Czupryński Artur
Department of Welding Engineering, Faculty of Mechanical Engineering, Silesian University of Technology, Konarskiego 18A, 44-100 Gliwice, Poland.
Materials (Basel). 2021 May 3;14(9):2382. doi: 10.3390/ma14092382.
The article discusses test results concerning an innovative surface layer obtained using the cladding with powder plasma transferred arc welding (PPTAW) method. The above-named layer, being a metal matrix composite (MCM), is characterised by high abrasive wear resistance, resistance to pressure and impact loads, and the possibility of operation at elevated temperatures. The layer was made using powder in the form of a cobalt alloy-based composite reinforced with monocarbide TiC particles and superhard spherical particles of synthetic metal-diamond composite provided with tungsten coating. The surface layer was deposited on a sheet made of low-alloy structural steel grade AISI 4715. The layer is intended for surfaces of inserts of drilling tools used in the extraction industry. The results showed the lack of the thermal and structural decomposition of the hard layer reinforcing the matrix during the cladding process, its very high resistance to metal-mineral abrasive wear and its resistance to moderate impact loads. The abrasive wear resistance of the deposited layer with particles of TiC and synthetic metal-diamond composite was about than 140 times higher than the abrasive wear resistance of abrasion resistant heat-treated steel having a nominal hardness of 400 HBW. The use of diamond as a metal matrix reinforcement in order to increase the abrasive resistance of the PPTAW overlay layer is a new and innovative area of inquiry. There is no information related to tests concerning metal matrix surface layers reinforced with synthetic metal-diamond composite and obtained using PPTAW method.
本文讨论了关于采用粉末等离子转移弧焊(PPTAW)方法获得的创新表面层的测试结果。上述表面层作为一种金属基复合材料(MCM),具有高耐磨性、抗压和抗冲击载荷能力,以及在高温下运行的可能性。该层采用以钴基合金为基础的复合材料粉末制成,该复合材料由单碳化物TiC颗粒和带有钨涂层的超硬合成金属 - 金刚石复合材料球形颗粒增强。表面层沉积在AISI 4715级低合金结构钢制成的板材上。该层适用于采掘工业中使用的钻孔工具刀片表面。结果表明,在熔覆过程中,增强基体的硬质层没有发生热分解和结构分解,其对金属 - 矿物磨料磨损具有很高的抗性,并且能抵抗中等冲击载荷。含有TiC颗粒和合成金属 - 金刚石复合材料的沉积层的耐磨料磨损性能比名义硬度为400 HBW的耐磨热处理钢的耐磨料磨损性能高约140倍。使用金刚石作为金属基体增强材料以提高PPTAW堆焊层的耐磨性是一个新的创新研究领域。目前没有关于使用PPTAW方法获得的、用合成金属 - 金刚石复合材料增强的金属基体表面层测试的相关信息。