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Microstructure and processing performance of brazed diamond drill bits with Ni-Cr plus Cu-Ce composite solder

机译:用Ni-Cr加Cu-Ce复合焊料的钎焊金刚石钻头的微观结构和加工性能

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摘要

In this study, new brazed diamond drill bits and brazed samples were fabricated using Ni-Cr + Cu-Ce composite solder (i.e. Ni-Cr composite solder). The surface morphology and interfacial microstructure of the brazed samples that used Ni-Cr composite solder was characterised. The processing performance of the brazed diamond drill bits was evaluated and the surface morphology of the drill bits was analysed after conducting a drilling test. Results showed that the surface morphology of the brazed samples fabricated using Ni-Cr composite solder was better than that of its conventional counterpart using Ni-Cr alloy. Cr carbides (Cr3C2 and Cr7C3) were still obtained between the diamonds and Ni-Cr composite solder. When the amount of added Cu-Ce alloy exceeded a critical value, an increase in Cu-Ce alloy formed more brittle intermetallic compounds. The new brazed diamond drill bits with the Ni-Cr composite solder that contained 5 wt% Cu-Ce alloy achieved the longest tool life and highest drilling efficiency. The wear patterns of the aforementioned diamond drill bits were composed of grain micro fracture and macro fracture, which were the mildest wear types amongst all the drill bits.
机译:在该研究中,使用Ni-Cr + Cu-Ce复合焊料(即Ni-Cr复合焊料)制造了新的钎焊金刚石钻头和钎焊样品。用Ni-Cr复合焊料的钎焊样品的表面形态和界面微观结构。评估钎焊的金刚石钻头的加工性能,并在进行钻井试验后分析钻头的表面形态。结果表明,使用Ni-Cr复合焊料制造的钎焊样品的表面形态优于使用Ni-Cr合金的常规对应物的表面形态。在金刚石和Ni-Cr复合焊料之间仍然获得Cr碳化物(CR3C2和CR7C3)。当添加的Cu-Ce合金的量超过临界值时,Cu-Ce合金的增加形成了更脆的金属间化合物。具有含有5wt%Cu-Ce合金的Ni-Cr复合焊料的新钎焊金刚石钻头达到了最长的工具寿命和最高钻井效率。上述金刚石钻头的磨损图案由谷物微骨折和宏观骨折组成,宏观骨折是所有钻头中最温和的磨损类型。

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