[1] 刘岩生,张佳伟,黄洪春.中国深层—超深层钻完井关键技术及发展方向[J].石油学报,2024,45(1):312-324. LIU Yansheng,ZHANG Jiawei,HUANG Hongchun.Key technologies and development direction for deep and ultra-deep drilling and completion in China[J].Acta Petrolei Sinica,2024,45(1):312-324. [2] 张抗,张立勤,刘冬梅.近年中国油气勘探开发形势及发展建议[J].石油学报,2022,43(1):15-28. ZHANG Kang,ZHANG Liqin,LIU Dongmei.Situation of China’s oil and gas exploration and development in recent years and relevant suggestions[J].Acta Petrolei Sinica,2022,43(1):15-28. [3] ZHANG Jie,HAN Chuanjun,LIANG Zheng.Physics of failure analysis of power section assembly for positive displacement motor[J].Journal of Loss Prevention in the Process Industries,2016,44:414-423. [4] 任妍君,翟玉芬,路岩岩.抗高温高密度可逆油基钻井液体系[J].石油学报,2023,44(5):841-851. REN Yanjun,ZHAI Yufen,LU Yanyan.Reversible oil-based drilling fluid with high-temperature resistance and high density[J].Acta Petrolei Sinica,2023,44(5):841-851. [5] 王慧明,吕晓仁,王世杰.原油温度对丁腈橡胶溶胀及耐磨损性能的影响[J].润滑与密封,2015,40(9):30-34. WANG Huiming,Lü Xiaoren,WANG Shijie.Effects of temperature on swelling and wear resistance properties of nitrile rubber in the crude oil[J].Lubrication Engineering,2015,40(9):30-34. [6] 李波,杜斌,周雷,等.不同饱和度氢化丁腈橡胶耐高温性能[J].弹性体,2018,28(2):52-56. LI Bo,DU Bin,ZHOU Lei,et al.High temperature resistance of hydrogenated nitrile-butadiene rubber with different saturation degree[J].China Elastomerics,2018,28(2):52-56. [7] 杜斌,闫功臣,李伟东,等.氢化丁腈橡胶在油田介质中的性能变化研究[J].橡胶科技,2018,16(10):16-19. DU Bin,YAN Gongchen,LI Weidong,et al.Study on properties change of hydrogenated nitrile rubber after soaking in various oil field medium[J].Rubber Science and Technology,2018,16(10):16-19. [8] 郝艳捧,彭家豪,张智敏,等.水和盐水对GIS用三元乙丙密封圈热老化特性的影响[J].广东电力,2021,34(4):94-100. HAO Yanpeng,PENG Jiahao,ZHANG Zhimin,et al.Influence of water and saline on thermal aging characteristics of EPDM seal rings in GIS [J].Guangdong Electric Power,2021,34(4):94-100. [9] 欧阳江林.耐高温柴油螺杆钻具定子橡胶材料的研究[J].中国科技信息,2018(14):98-99. OUYANG Jianglin.Study on the rubber material of high temperature resistant diesel screw drilling tool stator[J].China Science and Technology Information,2018(14):98-99. [10] 宋烨,郭海春,王春阳,等.螺杆钻具用HNBR在柴油中的老化性能研究[J].特种橡胶制品,2019,40(3):17-19. SONG Ye,GUO Haichun,WANG Chunyang,et al.Study on aging properties of HNBR in diesel oil for screw driller[J].Special Purpose Rubber Products,2019,40(3):17-19. [11] 钟良春,况雨春,舒峰,等.考虑压力与温度影响的螺杆马达过盈量设计方法[J].工程设计学报,2021,28(3):321-328. ZHONG Liangchun,KUANG Yuchun,SHU Feng,et al.Design method of screw motor interference considering the influence of pressure and temperature[J].Chinese Journal of Engineering Design,2021,28(3):321-328. [12] 石昌帅,陈凯林,祝效华.螺杆定子衬套热老化本构参数及内腔变形规律研究[J].润滑与密封,2019,44(4):33-39. SHI Changshuai,CHEN Kailin,ZHU Xiaohua.Research on thermal ageing constitutive parameters and inner cavity deformation of screw stator bushings[J].Lubrication Engineering,2019,44(4):33-39. [13] SHI Changshuai,CHEN Yike,ZHU Xiaohua.Applicability evaluation and hysteresis heat effect of rubber constitutive model of PDM stator bushing at high temperature in deep well[J].Arabian Journal for Science and Engineering,2019,44(6):6057-6066. [14] SHI Changshuai,CHEN Kailin,ZHU Xiaohua,et al.Thermal failure of 2/3 PCP in high temperature environment and optimization analysis of stator and rotor meshing parameters[J].Journal of Loss Prevention in the Process Industries,2019,61:174-182. [15] 迟博.螺杆马达定子衬套热力耦合数值分析研究[D].成都:西南石油大学,2015. CHI Bo.Numerical analysis of thermal coupling of screw motor stator bushing[D].Chengdu:Southwest Petroleum University,2015. [16] 石昌帅,陈凯林,祝效华.基于单向解耦法的等壁厚螺杆泵橡胶衬套热滞后研究[J].工程科学与技术,2021,53(4):217-225. SHI Changshuai,CHEN Kailin,ZHU Xiaohua.Research on thermal hysteresis behavior of single-head PCP with equal thickness of hydrogenated nitrile in heavy oil recovery[J].Advanced Engineering Sciences,2021,53(4):217-225. [17] 祖海英,耿春丽,李大奇,等.基于Fe-safe螺杆泵定子橡胶疲劳裂纹形成寿命预测[J].机械强度,2018,40(1):195-199. ZU Haiying,GENG Chunli,LI Daqi,et al.Research on fatigue performance test and life prediction for stator rubber of PCP[J].Journal of Mechanical Strength,2018,40(1):195-199. [18] SHI Changshuai,WAN Xiaofeng,DENG Juan,et al.Research on fatigue lifetime prediction of stator rubber bushing based on rubber aged experiment[J].Journal of Testing and Evaluation,2022,50(4):2209-2226. [19] 裴硕.螺杆泵橡胶定子疲劳寿命预测方法研究[D].沈阳:沈阳工业大学,2020. PEI Shuo.Research on the fatigue life prediction method of rubber stator of screw pump[D].Shenyang:Shenyang University of Technology,2020. [20] TAVOSI S,ALIMARDANI M,GHOREISHY M H R,et al.Fatigue failure modeling in rubber stator of downhole motors:dependency to materials and geometry,and its application to life prediction[J].Engineering Failure Analysis,2024,159:108072. [21] 陈逸珂.螺杆马达定子衬套工作力学特性及疲劳寿命研究[D].成都:西南石油大学,2019. CHEN Yike.Study on the working mechanical characteristics and fatigue life of screw motor stator bushings[D].Chengdu:Southwest Petroleum University,2019. [22] 宋烨,王春阳,魏向辉,等.螺杆钻具定子用NBR高硬度橡胶胶料的研制[J].特种橡胶制品,2022,43(1):24-25. SONG Ye,WANG Chunyang,WEI Xianghui,et al.Development of NBR high hardness rubber compound for screw drill stator[J].Special Purpose Rubber Products,2022,43(1):24-25. [23] 宋建,罗西超,刘欣欣,等.丁腈橡胶衬套产品的寿命预测方法探讨[J].橡胶工业,2022,69(7):527-531. SONG Jian,LUO Xichao,LIU Xinxin,et al.Discussion on life prediction method of product with NBR bushing[J].China Rubber Industry,2022,69(7):527-531. [24] 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会.硫化橡胶或热塑性橡胶耐液体试验方法:GB/T 1690—2010[S].北京:中国标准出版社,2011. General Administration of Quality Supervision,Inspection and Quarantine of the People's Republic of China,Standardization Administration of the People's Republic of China.Rubber,vulcanized or thermoplastic-Determination of the effect of liquids:GB/T 1690-2010[S].Beijing:Standards Press of China,2011. [25] 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会.硫化橡胶或热塑性橡胶压缩应力应变性能的测定:GB/T 7757—2009[S].北京:中国标准出版社,2009. General Administration of Quality Supervision,Inspection and Quarantine of the People's Republic of China,Standardization Administration of the People's Republic of China.Rubber,vulcanized or thermoplastic-Determination of compression stress-strain properties:GB/T 7757-2009[S].Beijing:Standards Press of China,2009. [26] 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会.硫化橡胶或热塑性橡胶拉伸应力应变性能的测定:GB/T 528—2009[S].北京:中国标准出版社,2009. General Administration of Quality Supervision,Inspection and Quarantine of the People's Republic of China,Standardization Administration of the People's Republic of China.Rubber,vulcanized or thermoplastic-Determination of tensile stress-strain properties:GB/T 528-2009[S].Beijing:Standards Press of China,2009. [27] 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会.橡胶物理试验方法试样制备和调节通用程序:GB/T 2941—2006[S].北京:中国标准出版社,2007. General Administration of Quality Supervision,Inspection and Quarantine of the People's Republic of China,Standardization Administration of the People's Republic of China.Rubber-General procedures for preparing and conditioning test pieces for physical test methods:GB/T 2941-2006[S].Beijing:Standards Press of China,2007. [28] 贺向东,吴恒安,刘合,等.基于温胀和溶胀特性的螺杆泵定子型线设计[J].工程力学,2011,28(7):196-202. HE Xiangdong,WU Heng’an,LIU He,et al.Design of stator of PCP based on expansion and swelling analysis[J].Engineering Mechanics,2011,28(7):196-202. [29] 祖海英,冉中霖,宋玉杰,等.螺杆泵定子温胀溶胀耦合变形及密封特性[J].润滑与密封,2022,47(4):22-27. ZU Haiying,RAN Zhonglin,SONG Yujie,et al.Coupling deformation of thermal expansion and swelling and sealing characteristics of progressive cavity pump stator[J].Lubrication Engineering,2022,47(4):22-27. [30] 祝效华,迟博.螺杆钻具定转子热力耦合行为[J].石油学报,2016,37(8):1047-1052. ZHU Xiaohua,CHI Bo.Thermal-mechanical coupling behavior for screw drill stator and rotor[J]. Acta Petrolei Sinica,2016,37(8):1047-1052. [31] 李明.影响螺杆泵密封性能的直接因素分析[J].化学工程与装备,2016(3):136-138. LI Ming.Analysis of direct factors affecting the sealing performance of screw pumps[J].Chemical Engineering and Equipment,2016(3):136-138. [32] 操建平,孟庆昆,高圣平,等.螺杆泵漏失机理研究[J].机械设计与制造,2012(4):153-155. CAO Jianping,MENG Qingkun,GAO Shengping,et al.Research on slippage mechanism of progressing cavity pump[J].Machinery Design and Manufacture,2012(4):153-155. [33] 叶卫东,宋玉杰,杜秀华,等.单螺杆泵密封性能的有限元分析[J].润滑与密封,2008,33(4):91-94. YE Weidong,SONG Yujie,DU Xiuhua,et al.Finite element analysis of sealing performance of single progressive cavity pump[J].Lubrication Engineering,2008,33(4):91-94. [34] WEI Y T,TIAN Z H,DU X W.A finite element model for the rolling loss prediction and fracture analysis of radial tires[J].Tire Science and Technology,1999,27(4):250-276. [35] MCALLEN J,CUITINO A M, SERNAS V.Numerical investigation of the deformation characteristics and heat generation in pneumatic aircraft tires:part I.Mechanical modeling.Finite elements in analysis and design,1996,23(2/4):241-263. |