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Welcome back in this tutorial we will solve exercise for assembly design. So we want to create
this assembly. So for this the part from this these are the part from this assembly. So at
first we will have to create these parts. So let's click on start mechanical design part design.
Okay. Now this part will be horizontally in assembly. So we will select the horizontal play.
I click on sketch. Then click on arrow below rectangle and select center rectangle
and create one rectangle. Then using constraint give the parameters
double click. So here the length is 150 and width is 60. 150 okay.
Then there is this cut is there. So we can create that cut also symmetric. Suppose around this
axis again rectangle.
okay.
Then give the parameter at first make it symmetric. So select this line control this line and
axis and constraint depending dialogue of symmetry. Okay. Then the parameter is 20 by 10.
So we will constraint. So this is 20 and this is 10.
Okay. Then remove unwanted area.
Trim it. Quick trim. Double click on quick trim.
Okay. Let's skip. Then we want to mirror this. So far that we will create one vertical axis.
So select this area and mirror around this axis. And then trim.
Okay. Exit all bench. Then convert this into pad. Click on pad.
Then give the thickness of 10. Okay.
Then in the side there is a drop angle is there. From here it is 75 that means from vertical it will be 15 degree.
So we will give apply a drop of 15 degree. So click on drop. It is on the these horizontal edges.
So drop select faces to drop. So this face and this face.
Then select neutral element. So we will keep the bottom element as a neutral because we want to go inside.
And give the angle of 15 degree. Preview. So it is coming outside. We want it inside.
So reverse the direction by clicking on this arrow. Preview.
All right. It went inside. Okay. So in this way this part is created.
When save this part. Save. Click on save. And give the name as top. So while creating assembly.
Always use the proper name as per the assembly. So we will give it name top.
Save.
The next part is this one. Now this part is going to be vertical in assembly. So we will create this part on
vertical plane. So start mechanical design, part design. Okay. And select this vertical part,
vertical plane and click on sketch. Now we will have to create this sketch.
So just pan it down. Take the
and create it.
Okay.
Okay. Then we want it symmetric. So we will create one of vertical axis.
Then we will select this point. Control this point.
And or basically actually we will
okay. Select this point. This axis.
Constantly depending dialogue. Same way for this point. This point. This point.
Okay. Then this point.
Okay. And give the parameters. So per 60 and 20 by 10. So for this we will give constraint.
This point.
Okay. This point to this point. We want it to be 60.
Okay.
Then just pull this line. And for this it is 20. And this is 10.
Okay. Then next is total it is 100. So that we will give it. This line to this horizontal line.
Okay. Then angle 75 degree angle. So constraint. Select this line. This line and angle of 75 degree.
Okay. As it is symmetric it will be applied here. Take it outside.
Okay. The outside shape is ready. Then this cut is required here.
So we will create this shape.
Skip. Then the parameters are 60, 20, 10. So from bottom we need it 60. Give it 60. Then horizontal length is 10, 20.
So this length of this line is 20. And this line is 10. Then quick trim.
Remove this portion. Same beyond this side.
So again.
Skip. So it is 20, 20 time.
Now here it is at 28.
Then length of this line is 20.
And this is 10.
Okay. Then quick trim. Remove this.
So that's all. Then exit workbench. Zoom fit. Add. Give the thickness of 10.
Okay. Then again save this. So name is lake. So say. Give the name lake.
lake.
So then next part is this one. This will be also horizontal. So again start.
Mechanical design. Part design. Okay. Select horizontal plane. Sketch.
Then again this rectangle 170 by 50. So created from center.
Double click constraint. Give the parameters. Click back to cancel. So this is 170 and 50. 170.
This is 50.
Then there is this cut is there.
So create that shape.
Skip. 10, 10, 30.
Double click. So this is 10.
This one and this.
Skip to come out double click. 10, 30, 10.
Then trim. Then same I want on this side. So I will make it symmetric. So create one axis.
Select this object by window selection mirror.
Click on the axis. Then trim. Tram this. Then exit workbench.
Then make pad of 10 thickness. Pad.
This sketch 10. Then at the bottom at the back side. On this side actually a draft of 75.
That is draft of 15 degree actually. We will have to create it. So again click on draft.
Then faces to draft is this one. 15 degrees the angle and neutral element is bottom element.
Bottom face.
Review. So it is coming outside. We need it inside. So reverse the direction.
So in this way this is created. So it is a step. So click on save. Give name step.
So all the three parts are created. Now next is assembly. So we will stop start assembly with top.
At first we will place the top. So click on start mechanical design assembly design.
Then click on existing component. Then product one. Then we will go for
at first we will go for top. Show only cut your parts.
Okay layout. Those are parts cut your part. So at first we want it top.
From here you can view that preview also. Lajika.
So I want this top at first. Double click or you can click on open. Then first part I have to fix.
So fix component. Lajika. So it is properly placed. Then next part I will take this one.
This vertical. That is Lajika. So again existing component. Click on this product one. Lajika.
Open. Then click on coincidence. So I want to coincidence.
This surface with this internal surface. Okay update. Click on update.
Then next will be now this portion should be inserted in this slot. So we will say
this surface should match with this inside surface. So again constraint.
Click on this surface orbit and click on this surface. Okay update. So it is in line with this.
Then next is now here actually this surface we match. Actually we need this component outside.
So click on the plus before the constraint and this double click on this constraint.
Click on more and say opposite. Okay update. That means it came out but it got rotated actually.
So what we can do actually we can rotate it. So using manipulation. Click on manipulation and
rotate around x axis. So we will take x axis and rotate it. Okay. Then next is actually we want to
match this surface with this surface. Again constraint this surface with this surface. Okay update.
Okay there is a error now. Unsword constraint are there. We will just check the constraints.
So here more we will make it opposite. Okay. Then update. Okay still not working.
So we will delete this constraint. Then delete this constraint or we will just undo.
Actually this constraint we will need from other side if we want to rotate it.
So we will delete this constraint actually and we will have. Then again we will rotate it
and manipulation rotate around x axis. Okay. Then again apply the constraint.
This face with this face. Okay update.
Still there is a problem. We want it to be opposite. So just double click and we will make it
same actually. Okay update. Okay still not working. Okay we will delete this constraint,
this constraint. Suppose all of them. Then we will rotate it. We want it like this.
Then now we will apply the constraint again. Coincidence. I want this top to be matching with this top.
Okay. Then this surface should match with this surface. Okay. Then this this is done.
This is done. Then what is remained is this or is on to lecture it in three direction.
You have to lock it. So first direction is this is the first top top match. This is the second.
So top as we matched this side now this surface. So again constraint this surface with this surface.
Okay update. So it is properly placed now.
The same way we will place it on this side also. So again existing component.
Take this leg open. At first actually rotate it. Then it will not give
problem like the previous part. So manipulate rotate around actually z axis. We want to rotate like this z.
Yes. Then move it.
Okay some axis actually. We want to go down z or here also next. Okay. Then apply the constraint again.
Okay. Coincidence constraint. So this face will match with this face. Okay. Then second will be
this face. This face will match with this face. Okay. And so top side. So top becomes side and this one.
Third will be this face will match with this face. Okay. Update. Yes.
I so match with zoom fit. So these two parts are placed properly. Then next will be this part step
step part that we want to insert here. So again click on existing component.
Then select on product one. Then we want step. So it is a step open. Now this step got
merged with this part. So we will just move it. Click on manipulation. Suppose in wide direction.
I want to move. Okay. Now this part I will place here. So I will just move it on this side.
Okay. Then apply the constraint.
Again.
Again coincidence constraint. So this surface will match with this upper surface.
Okay. Then this inner surface.
This will match with this inner surface. So two direction has been locked. This direction
and remained is this one now. So again constraint. This surface.
Okay. That one remained this. Okay. Then next is again constraint. This surface will match with
this surface. Okay. Then update. So now this part is properly placed. And next is this side part
against step. Existing part. Existing component. Product one. I can take the step. Open.
Again move it outside. Okay. We don't want to move it. Okay. Click on update.
So it will fit it back there. Now we have to rotate this component now.
Manipulation. Rotate around z axis.
Then move it back in wide direction.
Okay. Then apply the constraint. Okay. Coincidence. Now this surface will match with this surface.
Okay. Then again coincidence this internal vertical surface.
This will match with this surface. Okay. So two constraints are applied. This is the side
constraint internal is the constraint. Then one more required is vertical. So constraint
this vertical will match with this. Yes. Not with line actually. I think it taken the line.
So we will delete it. And again we will give constraint. This internal surface will match with
this surface. Okay. Then update. And isometric view. Zoom fit. So in this way this assembly is
created. And if you want to apply different colors to each part. So from your apply material
it must be there inside. Yeah. It is here. So click on apply material and select the
painting colors. Suppose here I want this red to this part. And to view that color click on this
shading with edges. And shading with material. So this part is there. Then next this suppose
this color to this part. Then this color to this part. Okay. Zoom fit. Okay. In this way.
This assembly is ready. So here we will stop here. Thanks for joining. We will stop here.
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