首页> 外文期刊>Surface & Coatings Technology >Effects of spherical WC powders on the erosion behavior of WC-Ni hardfacing used for steel body drill bit
【24h】

Effects of spherical WC powders on the erosion behavior of WC-Ni hardfacing used for steel body drill bit

机译:球面WC粉末对钢体钻头使用WC-Ni Hardfacing的侵蚀行为的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Improving the erosion resistance of polycrystalline diamond compact (PDC) bit can prolong its service life. The influence of spherical WC powders on the erosion behavior of WC-Ni hardfacing used for steel body drill bit has not been reported. In this work, Ni-based hardfacing coatings reinforced with various content of spherical cast tungsten carbide (CTC-S) and angular cast tungsten carbide (CTC-A) particles are fabricated by oxy-acetylene welding process. The erosion behavior of WC-Ni hardfacing used for steel body PDC drill bit is experimentally studied. Results show that, the coating's microstructure, microhardness, fracture toughness and corrosion resistance varies under different CTC-S content, which leads to the differences in erosion mechanisms. The erosion resistance of hardfacing coatings decreases first and then increases with the decrease in CTC-S content. Sample 1 with 60% CTC-S and 0% CTC-A has the best erosion resistance, while sample 3 with 30% CTC-S and 30% CTC-A has the worst erosion resistance. As CTC-S content decreases, the erosion wear mechanism of hardfacing coating transforms from brittle mechanism to ductile mechanism. At a high CTC-S content, hardfacing coatings present brittle erosion wear mechanisms, such as micro-fracture and precipitate removal. At a low CTC-S content, hardfacing coatings show ductile erosion wear mechanisms, such as plastic deformation and crater formation.
机译:提高聚晶金刚石复合片(PDC)钻头的抗冲蚀性可以延长其使用寿命。球形WC粉末对钢体钻头用WC-Ni堆焊层冲蚀行为的影响尚未见报道。本文采用氧乙炔焊接工艺制备了不同含量的球形铸造碳化钨(CTC-S)和角形铸造碳化钨(CTC-A)颗粒增强镍基耐磨堆焊层。对钢体PDC钻头用WC-Ni堆焊层的冲蚀行为进行了试验研究。结果表明,在不同的CTC-s含量下,涂层的显微组织、显微硬度、断裂韧性和耐蚀性都有所不同,从而导致了冲蚀机理的差异。随着CTC-S含量的降低,堆焊层的抗冲蚀性先降低后提高。含60%CTC-S和0%CTC-A的样品1的抗侵蚀性最好,而含30%CTC-S和30%CTC-A的样品3的抗侵蚀性最差。随着CTC-S含量的降低,堆焊层的冲蚀磨损机制由脆性机制转变为韧性机制。当CTC-S含量较高时,堆焊层呈现脆性冲蚀磨损机制,如微断裂和析出物去除。当CTC-S含量较低时,堆焊层表现出塑性变形和凹坑形成等韧性冲蚀磨损机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号