中国铁道科学
中國鐵道科學
중국철도과학
CHINA RAILWAY SCIENCE
2010年
1期
32-37
,共6页
板式无砟轨道%路基%车辆%耦合%振动特性
闆式無砟軌道%路基%車輛%耦閤%振動特性
판식무사궤도%로기%차량%우합%진동특성
Slab ballastless track%Subgrade%Vehicle%Coupling%Vibration characteristics
运用弹性系统动力学总势能不变值原理及形成矩阵的"对号入座"法则,建立列车-板式无砟轨道-路基的竖向振动方程组,用Matlab编制相应计算程序,并用ANSYS软件验证,分析在随机不平顺激扰下,列车高速运行时板式无砟轨道不同纵向连接形式对列车-板式尤砟轨道-路基系统振动特性的影响.研究表明:板式无砟轨道纵向连接形式对车体垂向加速度、钢轨垂向加速度、轮轨垂向力、扣件压力的影响极小,但对板式无砟轨道各部件及路基受力有较大影响,轨道板与底座纵连,可以大大降低轨道板和底座的振动和动应力,无砟轨道动力特性总体较为优良.
運用彈性繫統動力學總勢能不變值原理及形成矩陣的"對號入座"法則,建立列車-闆式無砟軌道-路基的豎嚮振動方程組,用Matlab編製相應計算程序,併用ANSYS軟件驗證,分析在隨機不平順激擾下,列車高速運行時闆式無砟軌道不同縱嚮連接形式對列車-闆式尤砟軌道-路基繫統振動特性的影響.研究錶明:闆式無砟軌道縱嚮連接形式對車體垂嚮加速度、鋼軌垂嚮加速度、輪軌垂嚮力、釦件壓力的影響極小,但對闆式無砟軌道各部件及路基受力有較大影響,軌道闆與底座縱連,可以大大降低軌道闆和底座的振動和動應力,無砟軌道動力特性總體較為優良.
운용탄성계통동역학총세능불변치원리급형성구진적"대호입좌"법칙,건립열차-판식무사궤도-로기적수향진동방정조,용Matlab편제상응계산정서,병용ANSYS연건험증,분석재수궤불평순격우하,열차고속운행시판식무사궤도불동종향련접형식대열차-판식우사궤도-로기계통진동특성적영향.연구표명:판식무사궤도종향련접형식대차체수향가속도、강궤수향가속도、륜궤수향력、구건압력적영향겁소,단대판식무사궤도각부건급로기수력유교대영향,궤도판여저좌종련,가이대대강저궤도판화저좌적진동화동응력,무사궤도동력특성총체교위우량.
The vertical vibration equations of train-slab ballastless track-subgrade system were formulated by using the principle of total potential energy with stationary value in elastic system dynamics and the "set-in-right-position" rule for formulating matrixes. The corresponding program was developed with the Matlab language, and was verified by the calculation result of Ansys software. With the program, the in-fluence of different longitudinal link modes of the slab ballastless track on the vertical vibration characteris-tics of train-slab ballastless track-subgrade system under random irregularity excitation at high running speed was studied. The calculated results show that the longitudinal link mode of slab ballastless track has little effect on vehicle vertical acceleration, rail vertical acceleration, wheel/rail vertical force and fastening pressure force, but has significant influence on the mechanical force of each part of slab ballastless track and the subgrade. The vertical connection of track slab and the concrete base can significantly decrease the vibration and the dynamic stress of the slab and the concrete base. The dynamic characteristics of the bal-lastless track are excellent as a whole.