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Chinese Journal of Engineering Design  2017, Vol. 24 Issue (5): 545-554    DOI: 10.3785/j.issn.1006-754X.2017.05.009
    
Reverse design and optimization of PDC bit cutter parameters
KUANG Yu-chun1, WANG Yuan-ji1, FENG Ming2, HAN Yi-wei1
1. School of Mechatronic Engineering, Southwest Petroleum University, Chengdu 610500, China;
2. Sichuan Chuanqing Oil Drilling Technology Co., Ltd., Guanghan 618300, China
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Abstract  

Aiming at the diversity and the flexibility of PDC (polycrystalline diamond compact) bit cutter design, a new reversal design method was put forward to improve the scientificity and efficiency of the PDC bit cutter design. The defective bit which cannot have ideal performance was used as the prototype bit. Second, the PDC bit cutter parameters were calculated based on the prototype bit. According to the PDC bit cutter parameters, the simulation model was used to analyze the reasonability of cutter parameters. For the results, according to the optimization model of wear rate and lateral force, the PDC bit cutter parameters were optimized. The research results show that the calculated parameters of cutters are accurate. Meanwhile, the optimized PDC bit has better performance. The reverse design and optimization methods provide a new design idea for the PDC bit customized design.



Key wordsPDC bit      cutter parameter      reverse design      deducing parameter      optimization     
Received: 25 October 2016      Published: 28 October 2017
CLC:  TE921  
Cite this article:

KUANG Yu-chun, WANG Yuan-ji, FENG Ming, HAN Yi-wei. Reverse design and optimization of PDC bit cutter parameters. Chinese Journal of Engineering Design, 2017, 24(5): 545-554.

URL:

https://www.zjujournals.com/gcsjxb/10.3785/j.issn.1006-754X.2017.05.009     OR     https://www.zjujournals.com/gcsjxb/Y2017/V24/I5/545


PDC钻头布齿参数的逆向设计与优化

针对PDC钻头布齿设计的多样性与灵活性,为了提高PDC钻头布齿设计的科学性与效率,提出了一种PDC钻头布齿参数逆向设计与优化的方法。以使用效果欠佳的钻头为原型,反求出原型钻头的布齿参数。在反求布齿参数的基础上,根据仿真计算模型的结果以及实际使用情况为钻头的布齿设计提供理论帮助。最后,根据磨损速度优化模型与侧向力平衡优化模型对布齿参数进行优化。研究结果表明:反求的布齿参数精度高,优化设计后的钻头具有更高的钻进速度与更大的钻进深度。布齿参数的逆向设计与优化方法为PDC钻头的个性化设计提供了一种全新的思路。


关键词: PDC钻头,  布齿参数,  逆向设计,  反求参数,  优化 
[[1]]   TSAI Y C, HUANG C Y, LIN K Y, et al. Development of automatic surface reconstruction technique in reverse engineering[J]. International Journal of Advanced Manufacturing Technology, 2008, 42(1):152-167.
[[2]]   王春香,孟凡娟.具有复杂内腔和外形的斗齿快速逆向设计[J].工程设计学报,2012,19(6):460-464. WANG Chun-xiang, MENG Fan-juan. The rapid reverse design of excavator bucket teeth with both complex inner cavity and outer shapes[J]. Chinese Journal of Engineering Design, 2012, 19(6):460-464.
[[3]]   胡双喜,钟鼎.复杂模型的快速参数化逆向建模研究[J].机械设计,2015,32(4):91-95. HU Shuang-xi, ZHONG Ding. Study on rapid parametric reverse for complex models[J]. Journal of Mechanical Design, 2015, 32(4):91-95.
[[4]]   李丽娟,高姗,林雪竹.基于Geomagic Qualify的工件偏差检测技术[J].制造业自动化,2014,36(10):35-38. LI Li-juan, GAO Shan, LIN Xue-zhu. Workpiece deviation detection techniques based on Geomagic Qualify[J]. Manufacturing Automation, 2014, 36(10):35-38.
[[5]]   杨迎新.PDC钻头切削力学研究[D].成都:西南石油大学机电工程学院,2003:16-19. YANG Ying-xin. PDC bit cutting mechanics research[D]. Chengdu:Southwest Petroleum University, School of Mechatronic Engineering, 2003:16-19.
[[6]]   代大良,王镇全,潘起峰,等.肯吉亚克油田非盐丘井PDC钻头设计及实验研究[J].石油钻采工艺,2009,31(3):5-9. DAI Da-liang, WANG Zhen-quan, PAN Qi-feng, et al. Design of PDC bit and its laboratory test for non saline dome wells in Kenkiyak Oilfield[J]. Oil Drilling & Production Technology, 2009, 31(3):5-9.
[[7]]   张义宽.计算机图形学[M].西安:西安电子科技大学出版社,2004:128-137. ZHANG Yi-kuan. Computer graphics[M]. Xi'an:Xi'an University of Electronic Science and Technology Press, 2004:128-137.
[[8]]   肖国益,胡大梁,廖忠会,等.川西须家河组地层PDC钻头结构参数优化及选型[J].石油钻探技术,2012,40(3):28-32. XIAO Guo-yi, HU Da-liang, LIAO Zhong-hui, et al. Parameter optimization and selection of PDC bits for Xujiahe formation in western Sichuan[J]. Petroleum Drilling Techniques, 2012, 40(3):28-32.
[[9]]   牛世伟,杨迎新,牛永超. PDC钻头布齿计算方法的研究现状及发展[J]. 石油机械,2015,43(9):6-9. NIU Shi-wei, YANG Ying-xin, NIU Yong-chao. Research status and development of calculation method for PDC bit tooth arrangement[J]. China Petroleum Machinery, 2015, 43(9):6-9.
[[10]]   曲冠政,曲大伟,郭瑞,等.PDC钻头复合片磨损速度模型研究[J].复杂油气藏,2013,6(1):62-64,71. QU Guan-zheng, QU Da-wei, GUO Rui, et al. Study on a swear rate model of PDC composite cutters[J]. Complex Hydrocarbon Reservoirs, 2013, 6(1):62-64,71.
[[11]]   田家林,付传红,杨琳,等.基于扭转振动的PDC钻头布齿角度对复合片磨损规律的影响研究[J].固体力学学报,2014,35(6):574-582. TIAN Jia-lin, FU Chuan-hong, YANG Lin, et al. Influence of the tooth-distributing angle of PDC bit on wear of composite plate under torsion vibration[J]. Chinese Journal of Solid Mechanics, 2014, 35(6):574-582.
[[12]]   梁尔国,李子丰,邹德永.PDC钻头综合受力模型的试验研究[J].岩土力学,2009,30(4):938-942. LIANG Er-guo, LI Zi-feng, ZOU De-yong. Experimental research on integrated mechanical model of PDC bit[J]. Rock and Soil Mechanics, 2009, 30(4):938-942.
[[13]]   石志明.PDC齿切削载荷的测试与分析[D].成都:西南石油大学机电工程学院,2006:39-51. SHI Zhi-ming. Testing and analysis cutting force of PDC cutters[D]. Chengdu:Southwest Petroleum University, School of Mechatronic Engineering, 2006:39-51.
[[14]]   蔡环.PDC钻头关键设计参数优化研究[D].青岛:中国石油大学(华东)石油工程学院,2008:54-61. CAI Huan. Optimization of key parameters for PDC bit's design[D]. Qingdao:China University of Petroleum, (EastChina), School of Petroleum Engineering, 2008:54-61.
[[15]]   陈玉中.基于UG的PDC钻头钻进仿真方法研究[D].成都:西南石油大学机电工程学院,2015:17-37. CHEN Yu-zhong. Research on the PDC bit drill simulation method based on UG software[D]. Chengdu:Southwest Petroleum University, School of Mechatronic Engineering, 2015:17-37.
[[16]]   邹德永,王瑞和.刀翼式PDC钻头的侧向力平衡设计[J].石油大学学报(自然科学版),2005,29(2):42-44. ZOU De-yong, WANG Rui-he. Lateral force balancing design of blade PDC bits[J]. Journal of the University of Petroleum(Edition of Nature Science), 2005,29(2):42-44.
[[17]]   陈洪涛,黄继庆,滕惠婷,等.防涡PDC钻头的研究与应用[J].钻采工艺,2010,33(2):76-78,140. CHEN Hong-tao, HUANG Ji-qing, TENG Hui-ting, et al. Research on anti-whirl technique for PDC bit[J]. Drilling and Production Technology, 2010, 33(2):76-78, 140.
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