铁道学报
鐵道學報
철도학보
2014年
3期
14-18
,共5页
闻方宇%任尊松%孙守光%李玉怡
聞方宇%任尊鬆%孫守光%李玉怡
문방우%임존송%손수광%리옥이
高速道岔%有限元模型%轮轨接触%车轮横移
高速道岔%有限元模型%輪軌接觸%車輪橫移
고속도차%유한원모형%륜궤접촉%차륜횡이
high-speed turnout%FEM spatial model%wheel-rail contact%lateral displacement of wheel
基于采用 ANSYS-DYNA软件所建立的 LMA型踏面标准车轮和38号高速道岔辙叉区的三维有限元模型,研究车轮直向、逆向通过辙叉区时的轮岔接触状态和轮轨动力特性。通过所获得的车轮质心高度、接触斑位置和面积以及轮轨横向、垂向接触力的动态变化特征,分析车轮不同横移量对轮岔接触的影响。研究结果表明,车轮通过辙叉区时必然发生两点接触,且存在轮轨力转移过程;可动心轨式辙叉可消除可能引起车辆脱轨的道岔的“有害空间”,并明显改善车辆过岔性能,但叉心区走行轨线的不连续仍将引起车轮和道岔的振动;轮对横移量对轮-岔的接触状态和振动有一定影响。
基于採用 ANSYS-DYNA軟件所建立的 LMA型踏麵標準車輪和38號高速道岔轍扠區的三維有限元模型,研究車輪直嚮、逆嚮通過轍扠區時的輪岔接觸狀態和輪軌動力特性。通過所穫得的車輪質心高度、接觸斑位置和麵積以及輪軌橫嚮、垂嚮接觸力的動態變化特徵,分析車輪不同橫移量對輪岔接觸的影響。研究結果錶明,車輪通過轍扠區時必然髮生兩點接觸,且存在輪軌力轉移過程;可動心軌式轍扠可消除可能引起車輛脫軌的道岔的“有害空間”,併明顯改善車輛過岔性能,但扠心區走行軌線的不連續仍將引起車輪和道岔的振動;輪對橫移量對輪-岔的接觸狀態和振動有一定影響。
기우채용 ANSYS-DYNA연건소건립적 LMA형답면표준차륜화38호고속도차철차구적삼유유한원모형,연구차륜직향、역향통과철차구시적륜차접촉상태화륜궤동력특성。통과소획득적차륜질심고도、접촉반위치화면적이급륜궤횡향、수향접촉력적동태변화특정,분석차륜불동횡이량대륜차접촉적영향。연구결과표명,차륜통과철차구시필연발생량점접촉,차존재륜궤력전이과정;가동심궤식철차가소제가능인기차량탈궤적도차적“유해공간”,병명현개선차량과차성능,단차심구주행궤선적불련속잉장인기차륜화도차적진동;륜대횡이량대륜-차적접촉상태화진동유일정영향。
With the help of Software ANSYS-DYNA,the FEM spatial model of the wheel with the LMA tread profile and point rails of No.38 high-speed turnout frog was established.The wheel-turnout contact states and dynamic characteristics were studied corresponding to forward and backward movements of wheels passing frogs.The influence of different lateral wheel displacements on wheel-rail contacts was investigated by analysis on the wheel center height,contact position and area and dynamic changes of vertical and lateral wheel-rail con-tact forces.The results show as follows:When a train passes turnouts,contacts definitely occurs at two point and wheel-rail forces are subj ected to a transfer process;compared with a fixed-frog turnout,a movable-frog turnout avoids the harmful space of the turnout which may cause derailing and significantly improves the turn-out passing performance,however the discontinuous running tracks of wheel-rail contacts will lead to vibrations of wheels and turnouts;the lateral displacements of wheel sets impose some effects on wheel-rail contacts and vibrations.