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Research on diamond-enhanced tungsten carbide composite button bits

机译:金刚石增强碳化钨复合纽扣钻头的研究

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At the present time in China, the cutters used in button bits and rock bits are mainly cobalt tungsten carbide. Because of its low abrasive resistance, the bit service life and drilling efficiency are very low when hard and extremely hard formations are being drilled. Owing to its high abrasive resistance, diamond composite material is widely used in drilling operations. However, its toughness against impact is too low to be used in percussion drilling, so it can only be used in rotary drilling. In order to solve the problems encountered by the DTH hammer in hard rock drilling, to increase the life of the bit, to increase the rate of penetration and to decrease drilling cost, a new type of diamond-enhanced tungsten carbide composite button with high abrasive resistance and high toughness against impact, which may be used in percussion drilling, has been developed. The key problems in making the button are to improve the thermal stability of the diamond, increase the welding strength between the diamond and the cemented tungsten carbide, and reduce the sintering temperature of the tungsten carbide. All these problems have been solved effectively by pretreatment of the diamond, low temperature activation hot-press sintering, and high sintering pressure. The properties of the button have been determined under laboratory conditions. The test results show that its hardness is more than 86 HRA, its abrasiveness resistance is 100 times more than that of conventional cemented tungsten carbide, and its toughness against impact is more than 100 J. All these data theoretically that show the button has very good mechanical properties that can meet the needs of percussion drilling, and can solve the problems encountered with button bits of conventional cemented tungsten carbide.
机译:目前在中国,用于纽扣钻头和岩石钻头的刀具主要是碳化钨钴。由于其低的耐磨性,当要钻探坚硬和极硬的地层时,钻头的使用寿命和钻探效率非常低。由于其高耐磨性,金刚石复合材料被广泛用于钻井作业。但是,它的抗冲击韧性太低,无法用于冲击钻,因此只能用于旋转钻探。为了解决潜孔锤在硬岩钻孔中遇到的问题,增加钻头的寿命,提高钻速,降低钻孔成本,一种新型的具有高磨蚀性的金刚石增强碳化钨复合纽扣已经开发出可用于冲击钻的抗冲击性和高韧性。制作纽扣的关键问题是提高金刚石的热稳定性,提高金刚石与硬质合金碳化钨之间的焊接强度,并降低碳化钨的烧结温度。通过金刚石的预处理,低温活化热压烧结和高烧结压力已有效地解决了所有这些问题。该按钮的属性已在实验室条件下确定。测试结果表明,它的硬度超过86 HRA,抗磨性是传统硬质合金碳化钨的100倍,抗冲击韧性超过100J。从理论上所有这些数据表明,该钮扣具有很好的抗拉强度。可以满足冲击钻进的机械性能,并且可以解决传统硬质合金硬质合金钻头所遇到的问题。

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