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Performances of a Stinger PDC cutter breaking granite: Cutting force and mechanical specific energy in single cutter tests 被引量:1
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作者 Chao Xiong Zhong-Wei Huang +4 位作者 Huai-Zhong Shi Rui-Yue Yang Gang Wu Han Chen Wen-Hao He 《Petroleum Science》 SCIE EI CAS CSCD 2023年第2期1087-1103,共17页
The Stinger PDC cutter has high rock-breaking efficiency and excellent impact and wear resistance, which can significantly increase the rate of penetration (ROP) and extend PDC bit life for drilling hard and abrasive ... The Stinger PDC cutter has high rock-breaking efficiency and excellent impact and wear resistance, which can significantly increase the rate of penetration (ROP) and extend PDC bit life for drilling hard and abrasive formation. The knowledge of force response and mechanical specific energy (MSE) for the Stinger PDC cutter is of great importance for improving the cutter's performance and optimizing the hybrid PDC bit design. In this paper, 87 single cutter tests were conducted on the granite. A new method for precisely obtaining the rock broken volume was proposed. The influences of cutting depth, cutting angle, and cutting speed on cutting force and MSE were analyzed. Besides, a phenomenological cutting force model of the Stinger PDC cutter was established by regression of experimental data. Moreover, the surface topography and fracture morphology of the cutting groove and large size cuttings were measured by a 3D profilometer and a scanning electron microscope (SEM). Finally, the rock-breaking mechanism of the Stinger PDC cutter was illustrated. The results indicated that the cutting depth has the greatest influence on the cutting force and MSE, while the cutting speed has no obvious effects, especially at low cutting speeds. As the increase of cutting depth, the cutting force increases linearly, and MSE reduces with a quadratic polynomial relationship. When the cutting angle raises from 10° to 30°, the cutting force increases linearly, and the MSE firstly decreases and then increases. The optimal cutting angle for breaking rock is approximately 20°. The Stinger PDC cutter breaks granite mainly by high concentrated point loading and tensile failure, which can observably improve the rock breaking efficiency. The key findings of this work will help to reveal the rock-breaking mechanisms and optimize the cutter arrangement for the Stinger PDC cutter. 展开更多
关键词 stinger PDC cutter Cutting force Mechanical specific energy Single cutter tests
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锥形齿PDC钻头台架试验研究 被引量:16
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作者 邹德永 孙源秀 +2 位作者 于鹏 侯绪田 杨顺辉 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2015年第2期48-52,共5页
设计并加工锥形齿PDC钻头、锥形PDC齿与常规PDC齿混合的复合式钻头、常规PDC齿钻头,在不同性质的岩样上进行台架试验研究,分析锥形齿PDC钻头钻进硬地层的破岩效果以及钻压、转速等钻进参数对其钻进性能的影响规律,并与常规PDC钻头的破... 设计并加工锥形齿PDC钻头、锥形PDC齿与常规PDC齿混合的复合式钻头、常规PDC齿钻头,在不同性质的岩样上进行台架试验研究,分析锥形齿PDC钻头钻进硬地层的破岩效果以及钻压、转速等钻进参数对其钻进性能的影响规律,并与常规PDC钻头的破岩效果进行对比。结果表明:锥形齿PDC钻头具有钻进硬岩能力,机械钻速随钻压和转速的增加而增大;锥形PDC齿与常规PDC齿混合的复合式钻头在硬岩中可获得较高的破岩效率,机械钻速可提高90.6%。 展开更多
关键词 锥形齿 PDC钻头 台架试验 破岩效率 机械钻速
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尖锥形后备齿PDC钻头的参数优化与现场应用 被引量:2
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作者 姚建林 李伟成 +3 位作者 李德伟 冯明 杨开雄 肖洋 《钻采工艺》 CAS 北大核心 2020年第5期9-11,23,I0001,共5页
通过ABAQUS有限元仿真分析了尖锥形齿在单齿条件下的破岩过程,计算得到了齿切削力和破碎比功随齿顶角和前倾角的变化规律获得了齿顶角和前倾角的最优匹配关系,为尖锥形后备齿PDC钻头的设计提供了理论支持。在此基础上研发的的尖锥形后备... 通过ABAQUS有限元仿真分析了尖锥形齿在单齿条件下的破岩过程,计算得到了齿切削力和破碎比功随齿顶角和前倾角的变化规律获得了齿顶角和前倾角的最优匹配关系,为尖锥形后备齿PDC钻头的设计提供了理论支持。在此基础上研发的的尖锥形后备齿PDC钻头在岳XX井成功开展了现场试验,结果表明该钻头在机械钻速和进尺方面均表现优异具有较高的工程应用价值。在实际应用中也发现:除齿顶角和前倾角这两个参数之外,尖锥形齿与常规PDC齿的位置关系也值得深入研究其研究结果有望进一步提高尖锥形后备齿PDC钻头的破岩效率和使用寿命。 展开更多
关键词 尖锥形齿 齿顶角 前倾角 PDC钻头 有限元仿真 现场试验
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