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第 1 期                    张博, 等: 基于电容法的温度对舰船汽轮机油分水性影响研究                                       147

            4    结论                                                李坐社, 王建华. 汽轮机油分水性不同评价方法对比研究[J]. 润滑
                                                                   油, 2015, 30(3): 21–28]. doi: 10.3969/j.issn.1002-3119.2015.03.006.
                a. 不同油样的电容值-时间曲线变化特点说明,与                       [  7  ]  Tang  Jinwei,  Li  Yefeng,  Liu  Yongluo,  et  al.  Dielectric  constant
            室温相比,54 ℃条件下,从油水混合到分离结束,全                              method based montitoring method for turbine oil quality[J]. Thermal
            过程曲线重合度更高,油水均匀混合重复性好,同一                                Power Generation, 2015, 44(5): 50–54 (in Chinese) [唐金伟, 李烨
                                                                   峰, 刘永洛, 等. 基于介电常数法的汽轮机油质量监测[J]. 热力发
            油样在多次试验中水相微观液滴动能接近,油品分水
                                                                   电, 2015, 44(5): 50–54]. doi: 10.3969/j.issn.1002-3364.2015.05.050.
            性能稳定,表现出了优于室温的重复性和稳定性.
                                                               [  8  ]  Gong Pei, Liu Xiangxuan, Guo Lei, et al. Rapid analysis of water
                b. 无论是室温,还是54 ℃,分水速率曲线均表现
                                                                   content  in  lubricant  oil  based  on  the  dielectric  constant[J].
            出良好的重复性,验证了电容法评定汽轮机油分水性                                Lubrication Engineering, 2011, 36(11): 97–99 (in Chinese) [龚佩,
            的可靠性. 同一温度下,同一乳状液的分水速率和破                               刘祥萱, 郭磊, 等. 基于介电常数法的润滑油水分快速分析[J]. 润
            乳化时间与水相分布和运动态势关联小.                                     滑与密封, 2011, 36(11): 97–99]. doi: 10.3969/j.issn.0254-0150.2011.11.
                c. 结合微观形貌分析结果,确定用电容法评定汽                            023.
                                                               [  9  ]  R Surapol, K Srawut. Low-cost condition monitoring sensor for used
            轮机油分水性时,环境温度选择54 ℃为最佳.
                                                                   oil analysis[J]. Wear, 2005, (259): 1502–1506.
                d. 温度是影响舰船汽轮机油分水性的关键指标.
                                                               [10]  Yu Jiankeng, Wu Jiechang. Study of oil quality monitoring based on
            温度升高改变油品黏度、界面张力,加深油水混合液
                                                                   dielectric constant[J]. Instrument Technique and Sensor, 2019, (10):
            乳化程度,使得分水速率下降,引发破乳化时间变长.                               45–48 (in Chinese) [余坚铿, 吴杰长. 基于介电常数的油液质量检
            参 考 文 献                                                测仪[J]. 仪表技术与传感器, 2019, (10): 45–48]. doi: 10.3969/j.issn.
                                                                   1002-1841.2019.10.011.
            [  1  ]  Xia  Yanqiu,  Xu  Dayi,  Feng  Xin,  et  al.  Identification  and  content  [11]  Chen Keng, Shi Yonggang. Measurement methods of water content
                 prediction  of  lubricating  oil  additives  based  on  extreme  learning  in  oil  product[J].  Chemical  Analysis  and  Meterage,  2006,  15(3):
                 machine[J]. Tribology, 2020, 40(1): 97–106 (in Chinese) [夏延秋,  66–68 (in Chinese) [陈铿, 史永刚. 油品含水率的测量技术[J]. 化
                 徐大祎, 冯欣, 等. 基于极限学习机和优化算法的润滑油添加剂种
                                                                   学分析计量, 2006, 15(3): 66–68]. doi: 10.3969/j.issn.1008-6145.2006.
                 类识别与含量预测[J]. 摩擦学学报, 2020, 40(1): 97–106]. doi:    03.027.
                 10.16078/j.tribology.2019107.                 [12]  Liu  Yan,  Wang  Xiaotao.  Study  on  the  technology  of  dielectric
            [  2  ]  Zhang Bo, Li Zuoshe, Wang Jianhua. Evaluation of demulsibility on  constant  sensor  for  detecting  lubricating  oil  moisture  content[J].
                 turbine  oil  under  condition  of  oil-water  continuous  mixing[J].  Techniques of Automation and Applications, 2019, 38(8): 187–189
                 Lubrication Engineering, 2015, 40(8): 117–121 (in Chinese) [张博,  (in Chinese) [刘焱, 王晓涛. 润滑油含水率检测介电常数式传感器
                 李坐社, 王建华. 连续进水时汽轮机油抗乳化性能的评定[J]. 润滑                技术研究[J]. 自动化技术与应用, 2019, 38(8): 187–189]. doi: 10.3969/
                 与密封, 2015, 40(8): 117–121]. doi: 10.3969/j.issn.0254-0150.2015.  j.issn.1003-7241.2019.08.045.
                 08.024.                                       [13]  Li  Yujie,  Tian  Hongxiang,  Han  Qiuping.  Research  on  monitoring
            [  3  ]  Wang Jianhua, Zhang Bo, Xu Shengli. Conception of naval warship  water  content  in  lubricating  oil  based  on  capacitive  sensor[J].
                 special  oils ’  comprehensive  characteristics  evaluation  system  Metrology  &  Measurement  Technique,  2011,  38(8):  34–35
                 construction[J]. Lubricating Oil, 2019, 34(2): 41–47 (in Chinese) [王  (in Chinese) [李钰洁, 田洪祥, 韩秋平. 基于电容传感器的润滑油
                 建华, 张博, 许胜利. 海军舰船专用油料综合评定体系建设构想                   含水率监测研究[J]. 计量与测试技术, 2011, 38(8): 34–35]. doi:
                 [J]. 润滑油, 2019, 34(2): 41–47].                    10.3969/j.issn.1004-6941.2011.08.018.
            [  4  ]  GB/T  7305-2003.  National  standard  of  the  people ’s  republic  of  [14]  Mao Mianqing, Tian Hongxiang, Gong Xiaolong, et al. Research on
                 China. Standard test method for water separability of petroleum oils  resolution  of  a  sensor  for  measuring  water  content  in  lubricating
                 and synthetic fluids[S]. Beijing, 2003(in Chinese) [GB/T 7305-2003.  oil[J].  Metrology  &  Measurement  Technique,  2016,  43(8):  61–62
                 中华人民共和国国家标准. 石油和合成液水分离性测定法[S]. 北                  (in Chinese) [毛绵庆, 田洪祥, 龚小龙, 等. 油液水分传感器的分辨
                 京, 2003].                                         率研究[J]. 计量与测试技术, 2016, 43(8): 61–62].
            [  5  ]  SH/T 0191-1992. People's republic of China petrochemical industry  [15]  Ma  Yuanjia,  Yang  Yongming.  Improvement  on  micro  moisture
                 standard.  Lubricants  break  emulsification  assay  values[S].  Beijing,  measurement  of  lube  oil  with  grey  relative  analysis  method[J].
                 1992(in Chinese) [SH/T 0191-1992. 中华人民共和国石油化工行    Control and Instruments in Chemical Industry, 2013, 40(4): 460–463
                 业标准. 润滑油破乳化值测定法[S]. 北京, 1992].                    (in Chinese) [马远佳, 杨永明. 灰色关联分析法对润滑油微量水分
            [  6  ]  Zhang Bo, Li Zuoshe, Wang Jianhua. Contrastive research on oil-  测量的改进[J]. 化工自动化及仪表, 2013, 40(4): 460–463]. doi:
                 water separation characteristics of turbine oil by different evaluation  10.3969/j.issn.1000-3932.2013.04.008.
                 methods[J]. Lubricating Oil, 2015, 30(3): 21–28 (in Chinese) [张博,  [16]  Wang  Jianhua,  Zhang  Bo.  Investigation  on  water  separation
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