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- 2016
滑动轴承润滑油膜厚度光纤动态精密检测模型
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Abstract:
为了实现滑动轴承关键参数润滑油膜厚度的精密动态检测,构建了基于双路光纤的油膜厚度动态精密检测模型,以对光纤传感器的非线性特性进行补偿并对油膜厚度动态信号中的噪声进行滤除。该模型系统集成强度调制式光纤检测技术、光强补偿技术、非线性校正与滤噪技术,由光纤传感器调制函数、调理电路、上位机处理3个模块组成,其原理与优势在于:基于光强调制原理实现了油膜厚度对接收光功率信号的调制;采用光强补偿技术有效消除了光功率波动及反射率变化对检测结果的影响;利用非线性校正与滤噪技术实现了光电信号与油膜厚度信号的精确映射。静态标定实验和滑动轴承油膜厚度动态检测实验结果证明了该模型的正确性。
To realize dynamic precision measurement for lubricating film thickness of journal bearings, a double??receiving optical fiber dynamic precision measuring model for oil film thickness was built. The model can compensate the nonlinearity of optical fiber sensor and filter the noise in the dynamic oil film thickness signal. The model was built through integrating intensity??modulated optical fiber measuring technology, light intensity compensation, nonlinear correction and filtering technology. The model consists of optical intensity modulation function module, and conditioning circuit module, and master computer module. The principle and advantages of the model are as follows: the received optical power is modulated by the oil film thickness using the light intensity modulation function; the effects of changing optical power and reflectivity on the measuring results are eliminated by light intensity compensation; and the accurate mapping between photoelectric signal and oil film thickness signal is finished by nonlinear correction and filtering technology. The correctness of the measuring model was verified by calibration experiment and dynamic measuring experiment on the oil film thickness of journal bearing
[1] | [1]姜彤, 周春阳, 徐永金, 等. 汽轮发电机中静止励磁轴电压的分析与抑制 [J]. 电力系统保护与控制, 2012, 40(6): 142??146. |
[2] | [2]陆霄露, 邓康耀. 采用激光诱导荧光法测量油膜厚度的研究 [J]. 内燃机学报, 2008, 26(1): 92??95. |
[3] | LU Xiaolu, DENG Kangyao. The study of film thickness measurement by laser induced fluorescence [J]. Transactions of CSICE, 2008, 26(1): 92??95. |
[4] | [3]王学锋, 郭峰, 杨沛然. 纳/微米弹流油膜厚度测量系统 [J]. 摩擦学学报, 2006, 26(2): 150??154. |
[5] | WANG Xuefeng, GUO Feng, YANG Peiran. A film measuring system for elastohydrodynamic lubrication from nano to micro thickness [J]. Tribology, 2006, 26(2): 150??154. |
[6] | [4]DWYER??JOYCE R S, HARPER P, DRINKWATER B W. A method for the measurement of hydrodynamic oil films using ultrasonic reflection [J]. Tribology Letters, 2004, 17(2): 337??348. |
[7] | [5]耿涛, 孟庆丰, 贾谦, 等. 薄衬层结构滑动轴承润滑膜厚度的超声检测方法 [J]. 西安交通大学学报, 2014, 48(8): 80??85. |
[8] | [12]张小栋, 谢思莹, 牛杭, 等. 光纤动态检测技术的研究与进展 [J]. 振动、测试与诊断, 2015(3): 409??416. |
[9] | ZHANG Xiaodong, XIE Siying, NIU Hang, et al. Research on dynamic measurement technology of fiber optic sensors and their developments [J]. Journal of Vibration, Measurement & Diagnosis, 2015(3): 409??416. |
[10] | JIANG Tong, ZHOU Chunyang, XU Yongjin, et al. Analysis and suppression of shaft voltage in turbonator with static excitation system [J]. Power System Protection and Control, 2012, 40(6): 142??146. |
[11] | GENG Tao, MENG Qingfeng, JIA Qian, et al. A method to measure thickness of lubricant film in thin??liner sliding bearings using ultrasonic reflection [J]. Journal of Xi’an Jiaotong University, 2014, 48(8): 80??85. |
[12] | [6]卢黎明. 基于超声波的液体滑动轴承润滑油厚度的测定 [J]. 润滑与密封, 2007, 32(5): 165??168. |
[13] | [7]ZHANG J, DRINKWATER B, DWYER??JOYCE R S. Thin oil??film thickness distribution measurement using ultrasonic arrays [J]. NDT&E International, 2008, 41(8): 596??601. |
[14] | [8]孙晓刚, 戴景民, 丛大成, 等. 推力轴承油膜厚度测量系统的研制 [J]. 计量学报, 2003, 24(2): 38??39. |
[15] | SUN Xiaogang, DAI Jingmin, CONG Dacheng, et al. Development of oil film thickness measuring system for thrust bearing [J]. Acta Meteorologica Sinica, 2003, 24(2): 38??39. |
[16] | [9]BINU S, MAHADEVAN P, CHANDRASEKARAN N. Fibre optic displacement sensor for the measurement of amplitude and frequency of vibration [J]. Optics and Laser Technology, 2007, 39(8): 1537??1543. |
[17] | [10]PERRONE G, VALLAN A. A low??cost optical sensor for noncontact vibration measurements [J]. IEEE Transactions on Instrumentation and Measurement, 2009, 58(5): 1650??1656. |
[18] | [11]CHOWDHURY S, LAUGIER M. Thin film stress measurement by instrumented optical fibre displacement sensor [J]. Applied Surface Science, 2007, 253(9): 4289??4294. |
[19] | [14]沈路. 数学形态学在机械故障诊断中的应用研究 [D]. 杭州: 浙江大学, 2010. |
[20] | [15]王晶, 徐光华, 张四聪, 等. 基于形态学滤波器的棘波提取技术 [J]. 中国生物医学工程学报, 2007, 26(1): 69??73. |
[21] | WANG Jing, XU Guanghua, ZHANG Sicong, et al. A spike detection method based on morphological filter [J]. Chinese Journal of Biomedical Engineering, 2007, 26(1): 69??73. |
[22] | [13]张平, 张小栋, 刘春翔. 双圈同轴式光纤位移传感器的输出特性 [J]. 西安交通大学学报, 2012, 46(3): 27??30. ZHANG Ping, ZHANG Xiaodong, LIU Chunxiang. Output characteristics of the displacement sensor with two??circle reflective coaxial fiber [J]. Journal of Xi’an Jiaotong University, 2012, 46(3): 27??30. |
[23] | LU Liming. The measurement of shaft locus of liquid sliding bearing [J]. Lubrication Engineering, 2007, 32(5): 165??168. |