无钨堆焊合金的化学成分和堆焊工艺,以及研究所开发堆焊合金的微观结构和力学性能。通过用Ti和Mn扩展Fe-Mo-B-C体系来开发堆焊合金的成分。完成了在磨损和冲击磨损试验条件下耐磨性的测定以及通过压痕法测量硬度和对微观结构进行扫描电子显微镜分析。所得结果表明,使用纯金属粉末作为基于Fe-Mo-B-C体系的焊条的起始成分会导致在药芯焊丝电弧焊过程中形成耐磨相Fe(Mo,B)。添加Ti和Mn分别使磨损和冲击磨损耐磨性显著提高1.2倍和1.3倍。