DesignLab AutoJoin Manager Download (Latest 2026) - FileCR
Free download DesignLab AutoJoin Manager 1.0.0 Latest full version - Automate the join and unjoin geometry workflow.
Free download DesignLab AutoJoin Manager 1.0.0 Latest full version - Automate the join and unjoin geometry workflow.
Free Download DesignLab AutoJoin Manager for Windows PC. It is a productivity add-in for Autodesk Revit that automates joining and unjoining geometry while giving users full control over category priority.
This practical Revit productivity tool removes the repetitive work of joining building elements manually. In a normal BIM project, structural columns, beams, floors, walls, ceilings, and other elements often need to be joined correctly so the model looks clean and behaves as expected.
Doing this with standard Revit tools can take considerable time because users typically work through element pairs individually. The software changes this process completely. Instead of handling one connection after another, you can define rules once and automatically process large parts of the model.
One of the tool's main advantages is its ability to automate geometry joins across multiple Revit categories at once. This makes it especially useful for projects containing hundreds or thousands of intersecting building elements.
You simply prepare the required category list and start the operation. The plugin then checks relevant elements and performs joins according to the rules you create. It works like giving Revit clear instructions and letting it do the repetitive work for you.
This automated workflow can save significant time on large architectural and structural models while helping maintain consistent results.
The software provides an ordered priority system that determines which category should act as the cutting element during a join. This gives designers much more control than manually joining random element pairs.
The category placed in the first row receives the highest priority. When it intersects with elements from categories listed below it, the higher-priority element takes cutting preference.
For example, users can arrange structural columns, beams, walls, floors, and ceilings to match their BIM workflow requirements. Once the order is set, the same logic applies throughout the model.
This approach is particularly helpful when model standards require geometry to be joined in a consistent order.
Managing the category list is simple. Users can add the categories needed for a project and arrange them according to their preferred joining order.
Arrow controls make it easy to move categories up or down the list whenever project requirements change. You don't need to rebuild the entire setup for a small adjustment.
You can also include as many categories as necessary. This flexibility makes the tool useful for smaller models and complex BIM projects with many different building components.
Sometimes you may not want every element inside a category to participate in an automated join. The tool solves this problem with optional type filtering.
Instead of applying a rule to the complete category, users can restrict a row to particular element types. This provides more precise control over which objects are processed.
For example, a project may contain several wall types, but only selected types may need to interact with certain structural components. Filtering helps narrow the operation without forcing you to manually select each element.
It makes automation more flexible because you can use broad category rules and detailed type-based rules together.
Once you configure the priority list, you can start the automated process with a single command. The Run Join option processes the selected categories according to their defined priority.
This removes much of the clicking normally required when working with the native joining features. Instead of repeatedly selecting pairs, the plugin processes the model in batches.
For BIM professionals working on large projects, this can turn a lengthy cleanup task into a much simpler operation. Users remain in control of the rules while the software handles the repetitive processing.
The tool is not limited to creating geometry joins. It also includes a Run Unjoin function for removing existing joins across the selected categories.
This is useful when project requirements change or when a model needs to be reorganized. Manually finding and separating joined elements can be just as repetitive as joining them in the first place.
With the automated unjoin function, users can apply the same organized workflow in reverse. It provides a quick way to clean existing relationships before creating a new priority structure.
Large BIM models may contain thousands of possible element combinations. Because these operations can take some time, the software includes a real-time progress window.
During processing, users can see how much of the operation is complete. Accurate percentage tracking provides a clear picture of the current progress instead of leaving users wondering whether the task is still running.
The model is processed in batches, making the workflow easier to follow. This feedback is especially valuable for complex projects involving many categories and element types.
After an operation finishes, the tool provides a detailed report showing what happened during processing. This gives users useful information instead of just a completion message.
Successful joins are clearly reported, allowing you to see how many element relationships were processed correctly. It also lists skipped pairs when elements are too far apart or otherwise unsuitable for joining.
If an operation fails, the report includes failure details. This helps BIM professionals identify unusual geometry or model conditions that may require manual attention.
The reporting system makes automated model cleanup more transparent and easier to review.
Repeatedly configuring the same category priority rules would reduce the benefit of automation. For this reason, the plugin automatically saves the configured priority list between sessions.
When users reopen Revit, they don't need to recreate their complete setup from scratch. Their previous category arrangement remains available, making it easier to continue working with the same project standards.
This feature is particularly helpful for professionals who regularly use a consistent joining hierarchy across several projects.
The software becomes especially valuable as project size increases. Small models may contain only a limited number of intersections, but large architectural and structural projects can include enormous numbers of possible geometry relationships.
Handling those connections manually is like checking every link in a long chain one at a time. Automation lets the same work run through an organized rule set.
This reduces repetitive tasks and lets designers spend more time on modeling, coordination, documentation, and other productive work.
Correct element joins are important for producing clean BIM models. Improper join order can affect how intersecting components appear and may create unwanted geometry.
The priority-based approach helps teams maintain a more predictable model structure. Instead of relying on different users to make individual decisions each time, you can apply the same configured rules consistently.
This can help architects, structural designers, BIM coordinators, and other professionals working with detailed Revit projects.
DesignLab AutoJoin Manager provides Revit users with an efficient way to automate geometry joining and unjoining across multiple element categories. Its priority-based controls, optional type filters, one-click processing, live progress tracking, detailed reporting, and saved settings make repetitive model cleanup easier. For professionals working with complex BIM projects, it can reduce manual effort while providing better control over how model elements interact.
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