内燃机轴系扭振阻尼系数的识别
doi: 10.3969/j.issn.0258-2724.2014.06.022
Identification of Torsional Damping Coefficients for Internal Combustion Engine Crankshafts
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摘要: 为了解决内燃机轴系扭振理论分析中阻尼系数难以选取的问题,提出了一种利用轴系角振动模态阻尼比识别轴系各主要部件扭振阻尼系数的方法.该方法将轴系多质量系统简化成当量扭摆系统,利用扭振能量理论推导了轴系角振动模态阻尼比与轴系各部件扭振阻尼系数的关系式.如果已知轴系角振动模态阻尼比,通过分析轴系扭振阻尼特性,并选择合适的轴系角振动模态,即可识别出对轴系扭振起主要作用的阻尼系数.对某6缸和4缸柴油机的仿真和试验研究表明,所识别的轴系部件扭振阻尼系数的最大误差为4.89%,也证明了本文方法的正确性.Abstract: In order to solve the difficulty of selecting the damping coefficients in torsional vibration theoretical analysis of internal combustion engine (ICE) crankshafts, an identification method of torsional damping coefficients of main crankshafts components was proposed based on the modal damping ratio of crankshafts angular vibration. In this method, the multi-mass system of crankshafts was simplified to an equivalent torsion pendulum system, and the relationship between the modal damping ratio of crankshafts angular vibration and the torsional damping coefficient of each crankshaft component was derived by vibratory energy theory. Thus, if the damping ratio of crankshafts angular vibration is given, the main torsional damping coefficients of crankshafts could be identified by analyzing the damping property of crankshafts torsional vibration and selecting a proper mode of angular vibration. As a case study, the damping coefficients of a 4-and a 6-cylinder diesel engine were identified by simulation and experiment. The results show that the identified torsional damping coefficients of the main crankshafts components obtained by simulation have a maximum error of 4.89%compared to the experimental one. This demonstrates the validity of the proposed identification method.
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Key words:
- ICE /
- crankshafts /
- torsional vibration /
- damping coefficient /
- modal damping ratio
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上官文斌,陈超,段小成,等. 发动机曲轴系统扭转振动建模与实测分析[J]. 振动、测试与诊断,2012,32(4): 560-567. SHANGGUAN Wenbin, CHEN Chao, DUAN Xiaocheng, et al. Modeling and experimental analysis of torsional vibration in engine crankshaft system[J]. Journal of Vibration, Measurement & Diagnosis, 2012, 32(4): 560-567. 朱向哲,袁惠群. 柴油机曲轴轴系非线性振动特性的数值研究[J]. 内燃机工程,2009,30(3): 65-69. ZHU Xiangzhe, YUAN Huiqun. Numerical study on nonlinear dynamic characteristic of crankshaft system of diesel engine[J]. Chinese Internal Combustion Engine Engineering, 2009, 30(3): 65-69. MENDES A, MEIRELLES P S, ZAMPIERI D E. Analysis of torsional vibration in internal combustion engines: modeling and experimental validation[J]. Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics, 2008, 222: 155-178. 李渤仲,陈之炎,应启光. 内燃机轴系扭转振动[M]. 北京:国防工业出版社,1985: 115-121. 李震,桂长林,孙军. 内燃机曲轴轴系振动分析研究的现状、讨论与展望[J]. 内燃机学报,2002,20(5): 469-474. LI Zhen, GUI Changlin, SUN Jun. Review of the researches on vibrations of crankshaft system in internal combustion engines[J]. Transactions of CSICE, 2002, 20(5): 469-474. 高品贤. 影响曲轴扭振计算与浏量间差异的几个主要因素[J]. 内燃机学报,1985,3(1): 31-38. GAO Pinxian. Some factors affecting the difference between. the computation and the measurement of the torsional vibration of the engine crankshaft[J]. Transactions of CSICE, 1985, 3(1): 31-38. 魏海军. 船舶轴系扭振计算中几个公式的修正[J].振动与冲击,2006,25(2):166-167. WEI Haijun.Modification of some formulas for calculating shaft torsional vibration[J]. Journal of Vibration and Shock, 2006, 25(2): 166-167. 王义,宋天相,宋希庚. 船用发动机扭振阻尼系数经验公式的拟合与评述[J]. 大连理工大学学报,1996,36(5): 590-594. WANG Yi, SONG Tianxiang, SONG Xigeng. Comment on empirical formulas for calculating marine engine damping coefficient[J]. Journal of Dalian University of Technology, 1996, 36(5): 590-594. WANG Yi, LIM T C. Prediction of torsional damping coefficients in reciprocating engines[J]. Journal of Sound and Vibration, 2000, 238(12): 710-719. 李渤仲,王义,宋天相. 单位气缸阻尼系数问题的研究(一):阻尼系数随曲柄转角的变化规律[J]. 内燃机学报,1993,11(2): 137-142. LI Bozhong, WANG Yi, SONG Tianxiang. Investigation on damping coefficient of torsional vibration per cylinder (Part 1):Experiment in variation with crankangle[J]. Transactions of CSICE, 1993, 11(2): 137-142. 王义,宋天相,李渤仲. 单位气缸阻尼系数问题的研究(二):阻尼系数变化的实验分析[J]. 内燃机学报,1996,14(3): 229-234. WANG Yi, SONG Tianxiang, LI Bozhong. Investigation on damping coefficient of torsional vibration per cylinder (Part 2) :Experiment in variation with crankangle[J]. Transactions of CSICE, 1996, 14(3): 229-234. 华春蓉,闫兵,董大伟,等. 识别运行状态下内燃机曲轴角振动模态参数的新方法[J]. 内燃机工程,2010,31(1): 93-96. HUA Chunrong, YAN Bing, DONG Dawei, et al. New method for identifying angular vibration modal parameters of IC engine crankshaft in operating condition[J]. Chinese Internal Combustion Engine Engineering, 2010, 31(1): 93-96. 华春蓉. 内燃机曲轴角振动模态识别方法的研究及应用[D]. 成都:西南交通大学,2011. 王长荣. 内燃机动力学[M]. 北京:中国铁道出版社,1990: 106-192. 徐恩彤. 机车柴油机轴系扭振计算中的几个问题[J]. 大连铁道学院学报,1994,15(1): 51-56. XU Entong. Some problems in calculation of torsional vibration for shaft system of diesel engine of locomotive[J]. Journal of Dalian Railway Institute, 1994, 15(1): 51-56.
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