Catia V5 Ebook Video And Tutorials For Beginner
CATIA (Computer Aided Three Dimensional Interactive Application).Learn the basic command of catia one by one and improve yourself.Catia software are used in infrastructure,machine design,weld design ,part design,mold design,tooling design,drafting,assembly design,sheet metal design.etc.Get the free ebook ,guide and video of catia here.

Cad Application Software

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Cad application software is the software that allows the user to design the product.It allows the user to give commands to do the geometric modelling to interact with the database and to display the cad model.Allows the user to generate plot files and to store data for later use.
In workstations usually a copy of the Cad software is loaded on to each system.

Powerful application software are available for

  1. Design and analysis of components
  2. Finite element analysis
  3. Drafting

 

Cad Cam system

By catia programmer

The qualities of a good cad cam software may be listed as follows:-

  1. Interactive , three dimensional modelling.
  2. Choice of modelling type, either surface modelling or solid modelling.
  3. Ability to model assemblies and their connections.
  4. Interfaces closely with analysis tools such as FEA, dynamic analysis,mass and section properties,and other modules.
  5. Capability to edit the geometry, including :undo"operations.
  6. Storage of the part description in terms of geometry,topology, dimensions , tolerances,surface finish and ability to store and attach engineering notes to the geometric entities.
  7. Printout the part description in terms of standard engineering drawing format.

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Defining-the-Bend-Allowance

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This section explains the calculations related to folding/unfolding operations.
When a bend is unfolded, the sheet metal deformation is represented by the
bend allowance V defined by the formula:
L = A + B + V


where:
L is the total unfolded length
A and B the dimensioning lengths as defined on the figures below:

 

Bend-Allowance (2)

By catia programmer

Another way to compute the sheet metal deformation is the neutral fiber
definition (K Factor):
W = a * (R + k * T)
where:
W is the flat bend width
R the inner bend radius
T the sheet metal thickness
a the inner bend angle in radians.
If b is the opening bend angle in degrees:
a = p * (180 - b) / 180
Physically, the neutral fiber represents the limit between the material
compressed area inside the bend and the extended area outside the bend.
Ideally, it is represented by an arc located inside the thickness and centered
on the bend axis. Therefore the K Factor always has a value between 0 and
0.5.

 

Bend Allowance

By catia programmer

Continued....
When you define the sheet metal parameters, a literal feature defines the
default K Factor, according to the DIN standard:
K = (0.65 + log(R / T) / 2) / 2
This formula can be deactivated or modified using Knowledge Advisor
workbench.
When a bend is created, the bend K Factor and the bend allowance literals
are created.
Two cases may then occur:
If the Sheet Metal K Factor has an activated formula and uses the
default bend radius as input parameter, the same formula is activated
on the bend K Factor with the bend radius as input.
Else the bend K Factor is a formula equal to the Sheet Metal K Factor.
The bend allowance literal is equal to a formula representing the use of the
bend K Factor. This formula is fairly complex and it is strongly recommended
not to delete it.
V = a * (R + k * T) – 2 * (R + T) * tan ( min(p/2,a) / 2)
Though it is possible to deactivate the formula to enter a fixed value.
Finally, the bend flat width is computed from the bend allowance value.

 

Specify A Working Plane

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The next step is to create a two-dimensional profile of the part. The Sketcher Work
Bench is a two-dimensional (planar) work area. To use the Sketcher Work Bench,
you must specify which Plane the profile is to be created on. Specifying the Plane
can be done several different ways.
3.1 Select (highlight) the desired Plane from the graphical representation in
the center of the screen as shown in Figure 1.5. Notice, as a particular
Plane is selected, the equivalent Plane in the Specification Tree is
highlighted. If the Specification Tree isn’t showing the branches with the
Plane, it will need to be expanded. To do this, select the Plus symbol
to the left of the Specification Tree or double click on the branch you
want expanded.
3.2 The step described above can be reversed. Select the Plane in the
Specification Tree and the coordinating plane in the center of the screen
will also be highlighted.
3.3 Other Planes, surfaces and/or other planner objects can also be selected to
define the Sketcher Plane. This option will be covered in more detail
later in the book.

 

Start CATIA V5

By catia programmer


From the NT Desktop, double click on the CATIA V5R5 icon. Be patient, it may
take a few moments to bring up the CATIA V5 start logo and the actual CATIA V5
working window. Figure 1.3 shows what the screen should look like.
If you are not able to finish all of the steps in this lesson in one session, you can jump
to Step 23, which covers saving and exiting CATIA V5. This will allow you to save
your work for your next session

2 Select The Sketcher Work Bench.
Every time you start CATIA V5, the CATIA V5 screen will appear as it does in
Figure 1.3. The “Welcome to CATIA V5” pop-up window will prompt you to select
a work bench. The default work bench is Product Structure. For this lesson, you
will need to select the Sketcher Work Bench. Notice, as you select the Sketcher
Work Bench that the tool bars on the right hand of your screen change and the
“Welcome to CATIA V5” pop-up window disappears.

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Modifying the Bend Extremities

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This section explains how to change the bend extremities.
Click the Parameters icon .
The Sheet Metal Parameters dialog box is displayed.
The second tab concerns the bend extremities.
A combo box displays the six possible axial relimitations for the straight bend:
Minimum with no relief: the
bend corresponds to the
common area of the
supporting walls along the
bend axis.
Square relief: a square relief
is added to the bend
extremity. The L1 and L2
parameters can be modified
if need be.
Round relief: a round relief
is added to the bend
extremity. The L1 and L2
parameters can be modified
if need be.
Linear: the unfolded bend is
split by two planes going
through the corresponding
limit points (obtained by
projection of the bend axis
onto the edges of the
supporting walls).
Tangent: the edges of the
bend are tangent to the
edges of the supporting
walls.
Maximum: the bend is
calculated between the
furthest opposite edges of
the supporting walls.

 

Sheet Metal Parameters

By catia programmer



This task shows you how to configure the sheet metal parameters.
1. Click the Parameters icon .
The Sheet Metal Parameters dialog box is displayed.
2. Enter 1mm in the Thickness field.
3. Enter 5mm in the Bend Radius field.
4. Select the Bend Extremities tab.
5. Select Tangent in the Bend Extremities combo list.
An alternative is to select the bend type in the graphical combo list.
6. Click OK to validate the parameters and close the dialog box.
The Sheet Metal Parameters feature is added in the specification tree.
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About Me

I am Ravi Prakash from Bhopal (India) Mechanical Engineers working in GEI IND SYS LTD Leader in Air Cooled Steam Condenser and Air Cooled Heat Exchanger .I Love Catia v5 Software very much and tried to make my blog as beautiful as i can . If you have query related to me or my blog email me uitmech@gmail.com