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Working Load Characteristics of the PDC-Cone Composite Bit under Impact and Scraping

机译:PDC-CONE复合钻头的工作负载特性造成冲击和刮痧

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摘要

The PDC-roller hybrid bit combines the cutting structure of a tricone bit with a PDC bit. It can achieve good results, breaking rock in directional drilling, drilling in inhomogeneous formations, and drilling in formations with high levels of hardness, and it can achieve the engineering goals of increasing speed and efficiency. First, we analyzed the rock-breaking mechanism of the composite bit and the principles of cushioning, torsion reduction, and prebreaking of the cone teeth during the breaking of rock. Second, cutting load models of the cone teeth and PDC teeth were established through unit experiments and through the calculation methods of the axial force, lateral force and torque, and lateral bending moment of the composite bit. Third, the digital simulation and analysis system was improved to include the function of calculating the working load of the composite bit. Taking an 8-1/2 inch, 2 + 4 type composite bit as an example, the working load characteristics of three cutting structures (cone, blade, and composite) were analyzed and compared. The analysis shows that the composite bit has high drilling efficiency, obvious deviation advantages, and good working stability under specific formation conditions. This paper provides technical support for the performance analysis, formation adaptability evaluation, and cutting structure design optimization of the PDC-cone bit.
机译:PDC-辊子混合位将Tricone位的切割结构与PDC位组合。它可以取得良好的效果,在方向钻孔中破碎岩石,在不均匀的地层钻孔,并在具有高硬度水平的地层中钻孔,可以实现增加速度和效率的工程目标。首先,我们分析了复合钻头的摇摆机构和缓冲,扭转减少和锥形牙齿的预造成的原理。其次,通过单元实验建立锥形齿和PDC齿的切割载荷模型,并通过轴向力,横向力和扭矩的计算方法,以及复合钻头的横向弯矩。第三,改进了数字仿真和分析系统,包括计算复合钻头的工作负荷的功能。采用8-1 / 2英寸2 + 4型复合位作为示例,分析并比较了三种切割结构的工作负载特性(锥形,刀片和复合材料)。分析表明,复合钻头具有高钻井效率,明显的偏差优势,以及特定地层条件下的良好工作稳定性。本文为PDC-CONE位的性能分析,地层适应性评估和切割结构设计优化提供了技术支持。

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