workbench电机电磁场有限元分析.ppt
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1、9.0 New FeaturesLow Frequency Electromagnetic Analysis of MotorsWork Bench EnvironmentWorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentUpon entering the workbench environment,read in the design modeler geometry stored in motor2_base.agdb.1210/1/20042WorkshopANSYS v9.0Motor Analysis in th
2、e Workbench EnvironmentYou should see an end view of the motor geometry.Using the left mouse button(LMB)click on the blue dot adjacent to the triad in the lower right corner of the plot.This should result in the isometric view shown at right.The image can be dynamically rotated as follows:1)Position
3、 the mouse cursor on the display2)Hold down the middle mouse button(MMB)3)Move the mouse cursor10/1/20043WorkshopANSYS v9.0Motor Analysis in the Workbench Environment1)Bring up the enclosure tool as shown at right.This will be used to automatically create a mesh of the magnetic domain between and su
4、rrounding the imported geometry 2)Note the details that appear in the lower left pane after this selection is made.We will edit these default values.1210/1/20044WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentClick on the individual entries in the right hand column of the details pane a
5、nd edit them as shown below.Enclosure name changed to“Air”Shape:CylinderAlignment:AutomaticCushion:8 mmTarget:All BodiesMerge Parts?:Yes10/1/20045WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentAfter editing the details,right click on“Air”in the tree.In the drop down list that appears,l
6、eft click on“Generate”.This will create a cylindrical volume of magnetic domain in which to immerse the imported parts.10/1/20046WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentIn the tree,open the item“1 Part,5 Bodies”by clicking on the“+”symbol to the left of it.Do the same with the i
7、tem labeled“part”that appears below it.Note that the single part in the model consists of 5 individual bodies(stator,rotor,magnet1,magnet2,and“solid”).Right click on“solid”and in the drop down menu,request that it be hidden in the display.Note that the display of any individual bodies may be either
8、suppressed or restored in this manner.1210/1/20047WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentUse the Winding Tool Editor to bring up the“winding details”and“winding table”panes shown in the red boxes at right.1210/1/20048WorkshopANSYS v9.0Motor Analysis in the Workbench Environment
9、In the winding details pane,click on the cell to the right of“Center Plane”,then select Plane6 from the tree,then click apply(step 3 at right).This positions/orients the windings so that predefined plane6 is the winding midplane.123:Click“Apply”10/1/20049WorkshopANSYS v9.0Motor Analysis in the Workb
10、ench EnvironmentA winding table text file containing information describing the rotor coils(winding.txt)is in the local working directory.Read the table as shown at right.Click the cell to the right of“winding Table File”in the winding details pane and click on“”to browse for the file.12310/1/200410
11、WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentOnce the file is read in,make the following additional changes in the winding details pane:FD2:Slot Angle=22.5Clash Detection?=YesSetting clash detection to“yes”will bring up another row called“Bodies for Clash Detection”in the winding det
12、ails pane.Click the cell to the right,highlight“rotor”in the tree,and click Apply.This will trigger a check for interference between the defined windings and the rotor stack.234:Click“Apply”110/1/200411WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentAfter the winding specifications have
13、 been defined,create the winding by right clicking on“Winding”in the tree and left clicking on“Generate”in the drop down list.10/1/200412WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentOne nice way to visualize the windings is to right click on rotor in the tree and choose“Hide All Othe
14、r Bodies”in the drop down list.Then,in the tree,click on any of the 6 individual coils comprising the winding(A.1,A.2,B.1,B.2,C.1,C.2).For example,the location of coil A.1 is shown below.23110/1/200413WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentNow click on the Project tab and choos
15、e“New Simulation”2110/1/200414WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentOnce the geometry is successfully attached in Design Simulation,define the current and phase angles for conductors A,B,and C as shown at right:Conductor A:55 A 0 Conductor B:55 A 120 Conductor C:55 A 240 2110/
16、1/200415WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentPrepare to define magnetic flux parallel boundaries on the exterior of the modeled domain as shown at right.2110/1/200416WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentIn order to more easily select the external surfa
17、ces of the modeled domain,suppress all bodies except“Solid”.For example,suppression of the stator body is illustrated at right.Right click on each body to be suppressed to bring up the drop down menu.When you are done,only the“Solid”body should remain unsuppressed(have a“”adjacent to it rather than
18、an“x”).2110/1/200417WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentTo define flux parallel surfaces,select“Magnetic Flux Parallel”from the tree and click on the cell adjacent to“Geometry”in the magnetic flux details pane.Position the mouse cursor on any of the surfaces bounding the cyl
19、indrical volume and click with the left mouse button.After selecting the first surface,hold down the control button and select another.If necessary,release the Ctrl button,use the MMB to reorient the model as needed,and select the third(and final)surface.Click“Apply”in the magnetic flux parallel det
20、ails pane.2143:Select external surfaces of cylinder using Ctrl+LMB10/1/200418WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentRight click on any of the bodies in the tree and select“Unsuppress All Bodies”.Select“Rotor”from the tree and in the details pane,click on the arrow in the cell t
21、o the right of“Material”.From the drop down list,choose“Import”.21310/1/200419WorkshopANSYS v9.0Motor Analysis in the Workbench EnvironmentMake the selections shown in the“Import Material Data”dialogue box as shown at right.This will simultaneously import the BH curve for M14 steel into the database
22、 and assign this property to the rotor body.You may view the BH data(table and xy plot)by clicking on the arrow in the cell to the right of“Material”in the details pane and selecting“Edit M14 Steel”in the drop down list(see next slide).2134:Select“Edit M14 Steel”from the drop down list10/1/200420Wor
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