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干摩擦对称黏滑响应的级数解及黏滑边界特性
引用本文:钱大帅,刘占生,王乐,解亮.干摩擦对称黏滑响应的级数解及黏滑边界特性[J].航空动力学报,2013,28(1):38-45.
作者姓名:钱大帅  刘占生  王乐  解亮
作者单位:哈尔滨工业大学能源科学与工程学院,哈尔滨,150001
摘    要:针对航空发动机中的摩擦振动问题,给出了对称黏滑运动摩擦力的分段表达式.利用谐波平衡方法推导了具有偶数次黏着的黏滑运动的级数形式解析解,并基于该解析解给出了参数平面内的黏滑边界线方程.黏滑运动响应仅包含奇次谐波成分,在奇次分数倍频处存在超谐次共振.当频率比小于0.4时,黏滑边界线呈现凸凹交替特征,局部极小值位于各阶超谐次共振频率处.黏性阻尼增大能够缩小无黏着运动的参数范围,但在各阶超谐共振频率附近,黏性阻尼增大会扩大无黏着运动的参数区域.

关 键 词:干摩擦  对称黏滑运动  级数解  黏滑边界  超谐次共振
收稿时间:2012/1/12 0:00:00

Series solution of symmetric dry frictional stick-slip motion and stick-slip boundary characteristics
QIAN Da-shuai,LIU Zhan-sheng,WANG Le and XIE Liang.Series solution of symmetric dry frictional stick-slip motion and stick-slip boundary characteristics[J].Journal of Aerospace Power,2013,28(1):38-45.
Authors:QIAN Da-shuai  LIU Zhan-sheng  WANG Le and XIE Liang
Affiliation:School of Energy Science and Engineering, Harbin Institute of Technology,Harbin 150001,China;School of Energy Science and Engineering, Harbin Institute of Technology,Harbin 150001,China;School of Energy Science and Engineering, Harbin Institute of Technology,Harbin 150001,China;School of Energy Science and Engineering, Harbin Institute of Technology,Harbin 150001,China
Abstract:To study frictional vibration problems in areo-engine,piecewise expression of frictional force in symmetric stick-slip motion was presented.Analytical series solution of symmetric stick-slip motion with even stops was derived by using harmonic balance method.Stick-slip boundary function in parameter plane was derived based on the series solution.Stick-slip response contained only odd harmonic components and super-harmonic resonances existed at odd fractional frequency ratios.When frequency ratio was less than 0.4,the stick-slip boundary curve had the feature of concave-convex alternation and its local minimums located at the super-harmonic resonant frequencies.Increase in viscous damping reduced the non-sticking parameter range at most frequency ratio ranges except near super-harmonic resonant frequencies,where larger viscous damping led to larger non-sticking parameter range.
Keywords:dry friction  symmetric stick-slip motion  series solution  stick-slip boundary  super-harmonic subresonant
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