| 我这有个和你类似的例子,希望对你有帮助: 
 梁的正弦加载的瞬态分析
 
 模型描述:
 1)悬臂梁顶端施加X向正弦变化的载荷,进行瞬态动力求解;
 2)单元为beam188;
 3)/post26中能提取末端的位移结果。
 
 模型如下图,已经通过模态、谐响应计算(如下图),但瞬态计算总是无法得到理想的结果。
 
 问题:
 我认为,梁顶端的位移输出为一正弦曲线,但ANSYS计算结果的时间-位移历程总是无法得到正弦曲线,不知是何原因?我觉得是力载荷的加载有问题,主要出现在激励频率的确定上,但总是调试不出来。请高手指点。
 
 命令流:
 /FILNAME,BTSanlysis
 /UNITS,SI
 /TITLE,Bond Tool计算
 
 D=3e-3!直径
 L=15e-3 !长度
 S=3.141593*(D/2)*(D/2)!截面积
 I=3.141593*D*D*D*D/64
 
 /PREP7!建模
 ET,1,BEAM188!梁单元 3,188,189
 MP,EX,1,620.53E9!弹性模量
 MP,DENS,1,14880
 MP,PRXY,1,0.29
 !MP,DAMP,1,0.0085
 
 secnum,1
 sectype,1,beam,CSOLID
 secdata,D/2,10,3!
 
 N,1,0,0
 N,21,0,-L
 FILL,1,21
 E,1,2
 EGEN,20,1,1,1,1
 
 /PNUM,NODE,1!图示节点及编号
 /PNUM,ELEM,1!图示单元及编号
 EPLOT!显示单元
 FINISH
 
 /SOLU
 ANTYPE,2!模态分析
 EQSLV,SPAR
 MXPAND,100, , ,1
 LUMPM,0
 PSTRES,0
 MODOPT,LANB,100,5000,100000, ,OFF
 
 OUTPR,BASIC,ALL
 d,1,uy,,,,,uz,rotx,roty,rotz
 SOLVE
 FINISH
 /POST1
 
 !做谐响应分析
 /SOLU
 ANTYPE,HARMIC! HARMONIC RESPONSE ANALYSIS
 HROUT,OFF! Print results as amplitudes and phase angles
 HROPT,full
 
 OUTPR,BASIC,1
 harfrq,5000,100000! FREQUENCY RANGE FROM 0 TO 7.5 HZ
 NSUBST,200! 30 INTERVALS WITHIN FREQ. RANGE
 KBC,1! STEP BOUNDARY CONDITION
 
 d,1,uy,,,,,uz,rotx,roty,rotz!very important!!
 !D,1,UX,10
 F,1,FX,200
 
 ALLS
 SOLVE
 FINISH
 
 /POST26
 NSOL,2,21,U,X,UX! STORE UX DISPLACEMENT OF NODE 21作为变!量2
 !ESOL,3,21,,SMISC,1,F1! STORE 摩擦力FORCE F1 OF ELEMENT 1 AS VARIABLE 3
 !由K1引起的弹性力F1.
 !PRVAR,2,3! PRINT VARIABLES 2 AND 3
 /GRID,1! TURN GRID ON
 /AXLAB,Y,DISP! Y AXIS LABEL AS DISP
 /GTHK,CURVE,2! CURVE LINES THICKNESS RATIO OF 2
 PLVAR,2
 
 !做瞬态分析
 /SOLu
 antype,trans
 trnopt,full
 outpr,all,all
 outres,all,all
 !alphad,0.014
 !betad,0.000092
 
 autots,on
 kbc,1
 !tintp,,0.25,0.5,0.5
 d,1,uy,,,,,uz,rotx,roty,rotz
 
 *do,i,1,2000,1
 t=i/100000
 time,t
 nsubst,50
 !施加约束条件
 Pressure=10*sin(2*3.14159*91743*t) !如何设置激励力的频率?f为其中的FX方 向振动的固有频率?
 F,1,FX,Pressure
 
 solve
 lswr,i
 *enddo
 fini
 
 /POST26
 NSOL,2,21,U,X,UX! STORE UX DISPLACEMENT OF NODE 21作为变!量2
 !ESOL,3,21,,SMISC,1,F1! STORE 摩擦力FORCE F1 OF ELEMENT 1 AS VARIABLE 3
 !由K1引起的弹性力F1.
 !PRVAR,2,3! PRINT VARIABLES 2 AND 3
 /GRID,1! TURN GRID ON
 /AXLAB,Y,DISP! Y AXIS LABEL AS DISP
 /GTHK,CURVE,2! CURVE LINES THICKNESS RATIO OF 2
 PLVAR,2
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