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  1. Home/
  2. jeya soorya/
  3. 2D MESHING ON THE INSTRUMENTAL PANEL

2D MESHING ON THE INSTRUMENTAL PANEL

OBJECTIVE: The main aim of this project is to mesh the half of the IP console model as per the quality criteria shown below and to assign thickness. QUALITY CRITERIA:  S.No  Quality Criteria  Value  1 Target/Average length   4 2 Minimum Length  2 3 Maximum Length  6 4 Aspect â€¦

  • ANSA
  • jeya soorya

    updated on 11 Mar 2021

OBJECTIVE:

The main aim of this project is to mesh the half of the IP console model as per the quality criteria shown below and to assign thickness.

QUALITY CRITERIA: 

S.No 

Quality Criteria 

Value 

1

Target/Average length  

4

2

Minimum Length 

2

3

Maximum Length 

6

4

Aspect 

3

5

Warpage

15

6

Skewness

45

7

Jacobian 

0.7

8

Minimum Quad Angle 

45

9

Maximum Quad Angle 

135

10

Minimum  Tria Angle 

30

11

Maximum Tria Angle 

120

10

Tria Percentage 

15

PROCEDURE:

SWITCH PANEL:

GEOMETRY CLEAN UP AND MIDSURFACE EXTRACTION:

  • Imported the given .stp file in the ANSA work page.
  • Checked for the orientation i,e. the upper part of the model should be in gray color meaning positive and the lower part in yellow color meaning negative.
  • The issues with orientation are cleared using the topo module-->faces-->topo.
  • The resolution of the CONS is improved using Auxiliaries--> fine from topo module or perimeters-->length from mesh module. 
  • The model is then subjected to a geometry checkup to check any free edges between the models, duplicate surface, irrelevant CONS using the option tools--> checks-->geometry.
  • Some geometrical errors are cleared using the Auto fix option and some are manually done using options like release hot points, release cons, topo, faces cut, etc. from the Topo module.
  • The geometrical errors are fixed and measured the model for different thicknesses using the Utilities-->measure option.
  • Since the model is varying for thicknesses, using the options faces-->middle-->single, faces-->offset from topo module, the manual mid-surface extraction is done.
  • Also options like curves-->create, CONS-->project,points-->new,faces-->new,cut,topo etc. for creating the mid-surface.
  • By using the focus toolbar while selecting the PID region from the features selection toolbar, the mid-surface is viewed separately.
  • Geometry check-up is done and a property ID is created, so the mid-surface is organized.
  • By default, ANSA creates a steel material ID, which is defined by marking the check box so that the material is assigned to the model.
  • The surfaces are split accordingly to attain good mesh flow and to avoid element failures using the topo module--> faces-->cut option.
  • To check whether the mid-surface is perfectly captured, the transparency is turned ON to the parent geometry while keeping the Shadow mode ON and draw mode to PID from the drawing styles.

                                 1.Comparison between Mid-surface and parent geometry.

                                                                2.Mid-surface

MESH GENERATION:

  • The Quality criteria are applied to the model using utilities--> Quality criteria as shown below,

                                              3.Quality Criteria

  • Mesh parameters are applied as shown below, using utilities--> mesh parameter.

                                             4.Mesh Parameter

  • The perimeter elemental length of 4 mm is applied to the model using the mesh module --> perimeter--> length option.
  • The split surfaces are meshed one by one using mesh module--> mesh generation--> Best and spot mesh option.
  • During meshing the opposite trias, back to back trias, trias present at the edges, rotational quads can be removed using shell mesh--> reconstruct option.
  • Trias present at edges, fillet areas, pattern formation, opposite trias can be avoided using split, swap, reconstruct, edge2 perimeter, Num +/- options.
  • The elements which fail for quality can be viewed by using the Draw mode toolbar --> hidden option and corrections are done for the elements which fail for quality.
  • The smooth-->shell mesh option is used to attain good mesh flow.

                                                             5.Meshed Model

THICKNESS ASSIGNMENT:

  • By measuring the varying thicknesses, property Ids are created with the thickness values and assigned to the model.
  • The thickness assigned to the model can be viewed using utilities--> quality criteria--> presentation parameters --> Draw shell as solid.

                                                           6.Thickened model

 

  • finally, saved the file.

RESULT:

Hence, the Half part of the Ip console is meshed as per the quality criteria given and assigned thickness to it.

LINK TO VIEW THE MODEL:

IP CONSOLE MODEL

 

 

 

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