[1] 王国蓉. 磷酸酯抗燃油劣化的原因分析及处理[J]. 华电技术, 2012, 34(7):38-41.WANG Guorong. Reason analysis and treatment of deterioration of phosphates ester fire resistant oil[J]. Huadian Technology, 2012, 34(7):38-41.
[2] 宋佛明. 高压抗燃油劣化原因分析及控制措施[J]. 热力发电, 2007, 36(7):80-81.SONG Fuming. Cause analysis of deterioration for high pressure EH fire-resistant oil and control measures thereof[J]. Thermal Power Generation, 2007, (7):80-81.
[3] 陈震, 金红, 凌驾政, 等. 磷酸酯抗燃油油质运行控制与维护分析[J]. 电力与能源, 2014, 35(2):192-196.CHEN Zhen, JIN Hong, LING Jiazheng, et al. Phosphate anti fuel oil operation control and maintenance analysis[J]. Power & Energy, 2014, 35(2):192-196.
[4] 赵瑞菊, 毋世行. 磷酸酯抗燃油体积电阻率超标的分析与处理[J]. 热力发电, 2011, 40(1):76-78.ZHAO Ruiju, WU Shihang. Analysis and treatment of volume resistivity exceeding set standard for fire-resistant oil made form phosphate esers.[J]. Thermal Power Generation, 2011, 40(1):76-78.
[5] 唐继超. 抗燃油运行时油质劣化原因分析及处理[J]. 机电信息, 2005(3):52-54.TANG Jichao. Cause analysis and treatment of quality deterioration for in-service fire-resistant oil[J]. Mechanical and Electrical Information, 2005(3):52-54.
[6] 何文波. 抗燃油酸值过高的分析处理[J]. 华电技术, 2014, 36(10):38-42.HE Wenbo. Analysis and treatment of high value of anti-fuel oil acid[J]. Huadian Technology, 2014, 36(10):38-42.
[7] 冯伟, 凌英, 张文, 等. 发电机组电液伺服阀失效分析[J]. 润滑与密封, 2014, 39(3):120-124, 119.FENG Wei, LING Ying, ZHANG Wen, et al. Failure analysis of electro-hydraulic servo valve for generator unit[J]. Lubrication Engineering, 2014, 39(3):120-124, 119.
[8] 毕法森. 伊敏发电厂抗燃油油质劣化分析及对策[J]. 热力发电, 2004, 33(7):68-70+87.BI Fasen. Cause analysis of quality deterioration for fire-resistant oil used in Yimin power plant and countermeasures thereof[J]. Thermal Power Generation, 2004, 33(7):68-70+87.
[9] 国家能源局. 电厂用磷酸酯抗燃油运行维护导则:DL/T571—2014[S]. 2014.
[10] 罗竹杰, 吉殿平. 火力发电厂用油技术[M]. 北京:中国电力出版社, 2006, 77-78.
[11] 张贤明, 袁健, 陈彬, 等. 磷酸酯抗燃油劣化机理及脱水净化技术研究[J]. 环境科学与技术, 2012, 35(1):129-133.ZHANG Xianming, YUAN Jian, CHEN Bin, et al. Cause of quality degradation and dehydration purification technology of phosphate ester fire-resistant oil[J]. Environmental Science & Technology, 2012, 35(1):129-133.
[12] Petroleum products and lubricants-Triaryl phosphate ester turbine control fluids (category ISO-L-TCD) specification:IEC 61221-2004[S]. 2004.
[13] 明菊兰, 李海燕, 余璐静, 等.能量色散X射线荧光光谱法检测抗燃油氯含量的研究[J]. 中国电力, 2017, 50(4):130-134.MING Julan, LI Haiyan, YU Lujing, et al. Detection of chlorine content in phosphate ester fire-resistant fluids using energy dispersive X-ray fluorescence spectrometry method[J]. Electric Power, 2017, 50(4):130-134.
[14] ASTM. Standard test method for multielement determination of used and unused lubricating oils and base oils by inductively coupled plasma atomic emission spectrometry (ICP-AES):ASTM D5185-13[S]. US:ASTM, 2013:1-9.
[15] Petroleum and related products——Guidance for the maintenance and use of triaryl phosphate ester turbine-control fluids:ISO/TS 11365:2011[S]. 2011:1-19.
[16] SASAKI A, UCHIYAMA S, KAWASAKI M. Varnish formation in the gas turbine oil systems[J]. Journal of ASTM International, 2008, 5(2):1-12.
[17] 钱艺华, 孟维鑫, 汪红梅. 涡轮机油氧化与漆膜产生的相关性试验[J]. 热力发电, 2017, 46(5):122-126.QIAN Yihua, MENG Weixin, WANG Hongmei. Experiment on relationship between turbine oil oxidation and varnish formation[J]. Thermal Power Generation, 2017, 46(5):122-126.
[18] 张楚, 杨建刚, 刘石, 等. 漆膜影响下滑动轴承性能分析[J]. 润滑与密封, 2017, 42(7):125-130.ZHANG Chu, YANG Jiangang, LU Shi, et al. Analysis of journal bearing characteristics under the influence of varnish[J]. Lubricating Oil, 2017, 42(7):125-130.
[19] 钱艺华, 孟维鑫, 汪红梅. 大型调峰机组透平油漆膜问题研究现状[J]. 润滑与密封, 2016, 41(10):103-106.QIAN Yihua, MENG Weixin, WANG Hongmei. Progress of turbine oil varnish in peak shhaving generator unit[J]. Lubrication Engieerin, 2016, 41(10):103-106.
[20] 林瑞玲, 庞晋山, 丘晖饶. 润滑油漆膜倾向指数测试及应用研究[J]. 润滑油, 2017, 32(2):50-54.LIN Ruiling, PANG Jinshan, QIU Huirao. Research on testing and application of VPR of lubricating oil[J]. Lubricating Oil, 2017, 32(2):50-54.
[21] 黄素华, 荆迪, 庄劼, 等. 燃气轮机润滑油系统的漆膜问题[J]. 电力与能源, 2016, 37(05):628-631.HUANG Suhua, JING Di, ZHUANG Jie, et al. Varnish problems of gas turbine lubrication oil system[J]. Power & Energy, 2016, 37(5):628-631.
[22] ASTM. Standard test method for measurement of lubricant generated insoluble color bodies in in-service turbine oils using membrane patch colorimetry:ASTM D7843-12[S]. 2012:1-4.
[23] 中华人民共和国国家质量监督检验检疫总局.运行涡轮机油中不溶有色物质的测定方法膜片比色法:GB/T 34580-2017[S]. 2017. |