Minsheng Wang, Lingchao Xuan, Lei Wang, Jiangshuai Wang
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引用次数: 0
摘要
为了提高钢制 PDC(聚晶金刚石)钻头在井下高速流体流动条件下的抗侵蚀能力,有必要开发一种高性能的抗侵蚀涂层。本文采用激光熔覆技术,通过石墨烯改性碳化钨制备新型涂层。并深入研究和分析了碳化钨含量和石墨烯含量对涂层性能的影响,以获得最佳覆盖层。研究结果表明,对于新型涂层而言,60% 的碳化钨和 0.3% 的石墨烯是最佳配比。加入碳化钨后,硬度明显提高。然而,当碳化钨含量进一步增加到 30% 以上时,硬度的提高就会受到限制。此外,当石墨烯含量超过 0.3% 时,支化结构会变得更粗。具体来说,这是一种 Cr、Si 和 W 的偏析再次变得非常明显的现象,而 Fe 的偏析则发生在 Ni 的富集部位。这些研究成果有助于开发和优化井筒高速流动条件下的高质量抗侵蚀涂层。这对提高油气勘探开发效率具有重要意义。
Performance and Formula Optimization of Graphene-Modified Tungsten Carbide Coating to Improve Adaptability to High-Speed Fluid Flow in Wellbore
In order to improve the erosion resistance of steel PDC (Polycrystalline Diamond Compact) bit under high-speed fluid flow conditions underground, it is necessary to develop a high-performance erosion-resistant coating. In this paper, laser cladding was used to prepare the new coating by modifying tungsten carbide with graphene. And the effects of tungsten carbide content and graphene content on the coating performance have been thoroughly studied and analyzed to obtain the optimal covering layer. The research results indicate that, for new coatings, 60% tungsten carbide and 0.3% graphene are the optimal ratios. After adding tungsten carbide, the hardness has significantly improved. However, when the tungsten carbide content further increases more than 30%, the increase in hardness is limited. In addition, when the content of graphene is more than 0.3%, the branched structure becomes thicker. In detail, this is a phenomenon where the segregation of Cr, Si, and W becomes very obvious again, and the segregation of Fe occurs at the Ni enrichment site. The research results contribute to the development and optimization of high-quality erosion-resistant coatings under the high-speed flow conditions in wellbore. These are of great significance for improving the efficiency of oil and gas exploration and development.