Filleting & Matching a Cross Section
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 From:  Michael Gibson
4271.13 In reply to 4271.1 
Hi Jeff, so for your reverse engineering method, you are probably going to do the cplane method so that it is easy to draw and manipulate a cross section to make the kind of shape you want. Instead of lofting a bunch of lines to make that sloped shape (is that what you were doing before) instead just draw one side profile and make an extrusion to do it- then you can tweak just that one profile curve and the extrusion will update- that's much easier to manage for editing.

Then where you've got the vertical plane you can select your sloped extrusion, and then select that vertical plane and then run the Construct > Curve > Isect command. That command will intersect the 2 surfaces and produce a curve at their intersection, and your task will be to tweak the extrusion (by editing the profile that was extruded) until that intersection curve is the shape you need.

A couple of things that will help with this - you will want to get the 3D view to be set up with the CPlane in the plane of the extrusion curve so you can do your editing there.

But when you set your cplane up you will want to uncheck the option for repositioning the ortho top/front/right views (the options appear in the upper-right corner of the window where the options for the current command is displayed) so that the Right-side view will stay oriented along the world axis so that you'll be able to get a clear view of the intersection result.

Then the other trick is that after you do the intersection once you should select the intersection curve result and enable history updates for it by going to Edit > History and click the "Enable update" button. History updating is automatically on for extrusions, so the extrusion will automatically update when you edit its profile curve, but the intersection command does not have history updates turned on by default, so you have to turn it on with this manual step.

However, once you have turned it on then you should find the whole thing updates every time you move any control points of the original sloped extrusion piece, so you'll tweak those points in the 3D view where the cplane is at that angle, but you'll be watching the result of the history updated intersection curve in the Right-side view to see how close you are to what you're trying to get.

So like I was mentioning, you're chewing off a pretty complex task here, let me know if you get stuck on any of the things I've described here. I also did not yet do a trial run of this so I'm not 100% sure yet that I didn't miss a step or something like that.

- Michael
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 From:  Jeff (USD5000000)
4271.14 
That's similar to my original idea in spirit. It's a lot of work to do the reverse-engineering job! I'll have to study your post carefully and give it a whirl. The benefit is getting to know more of the inner-workings of MOI. I know I can due things easier, but I think I can learn more by taking on the tougher road. Maybe I'll model some simpler/original things too to learn more basics.

Thanks guys. I appreciate the insight.

Good night.
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 From:  Michael Gibson
4271.15 In reply to 4271.1 
Hi Jeff, Ok I've attached here a model file with things set up for history editing as I described above.

This is set up with an angled cplane but only in the 3D view, the top/front/right views are still oriented with the world axis.

I made a curve and extruded it to form the sloped piece, then intersected that with the vertical plane to make the magenta intersection curve. Then I enabled history updates on that magenta curve and then hid the vertical plane to kind of get it out of the way.

So now your job is to select the base curve of the extrusion which is this one:



Then adjust those control points and while you are adjusting them watch the magenta curve in the Right-side view here:



That magenta curve will show you the section that you want to have match with your blueprint.

You can adjust the points vertically in either the 3D view or the Right-side view but if you want to move them left or right you need to make that kind of adjustment in the 3D view since it has the cplane set to the same plane of the curve - remember that extrusion base curve is set at an angle and so you don't want to go move any of its control points in the ortho views other than in the world z axis direction.


Hope this helps to get your sloped piece set up properly!

- Michael

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 From:  Michael Gibson
4271.16 In reply to 4271.14 
Hi Jeff,

> Maybe I'll model some simpler/original things too to learn more basics.

I'd definitely encourage that! It's kind of a more manageable way to get a head of steam up...

- Michael
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 From:  Frenchy Pilou (PILOU)
4271.17 
An old test of sculpting guitare :)
http://moi3d.com/forum/index.php?webtag=MOI&msg=2145.1
---
Pilou
Is beautiful that please without concept!
My Gallery
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 From:  Jeff (USD5000000)
4271.18 In reply to 4271.15 
Thanks Michael. I really appreciate all the personal attention.

BTW, I think I've found a simpler way to accomplish what I want for this project. I may set the configuration that you put together so I can learn this method too.

Here's what I did. Let me know if I'm a little crazy.

1. I drew the profile curve in the plane of the cross section.

2. I extruded this curve into a trimming surface, but set the direction parallel to the armrest slope.

3. I had to extend the curve a little to trim the entire armrest area, but I can just tweak in the right view. (I learned a bit more about the extrusion command.)





Thanks for all the help. I think I can move on to the filleting/roundover step shortly.

Jeff
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 From:  Michael Gibson
4271.19 In reply to 4271.18 
Hi Jeff, yeah if that gives you the right shape then that's a great way to do it!

That will maybe have a kind of different shape to the overall sloped part than the one that has the cross section at 90 degrees though.

- Michael
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 From:  Jeff (USD5000000)
4271.20 In reply to 4271.19 
I agree the 90 degree slope will be different, but I think it will capture the intent of the blueprint. The surface will pass through the curve at the cross section and that's the only info we have.

Filleting looks like it may be complicated. I'll start playing around with it after all the family goes to bed tonight.

Is there a forum link regarding how to model a screw? I need to figure out how to make some to attach the neck and pickguard.

Thanks again for all the help.
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 From:  Michael Gibson
4271.21 In reply to 4271.20 
Hi Jeff,

> Is there a forum link regarding how to model a screw?
> I need to figure out how to make some to attach the neck
> and pickguard.

Well, to make the base shape you can draw a side profile and use the Construct > Revolve command.

For doing threads, see this for some links:
http://moi3d.com/forum/index.php?webtag=MOI&msg=4140.1

But one thing to keep in mind is that screw threads pretty detailed geometry, so you do not really want to model them on things that are not going to be visible, if you were to explicitly model every little tiny feature like every screw thread it will tend to create an extremely heavy model and a very large file size.

- Michael
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 From:  Jeff (USD5000000)
4271.22 In reply to 4271.21 
Thanks. I understand the heavy model issue. I'm just clueless as to how to model the screw threads so I want to learn. I'll check out the post.

I should work on the filleting issue first anyway. It seems to be a common issue for guitar modeling.
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 From:  BurrMan
4271.23 In reply to 4271.22 
Hi Jeff,
So now that you have drawn the curve from that angled perspective for reverse engineering, you could try to switch to that cplane and view the curve from that particular angle, to see if you could recognize it as something other than arbitrary.. For instance, it may be very close to some radius value! Then you could make a determination that it "IS" truley a radius, and just draw that...

For added information...
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 From:  Jeff (USD5000000)
4271.24 In reply to 4271.23 
Hello Burr,

I did look at is from the side view (basically what you are saying). I just rotated the 3D view until I could see the curve from the side.

It was an interesting revelation. It's pretty much as I thought the build process would go. It looks like it was either cut off or sanded flat then blended into the top and the bottom edge softened. I guess I could model it the same. cut it off with a plane and then ease the edges.

Thanks for your comments and insights.

Jeff
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