Citation: | LI Xicheng, TANG Xizhi, XUE Jibiao, ZHAN Ning, ZHANG Pengxiang. Effect of Chloride Ion Concentration in Drilling Fluid on Friction and Wear Properties of N80 Oil Casing Steel[J]. Materials and Mechanical Engineering, 2023, 47(1): 81-85. DOI: 10.11973/jxgccl202301012 |
[1] |
吕晓平, 田径, 王向阳, 等.钻井液油水比对2Cr13套管摩擦学性能的影响[J].石油机械, 2020, 48(9):121-127.
LÜ X P, TIAN J, WANG X Y, et al.The effect of oil-water ratio of drilling fluid on the tribological properties of 2Cr13 casing[J].China Petroleum Machinery, 2020, 48(9):121-127.
|
[2] |
刘业文, 胥豪, 程丙方, 等.中深层水平井套管磨损预测与分析技术[J].石油机械, 2019, 47(1):130-136.
LIU Y W, XU H, CHENG B F, et al.Prediction and analysis of casing wear in medium-deep horizontal wells[J].China Petroleum Machinery, 2019, 47(1):130-136.
|
[3] |
唐伟, 刘宝伟, 李继彪, 等.耐腐蚀合金套管磨损机理试验研究[J].石油机械, 2018, 46(6):98-104.
TANG W, LIU B W, LI J B, et al.Experimental study on wear mechanism of corrosion-resistant alloy casing[J].China Petroleum Machinery, 2018, 46(6):98-104.
|
[4] |
杨春旭, 孙铭新, 唐洪林.大位移井套管磨损预测及防磨技术研究[J].石油机械, 2016, 44(1):5-9.
YANG C X, SUN M X, TANG H L.Casing wear prediction and casing protection technology for extended reach well[J].China Petroleum Machinery, 2016, 44(1):5-9.
|
[5] |
LIU Q Y, MAO L J, ZHOU S W.Effects of chloride content on CO2 corrosion of carbon steel in simulated oil and gas well environments[J].Corrosion Science, 2014, 84:165-171.
|
[6] |
魏少波, 王新河, 王小增, 等.套管磨损正交试验及其影响因素的极差分析[J].石油机械, 2014, 42(12):27-31.
WEI S B, WANG X H, WANG X Z, et al.Casing wear orthogonal test and range analysis of influence factors[J].China Petroleum Machinery, 2014, 42(12):27-31.
|
[7] |
YU H, LIAN Z H, LIN T J, et al.Experimental and numerical study on casing wear in a directional well under in situ stress for oil and gas drilling[J].Journal of Natural Gas Science and Engineering, 2016, 35:986-996.
|
[8] |
MAO L J, CAI M J, WANG G R.Effect of rotation speed on the abrasive-erosive-corrosive wear of steel pipes against steel casings used in drilling for petroleum[J].Wear, 2018, 410/411:1-10.
|
[9] |
毛良杰, 蔡明杰, 田径, 等.钻井液类型对套管磨损行为的影响[J].材料科学与工程学报, 2020, 38(3):482-487.
MAO L J, CAI M J, TIAN J, et al.Effect of drilling fluid type on wear behavior of casing[J].Journal of Materials Science and Engineering, 2020, 38(3):482-487.
|
[10] |
傅栋, 靳晓伟, 薛继彪, 等.钻杆转速对石油套管磨损的影响[J].机械设计与研究, 2021, 37(4):115-119.
FU D, JIN X W, XUE J B, et al.Effect of drilling pipe rotation speed on wear of oil casing[J].Machine Design & Research, 2021, 37(4):115-119.
|
[11] |
张敏, 靳晓伟, 刘君, 等.滑动速度对铝合金石油套管干摩擦性能的影响[J].石油机械, 2021, 49(8):118-124.
ZHANG M, JIN X W, LIU J, et al.Effect of sliding speed on the dry friction performance of aluminum alloy casing[J].China Petroleum Machinery, 2021, 49(8):118-124.
|
[12] |
钱智超.油套管材料往复摩擦磨损特性研究[D].西安:西安石油大学, 2014.
QIAN Z C.Study on reciprocating friction and wear behavior between tubing and casing[D].Xi'an:Xi'an Shiyou University, 2014.
|
[13] |
彭先明.100V-Cr-Mo石油套管材料组织与性能研究[D].兰州:兰州理工大学, 2012. PENG X M.The research on microstructure and mechanical properties of oil casing 100V-Cr-Mo[D].Lanzhou:Lanzhou University of Technology, 2012.
|
[14] |
李学顺, 孙福洋, 侯斌.不同pH值的NaCl溶液对N80钢腐蚀磨损的影响研究[J].石油化工腐蚀与防护, 2021, 38(3):1-4.
LI X S, SUN F Y, HOU B.Effects of NaCl solutions with different pH values on corrosive wear of N80 steel[J].Corrosion & Protection in Petrochemical Industry, 2021, 38(3):1-4.
|
[15] |
韩成, 邱正松, 孟猛, 等.不同加重材料对N80钢表面磨损的实验研究[J].科学技术与工程, 2015, 15(3):61-65.
HAN C, QIU Z S, MENG M, et al.Influence of different weighting materials on the wear of N80 metal surface[J].Science Technology and Engineering, 2015, 15(3):61-65.
|
[16] |
GVLERYVZ H, ÇIMENOG LU H.Effect of thermal oxidation on corrosion and corrosion-wear behaviour of a Ti-6Al-4V alloy[J].Biomaterials, 2004, 25(16):3325-3333.
|
[17] |
MAO L J, CAI M J, LIU Q Y, et al.Effects of nano-SiO2 addition in drilling fluid on wear behavior of 2Cr13 steel casing[J].Tribology Letters, 2019, 68(1):1-16.
|
[18] |
MAO L J, CAI M J, LIU Q Y, et al.Influence of oil-water ratio on the wear of Cr13 casing lubricated with drilling fluid[J].Materials Today Communications, 2020, 25:101341.
|
[1] | LIU Yu, QIAO Jianchun, LI Mingsheng, QI Wei. Effect of Displacement Amplitude on Fretting Wear Behavior of ZG230-450 Cast Steel[J]. Materials and Mechanical Engineering, 2021, 45(7): 46-50. DOI: 10.11973/jxgccl202107009 |
[2] | WAN Xingzhi, LIU Xinlong, WANG Mengjie, CAI Zhenbing, PENG Jinfang, ZHU Minhao. Fretting Wear Behavior of AZ31B Magnesium Alloy at Different Temperatures[J]. Materials and Mechanical Engineering, 2018, 42(7): 6-11. DOI: 10.11973/jxgccl201807002 |
[3] | LI Guangyu, ZENG Xinrui, WANG Nan, GU Xuezhong, FANG Ziqi. Friction and Wear Behavior of Plasma Source Nitrided Austenitic Stainless Steel[J]. Materials and Mechanical Engineering, 2018, 42(5): 14-19. DOI: 10.11973/jxgccl201805003 |
[4] | XUE Maochao, ZHANG Hongxia, CHEN Hui. Preparation and Friction-Wear Property of Mo5Si3-20% Al2O3p Ceramic Composite[J]. Materials and Mechanical Engineering, 2017, 41(10): 24-27,32. DOI: 10.11973/jxgccl201710006 |
[5] | ZHU Xinbo, CHEN Jianjun, PAN Hongliang, WANG Zhengdong. Rolling Friction and Wear Behavior of Polyurethane/Q235 Steel Pair[J]. Materials and Mechanical Engineering, 2017, 41(9): 101-105. DOI: 10.11973/jxgccl201709020 |
[6] | GUO Jing, WANG Wen-jian, LIU Qi-yue, ZHOU Zhong-rong. Friction and Wear Behavior of Wheel/Rail Materials under Different Working Conditions[J]. Materials and Mechanical Engineering, 2013, 37(1): 43-46. |
[7] | ZHU Peng, FAN Dong-li, MA Hai-yan. Wear Behavior of Polyimide Composites during Run-in Stage[J]. Materials and Mechanical Engineering, 2011, 35(12): 102-106. |
[8] | SHANGGUAN Bao, ZHANG Yong-zhen, XING Jian-dong, SUN Le-min, QIU Ming, NIU Yong-ping. Current Carrying Friction and Wear Behaviors of Copper-10% Graphite Alloy[J]. Materials and Mechanical Engineering, 2009, 33(4): 43-45. |
[9] | MA Xing-chi, HE Guo-qiu, HE Da-hai, CHEN Cheng-shu, HU Zheng-fei, ZHANG Wei-hua. Electrical Sliding Wear Behavior of Copper-10% graphite Composites[J]. Materials and Mechanical Engineering, 2008, 32(12): 76-78. |
[10] | WANG Yong-hua, ZHU Hua, WU Zhao-hong, LI Gang. Wear of GCr15 Steel in Coupling of Rolling and Sliding[J]. Materials and Mechanical Engineering, 2006, 30(6): 23-25. |