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The problem may be with the beam type of top and bottom wall plates. After running a few tests I have found that the settings from your screenshot will work with top plate beam types of 622 & 624, and bottom plate beam types of 621 & 623.
I hope this helps.
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The solution is to create a text style with the name "Electric". After that, your Logic Block will work. I've modified the text font, color, size, etc. and it still works as long as it has the name that the system is looking for.
I've encountered a similar situation in the past while using the Grid logic block. Same solution applies.
@ Joachim: From Wall Design, 7-8-1.
Then C:\DIETRICHS18\KOL\Services_Electric\Electrical equipment for CLT buildings\Vertical Switches and Boxes
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From Project Data Program, select Master data - Material database (4-2).
Once in Material database, select:
Beams/Profiled Beams: Wood, Wood Products
-STEICO (SteicoWall, SteicoJoist)
-SJ 90x240 - STEICO Joist 90x240
You can choose to copy this profile using the buttons @ bottom left of the screen. After that, modify Item number, Designation & Order number @ top right of screen. Finally, edit profile to match the desired dimensions.
Note: The original optimization query requires the material to have an Order number, which will be resolved by following the above procedure.
-Good luck
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For the situation in this photo, I would draw the elliptical curve (outline) in Wall Design, then extrude the outlines in D-CAM (2-5). Be aware that Dietrich's will segment the extruded curved surface into a series of lines rather than one continuous curve.
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Zitat von Giedrius
Hello, how rotate a main direction 90 degrees?
To Rotate the main direction:
Use Floor decks module.
select (3) Edit floor decks, (02) Orientation, span
You will then be prompted to select (2) points to indicate main direction.
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If you follow Der_Planer's suggestion and compare 3D models of both, you could also change materials of one model and run an intersection set in D-CAM. (2-02)
The intersection set would leave only the parts that don't overlap and might be easier to measure. Depending on the scope of changes, it may be difficult to determine locations in context of the project because any overlapping parts would be consumed by intersection set.
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Hello Thorvald,
I suggest using only (3) points to create your initial roof plane using Graphic Roof creation. After that, create a fourth point on that plane and move the fourth point to position.
I have attached a video file to this post with a brief tutorial.
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I have found the Wall Guidelines to be helpful with SIP Construction. Setting up your slices is also important.