WORKSHOP 3 FRAME MODEL CREATION USING CURVES, AND ANALYSIS
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1 WORKSHOP 3 FRAME MODEL CREATION USING CURVES, AND ANALYSIS WS3-1
2 WS3-2
3 Workshop Ojetives Moel simple frme struture using geometri urves n 1D Br elements. The frme moel is to e onstrine using pin restrints, n the loing is to e onentrte fores n inertil loing (lo ue to grvity). An nlysis is to e one, n the results isplye. Prolem Desription Disply struturl moel eformtion n xil Br stress Frme mteril: Aluminum with E = 10 x 10 6 psi, ν = 0.3, n ensity = 2.61 x 10-4 lf*se 2 /in 4 Lo on frme De los, operting stti lo, n grvity lo Softwre Version MSC.Ptrn 2005r2 MSC.Nstrn 2005r2 WS3-3
4 Key Conepts n Steps: Dtse: rete new tse with Anlysis Coe = MSC.Nstrn n Anlysis Type = Struturl Geometry: rete urves to represent the frme struture Elements: mesh the urves with Br2 elements Los/BCs: onstrin the four orners of the frme, n pply the e los, operting stti lo, n grvity lo Mterils: speify n isotropi mteril for Aluminum Properties: rete 1D Bem property Anlysis: Solution Type = Nstrn Liner Stti, Solution Sequene = 101, Metho = Full Run Anlysis: ess nlysis results y tthing the XDB file to tse Results: plot isple struturl shpe n Br Stress, Axil X- Component results WS3-4
5 Step 1. Crete Dtse Crete new tse.. File / New.. Enter frme s the file nme.. Clik OK.. Choose Defult Tolerne. e. Selet MSC.Nstrn s the Anlysis Coe. f. Selet Struturl s the Anlysis Type. g. Clik OK. g f e WS3-5
6 Step 2. Crete Geometry of the Frme. Geometry: Crete / Curve / XYZ.. Selet on Vetor Coorintes List n enter <24 0 0>.. Apply. WS3-6
7 Step 2. Crete Geometry of the Frme (Cont.) e. Geometry: Trnsform / Curve / Trnslte.. Selet on Trnsltion Vetor n enter <24 0 0>.. Repet Count: 4.. Curve List: Selet Curve 1. e. Clik on Lel Control n selet urve. You shoul see 5 urves s shown in the figure. NOTE: We will leve on the Auto Exeute. This llows the step to e exeute utomtilly without hitting Apply. WS3-7
8 Step 2. Crete Geometry of the Frme (Cont.). Trnsform / Curve / Trnslte.. Selet on Trnsltion Vetor List n enter <0 48 0>.. Repet Count: 1.. Curve List: Selet ll Curves. (Curves 1:5) WS3-8
9 Step 2. Crete Geometry of the Frme (Cont.). Trnsform / Curve / Rotte.. Rotte Angle: 90.. Repet Count: 1.. Curve List: selet Curve 1 n 2. Selet urve 1 n 2. WS3-9
10 Step 2. Crete Geometry of the Frme (Cont.). Trnsform / Curve / Trnslte.. Trnsltion Vetor: <24 0 0>.. Repet Count: 1.. Curve List: selet Curve 11 n 12. e. Chnge Trnsltion Vetor to <96 0 0>. f. Apply. g. Chnge Trnsltion Vetor to < >. h. Apply. WS3-10
11 Step 2. Crete Geometry of the Frme (Cont.). Your moel shoul look like the following figure. The moel is me of ongruent urves.. Chnge view to Iso 3 View. WS3-11
12 Step 3. Meshing the Curves g. Chnge view to Iso3view. Elements: Crete / Mesh / Curve.. Unlik Automti Clultion.. Enter 12 for Glol Ege Length. e. Selet on Curve List n inlue ll urves. Clik n rg s shown in the figure to selet ll urves. f. Apply g. Turn off the urve lels n show the noe lels. e e f WS3-12
13 Step 4. Equivlene All Noes. Elements: Equivlene / All / Tolerne Cue.. Apply. Mgent olore irle inites tht noe ws elete. WS3-13
14 Step 5. Crete De Lo from Engine We will rete the first of three sets of los.. Los / BCs: Crete / Fore / Nol.. Selet on New Set Nme n enter e_lo.. Input Dt.. Enter < > for Fore <F1 F2 F3 >. e. OK. f. Selet Applition Region. g. Geometry Filter: FEM. h. Selet on Selet Noes. g h f WS3-14
15 Step 5. Crete De Lo from Engine (Cont.). Selet on the noes s shown in the figure.. A.. OK.. Apply. WS3-15
16 Step 5. Crete De Lo from Engine (Cont.). Selet on New Set Nme n enter e_lo_2.. Input Dt.. Enter < > for Fore <F1 F2 F3 >.. OK. e. Selet Applition Region. f. Geometry Filter: FEM. g. Selet on Selet Noes. f g e WS3-16
17 Step 5. Crete De Lo from Engine (Cont.). Selet on following Noes shown in the figure.. A.. OK.. Apply. WS3-17
18 Step 6. Crete Operting Engine Stti Lo. Selet on New Set Nme n enter op_stti_lo.. Input Dt.. Enter < > for Fore <F1 F2 F3 >.. OK. e. Selet Applition Region. f. Geometry Filter: FEM. g. Selet on Selet Noes. f g e WS3-18
19 Step 6. Crete Operting Engine Stti Lo (Cont.). Selet on the noes s shown in the figure.. A.. OK.. Apply. WS3-19
20 Step 7. Crete Grvity Lo on Frme. Los / BCs: Crete / Inertil Lo / Element Uniform. Enter grvity for New Set Nme.. Input Dt.. In Trns Ael <A1 A2 A3> enter < >. e. OK. f. Apply. The pplition region is not speifie expliitly y the user. The pplition region is rete y ll elements for whih ensity is speifie. e WS3-20
21 Step 8. Crete Constrints for the Frme Support Constrin the orner of the frme, fixing three trnsitionl egrees of freeom.. Los / BCs: Crete / Displement / Nol.. Selet on New Set Nme: n enter fix_se.. Selet Input Dt.. Enter <0 0 0> for Trnsltions <T1 T2 T3 > n Rottions <R1 R2 R3>. e. OK. f. Clik on Selet Applition Region. g. Selet Geometry for Geometry Filter. f e g WS3-21
22 Step 8. Crete Constrints for the Frme Support (Cont.). Pik the Point or Vertex ion.. Selet four points t the orners of the frme support, s shown in the figure.. A.. OK. e. Apply. WS3-22
23 Step 8. Crete Constrints for the Frme Support (Cont.) Although the fore iretions my pper vertil, they re in ft off ngle. You n swith to ifferent views to oserve this, or isply the omponents for eh vetor.. Reset Grphis. WS3-23
24 Step 9. Defining Mteril We will set luminum s the mteril of the frme.. Mterils: Crete / Isotropi / Mnul Input.. Selet on Mteril Nme n enter luminum.. Selet Input Properties.. Enter: Elsti Moulus: 10e6. Poisson Rtio: 0.3. Density: 2.61e-4. e. OK. f. Apply. f WS3-24 e
25 Step 10. Defining Properties for Frme Struture. Properties: Crete / 1D/ Bem.. Clik on Property Set Nme n enter l-plte.. Selet Input Properties.. Clik on Mt Prop Nme ion n selet luminum from Selet Mteril list. WS3-25
26 Step 10. Defining Properties for Frme Struture (Cont.). Br Orienttion: <0 0 1>.. Are: 10.. Inerti 1,1: 40.. Inerti 2,2: 8. e. Torsionl Constnt: 80. f. OK. e WS3-26
27 Step 10. Defining Properties for Frme Struture (Cont.). Use Lel Control to isply urve lels, n remove noe lels.. Clik on Selet Memers.. Selet ll urves. (Curves 1:18). A. e. Apply. e WS3-27
28 Step 11. Chek Assignment of Los n BC s to Lo Cse. Lo Cses: Moify.. Selet Defult in Selet Lo Cses to Moify.. Chek tht ll Los n BC s re selete.. Cnel. WS3-28
29 Step 12. Anlysis Run the nlysis of the entire moel.. Anlysis: Anlyze / Entire Moel / Full Run.. Selet Solution Type.. Choose LINEAR STATIC for Solution Type.. OK. e. Apply. WS3-29
30 Step 13. Aess Results Uner Anlysis We will tth the.x file in orer to ess the results.. Anlysis: Aess Results / Atth XDB / Result Entities.. Clik on Selet Result File.. Selet n tth the file frme.x.. OK. e. Apply. e WS3-30
31 Step 14. Results Crete Quik Plot.. Hie ll lels. Results: Crete / Quik Plot.. Selet A1:Stti Suse uner Selet Result Cses.. Selet Displements, Trnsltionl uner Selet Deformtion Result. e. Selet Deform Attriutes. f. Clik on Moel Sle n set the sle to g. Apply. e f WS3-31 g
32 Step 14. Results (Cont.) Disply shows the eforme shpe of the struture. WS3-32
33 Step 14. Results (Cont.). Clik Selet Results ion.. Selet Br Stresses, Axil uner Selet Fringe Result.. Quntity: X Component.. Apply. This ens this exerise. e. File / Close. WS3-33
34 WS3-34
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