Nonlinear Buckling Analysis of a Slender Column using ANSYS Workbench Mechanical

Nonlinear buckling analysis of a slender column is performed using the ANSYS Workbench Mechanical finite element analysis software.

Пікірлер: 15

  • @user-pp1tv1ln1x
    @user-pp1tv1ln1x5 жыл бұрын

    A good tutorial. Thank you.

  • @ngocthangnth
    @ngocthangnth4 жыл бұрын

    Thank you fo sharing this video. Just having a question about the material you used. Did you enter non-linear properties for the material when running the non-linear buckling analysis? Thanks!

  • @mertsi1340

    @mertsi1340

    3 жыл бұрын

    He used the same linear material in the analyses. The non-linearity was that he turned "large deflections" ON for the nonlinear analysis.

  • @larrypena1944
    @larrypena19446 жыл бұрын

    How many capacity must have my computer for make a nonlinear analysis in a reasonable time? I mean RAM memory or to the processor, my problem is a stiffened panel, 1370 mm the length and 600 mm the width,specifically a nonlinear buckling analisys, i have tried a lot of time but i dont have good results

  • @kirtankumarsahu8599
    @kirtankumarsahu85992 жыл бұрын

    hello sir, this is a really helpful video I found but I am having some queries, please answer me to understand it clearly. 1. Is it only geometric nonlinearity analysis? 2. Did you apply imperfection by applying a transverse load of 1 N? 3. Have you added material nonlinearity in this analysis? 4. Could you please tell me how can we add material nonlinearity?

  • @gdeepika1205
    @gdeepika12052 жыл бұрын

    Can this procedure be used for non linear analysis of concrete filled double skinned tube column?

  • @Owlzon
    @Owlzon2 жыл бұрын

    Hi, I'm getting mutiple spinkes in the Total Deformation in static structural after the eignvalue analysis. Is this normal? WHat I understood was buckling happens two times, could this happen?

  • @sprasanna1905
    @sprasanna19054 жыл бұрын

    Sir can you please help me with GMNIA analysis for a I section based column

  • @FEAnalysis

    @FEAnalysis

    4 жыл бұрын

    GMNIA analysis can be done by adding a shape imperfection using the UPGEOM command and also specifying a non-linear material model such as using BKIN elastic-plastic material properties. Unfortunately I could not generate on demand tutorials but I will keep this topic in mind for my next batch of videos. Thank you for your interest in my video tutorials.

  • @sprasanna1905

    @sprasanna1905

    4 жыл бұрын

    @@FEAnalysis for the model can you tell me is this good for high strength steel welded columns to consider this model and is this avaliable in ansys apdl

  • @krisztiansziklai6992
    @krisztiansziklai69923 жыл бұрын

    How can you read the 2nd buckling mode with upgeom?

  • @FEAnalysis

    @FEAnalysis

    3 жыл бұрын

    Thanks for viewing this video and your post. The Upgeom command syntax is: "UPGEOM, FACTOR, LSTEP, SBSTEP, Fname, Ext,--". You can read the load step and substep in the *.rst file corresponding to the mode shape you want to apply as a shape imperfection.

  • @krisztiansziklai6992

    @krisztiansziklai6992

    3 жыл бұрын

    ​@@FEAnalysis Even if I calculate two modes, there will be only one .rst file in the SYS-1/MECH folder. I used this command to read: upgeom,0.0005,1,1,C:\......\dp0\SYS-1\MECH\file,rst This always loads the 1st buckling mode. How can I apply the 2nd buckling mode as a shape imperfection? Thanks for your help.

  • @FEAnalysis

    @FEAnalysis

    3 жыл бұрын

    @@krisztiansziklai6992 All mode results would be stored in the same rst file e.g. listed in APDL for a sample modal analysis: SET TIME/FREQ LOAD STEP SUBSTEP CUMULATIVE 1 5.9392 1 1 1 2 8.6926 1 2 2 3 37.113 1 3 3 4 54.424 1 4 4 5 103.34 1 5 5 6 123.82 1 6 6 So simply try reading the second substep with this command (Load step 1, substep 2): upgeom,0.0005,1,2,C:\......\dp0\SYS-1\MECH\file,rst

  • @selmandjeffal6140
    @selmandjeffal61404 жыл бұрын

    How can we create a cantilever beam subjected to a non-conservative follower force by ansys !

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