- Loading the nested family.
- Locking the instance parameters.
- Adding and using the nested parameters.
- Flexing and testing the dimensional and angled parameters.
- Loading into project and testing.
Showing posts with label revit door swing angle. Show all posts
Showing posts with label revit door swing angle. Show all posts
Friday, July 8, 2011
Revit Tutorial – Family Creation Series – Part 13 - Adjustable Angle Curtain Wall Door
Labels:
revit curtain wall door,
revit door,
revit door angle,
revit door swing angle,
revit family creation,
revit family creation series,
revit swing angle,
revit tip,
revit tutorial
Topics Covered in the final part of the series (See the first and second video tutorials here)...
Thursday, July 7, 2011
Revit Tutorial – Family Creation Series – Part 12 - Adjustable Angle Curtain Wall Door
Labels:
change door swing,
revit door swing angle,
revit family creation,
revit family creation series,
revit tutorial,
revit tutorials
The second part of our creation of an adjustable curtain wall door series explores the following topics:
- Adding parameters.
- Flexing/Testing the parameters.
- 90 and 180 Degree issues and resolutions
**Note** One thing I did not show in the video was that I locked the swing angle to the horizontal and vertical reference planes...
Tuesday, May 19, 2009
Tutorial - Door Swing Angle (Plan)
So the next video I was going to create was to answer a few questions I had recieved about how to make a door swing at different anlges in plan view. Well... Revit Clinic beat me to it! Great video and write up:
Rotational Parameters and Face-Based Nested Families
We often come across requests or recommendations for adding rotational controls to family geometry. This is most commonly present for door swings, hinge type families, or geometry which needs to rotate around a given point in a family. I wanted to pass along a recommendation which typically works well.
The first step is to separate the family geometry [which will be rotated] into a separate face-based family. Face-Based families offer additional flexibility when placing the nested family into the host family. By utilizing a reference line for the rotational basis, the face-based family can be hosted onto the reference line by the “Place on Work Plane” option. By using the “TAB” key the two planes of the reference line can be specified, as well as the “SPACE” key to designate the nested family rotation during placement.
With the reference line in place and an angular dimension parameter attached, the nested face-based family will rotate with the reference line it is hosted on. I have outlined an example process in the video below:
Video Example
Please keep in mind this process can be applied to other scenarios for family creation. I typically recommend a reference line over a reference plane because a reference line can be aligned and constrained using the end point. This is often useful for a family rotating along an end point. In addition you can check the “Shared” option in the nested family under “Category and Parameters” to ensure visibility and scheduling occur as needed.
Rotational Parameters and Face-Based Nested Families
We often come across requests or recommendations for adding rotational controls to family geometry. This is most commonly present for door swings, hinge type families, or geometry which needs to rotate around a given point in a family. I wanted to pass along a recommendation which typically works well.
The first step is to separate the family geometry [which will be rotated] into a separate face-based family. Face-Based families offer additional flexibility when placing the nested family into the host family. By utilizing a reference line for the rotational basis, the face-based family can be hosted onto the reference line by the “Place on Work Plane” option. By using the “TAB” key the two planes of the reference line can be specified, as well as the “SPACE” key to designate the nested family rotation during placement.
With the reference line in place and an angular dimension parameter attached, the nested face-based family will rotate with the reference line it is hosted on. I have outlined an example process in the video below:
Video Example
Please keep in mind this process can be applied to other scenarios for family creation. I typically recommend a reference line over a reference plane because a reference line can be aligned and constrained using the end point. This is often useful for a family rotating along an end point. In addition you can check the “Shared” option in the nested family under “Category and Parameters” to ensure visibility and scheduling occur as needed.
Thanks authors of Revit Clinic... Great video and explination!
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The Revit Kid.com! by Jeffrey A. Pinheiro is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. Based on a work at The Revit Kid.com.
