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Intro
Autodesk Revit software provides its users with diverse tools for reinforcement modelling, detailing & scheduling. With clear understanding of how Revit 3D database works and a bit of a practice, structural rebar detailers can automate some of the most tedious parts of their work – creation of bending schedules, annotation of rebar detailing drawings, representation of complicated details by using 3D views, etc.
In this overview of Revit reinforcement tools, I’d like to share with you some of my workflow steps, tips & tricks I use to model, create drawings & schedule reinforcement in Revit. That’s not going to be a tutorial, rather a concise overview of Revit features & technics from a Revit user who’s been working with rebar detailing in Revit on a daily basis for over 18 months.
At the end, you’ll have an idea of how Revit may increase your productivity, improve accuracy & efficiency, and eventually, make your work less boring and more creative ;)
After reading all the following, I would recommend you to get though Havard Vasshaug’s handout about rebar in Revit as this one is probably the best “fundamental” material regarding reinforcement features in Revit I’ve seen so far.
About me: I’m a Structural Revit Modeller & BIM Technician at Hanssen, one of the biggest residential building companies in Perth, WA. My passion for digital innovation in construction industry strengthened by Civil Engineering qualification, give me an opportunity to work on some of iconic high-rise residential & mixed use development projects in Western Australia.
Being proficient in Reinforced Concrete detailing & scheduling, I have developed outstanding skills in structural Building Information Modelling & currently I manage RC drafting & scheduling team trying to use BIM concepts to its fullest extent.
Specialities: advanced structural Revit modelling, drafting, Revit custom family creation, automated Revit rebar scheduling, development of custom tools for Revit and automation of routine modelling & drafting processes using Dynamo & a bit of Python.
| check my LinkedIn portfolio for additional information |
Part 1. Rebar modelling
The more recent ‘Build’ of Revit you’ve got, the more advanced tools for rebar modelling you’ll have in your arsenal. We’ll talk about Revit 2016 functionality and its tools in this overview.
Before we start, I should mention a sort of disclaimer – from now on I’ll refer to simple-form concrete structural elements (walls, columns, beams, etc.) – no curved, double-curved or tapered elements as Revit has some limitations with reinforcing of those (the limitations might be overcome using API, but that’s a different story). Other thing worth mentioning – we’ll talk about OOTB Revit capabilities, however there’re some advanced add ins such as SOFiSTiC Reinforcement Detailing tool that enhance Revit functionality. You should research these products on your own and decide whether you need them, and how they can improve your productivity.
So, let’s focus on rebar modelling features, tips & tricks in Revit.
Rebar Constraints One of the main thing that beginner Revit modellers do not know or forget about is a possibility to edit “Rebar Constrains”. Very handy tool that gives a possibility to define rebar dimensions not only by its properties dialog, but by offset from a host element faces called “Constraint Target”. Sometimes it might be confusing and hard to get an idea of which face of the element rebar refers to. You have to be patient and consistent with using this dialog and it will give you more modelling flexibility. In Revit 2016 it’s possible to pick a face of the element you want to constraint rebar to.
Rebar Numbers & Partitions I would say that’s the most significant recent improvement in Revit that structural detailers are encouraged to use in their workflow. Basically, it gives you a possibility to define a common parameter for reinforcing elements within a certain construction sequence. Rebar elements are automatically given a unique number within same partition that based on their type, shape & geometrical parameters. Check out this Autodesk YouTube video as it explains Partitions & Rebar Numbers in detail.
I constantly use these features in rebar modelling as it gives opportunities for QA check in rebar modelling, the real “power” of this Revit feature is in rebar scheduling though. I no longer assign barmarks to rebar elements manually. Semi-automatically generated “Partition + Rebar Number” barmarks works perfectly in my workflow: I select rebar in one construction sequence and assign partition, rebar numbers are generated automatically. More about these tools see in Part 3: Rebar scheduling.
Object Styles – Rebar Subcategories Another quite useful feature that helps a lot in modelling is subcategories for reinforcing. Previously, users used filters to visually distinguish between rebar types, but starting from Revit 2015, it’s possible to assign subcategory parameter to certain rebar type and set visibility styles for those ones in the Object Styles dialog. This settings will be visible in all views if not overridden intentionally.
“Fake” auxiliary structural elements for rebar hosting Sometimes rebar constraints that I mentioned before might be a real headache. You can lose the control of these parameters or rebar shapes might “constraint themselves” to undesirable faces of undesirable elements, so that changing them manually becomes a nightmare. Especially it’s an issue in a relatively complex reinforced concrete elements such as raft foundations and other mass concrete elements. To overcome these problems with constrains I use quite dubious approach – I model “fake” elements just for rebar hosting. Some more advanced users will say it’s not a correct way of doing things as a structural model should resemble real building as much as possible, and should be pure with no artificial elements. However, for me this approach works perfectly – one thing to remember is to play with filters, worksets or possibly phases (in order to control visibility, material take offs and schedules of structural elements). See the picture below that shows a beam inside of a 2m deep raft foundation. The beam is a host element for a cage that supports top mat of reinforcement.
Part 2. Rebar detailing
OK, now let’s talk about detailing of reinforcement in Revit as production of reinforcement plans and details takes a crucial part of a structural rebar detailer’s job. And again, a disclaimer – Revit possibly is not the best software for rebar detailing & shop drawing creation (Tekla Structures might be your choice). However, with some experience you’ll get a point when Revit gives you all the tools for professional, accurate & timewise rebar detailing.
3D details for visual representation One of the main merits of Revit rebar modelling & detailing is an opportunity to represent modelled geometry in 3D alongside with annotation of those elements. Sometimes you might face a detail or some sort of a connection between structural elements where 3D view will be very helpful. Instead of producing 3-5 sections and spending huge amount of time, it’s possible to show just a clear 3D image of a detail.
Just do not forget to save orientation and lock 3D view to be able to add annotation to the views. In order to make rebar details visible as solids you have to tick “View as solid” in a “Rebar Element View Visibility States” dialog for a particular 3D view. Play with these Revit features as they provide such a great tool for rebar detailing.
Multi-Rebar Annotation Some new useful features of Revit 2015-2016 are multi-rebar annotations (at Annotation tab) that significantly improve rebar detailing workflow. This tool makes it possible to place dimension between bars and simultaneously put barmarks associated with these elements. Drawing creation becomes quite smooth and productivity increases a lot. Just have a look and try yourself.
Rebar Presentation One more feature that has become available in Revit recently is a graphical presentation of rebar sets. A Revit user has an opportunity to show only particular bars of a set – so that reinforcement detailing becomes kind of “traditional”. This tool is vital for slab or foundation reinforcing plans.
Part 3. Rebar scheduling
So we reached the most interesting part of rebar detailer’s job – creation of rebar orders or so called “bending schedules”. I recall doing those in AutoCAD & Excel. That used to be the most tedious part of rebar detailing job; lots of mistakes were there because of the manual input. Luckily, no longer. Now, my workflow totally automated – I model reinforcement in Revit and receive 100% finished “issued for manufacturing” bending schedules without any additional plug-ins or software. As long as reinforcement is modelled correctly, we receive accurate schedules.
Segment length parameters & rebar identifier As you can see from the example above, the schedule is quite straightforward. It is A4 sheet with a predefined tiltleblock family. It consists of 2 parts – body & “shape code legend” (3rd part goes above and outlines rebar delivery details, site address, etc.; so not shown here). The idea is relatively simple – you have a legend that shows commonly used rebar shapes and rebar segment lengths that defines these shape. The shape code legend is a mix of the Australian Standard shapes & the rebar supplier’s standard that works on American-made equipment. That’s why structural rebar shape families and some parameters are customised and considerably changed from those that Revit supplies to Australian market. Segment length parameters that defines rebar shape are stored in a rebar instance’s “Dimensions” group of parameters.
Partition & Rebar Numbers I’ve already mentioned about these parameters earlier, so now check out how they work in my case for rebar scheduling. “Partition” basically defines a separate area that reinforcement is located in. Every rebar shape with unique geometrical parameters has its own rebar number that Revit assigns automatically. By combining “Partition” and “Rebar Number” I receive barmarks to identify rebar instances. Thus, we won’t have the same barmarks in one rebar order. Playing with schedule filters, “calculating” totals and implementing some formulas in the “”Total Weight, kg” column, we are capable of creating rebar orders sufficient for manufacturing.
Schedule parameters & “calculating” totals Here I’d like to show you our approach to filtering reinforcement and calculating total weight for rebar in a rebar “bending” schedule. First of all, I use some hidden columns to get things done (Reinforcement Volume is the one you can’t see in the schedule, but it’s used to calculate weight of bars). I filter rebar instances by “Partition” so that only rebar within a particular partition are shown in the schedule. I tick field formatting for “Quantity” & “Total Weight” columns to calculate totals. “Total Weight” schedule field is a Calculated Value that equals to Reinforcement Volume multiplied by rebar density (8120kg/m3 in our case). “Bar Weight” represents weight of a single bar. It’s a calculated value as well, and equals to “Total Weight” divided by “Quantity”.
And that’s how it works. Quite simple solution that eliminate a routine of calculating manually all the quantities and weights of bars in most of our projects. It’s not an ideal approach, but it gives an amazing opportunity to focus on a structural modelling of reinforced concrete elements rather than boring manual calculations and bending schedules production.
Part 3. Benefits & drawbacks of rebar detailing in Revit
So at the end of the overview, I’d like to shed some light on possible benefits & drawbacks of rebar detailing in Revit. I’ll show you how Revit improved my own performance as a structural rebar detailer; and what sides of Revit rebar detailing is a bit troublesome for me.
Drawbacks One of the main issue I see with rebar detailing in Revit is the lack of possibility to nest rebar elements into structural element families such as columns, beams, footings, etc. That is not a critical issue, but I would say, having this opportunity, Revit users might improve their productivity significantly.
Secondly, it’s about a limitation of rebar detailing for some complex geometrical forms like curved, tapered elements and the like. Revit likes “rectangular” stuff. Most of the really complex geometry cannot be reinforced with OOTB Revit tools. So at some point you have to go deeper and learn Revit API, Dynamo visual programming and so on.
One more thing to be mentioned is a relatively complicated workflow for production of shop drawings. Especially for prefabricated reinforcing elements such as column & beam cages, bored pile cages, etc. You have to master Revit assemblies & parts to be able to schedule those elements. You have to create some shared parameters before you drawings will be automated to a certain degree. Again, API & Dynamo will be highly attractive to overcome some automation issues. That takes time and effort.
Lastly, it’s time you spend on rebar modelling and learning to manipulate data in Revit. It’s not actually a drawback. It’s kind of a general barrier of BIM technology adoption. You have to spend time to learn all the tools to be able to manage information that has to do with structural reinforcing in a Revit model. Some software (e.g. Tekla Structures) is more advanced and flexible when it comes to modelling & shop drawing production. However, IMHO - Revit becomes a standard in AEC industry (well, at least it’s true for Australia). So that is why I’m focusing on this software.
Benefits I suppose the biggest and most obvious advantage of rebar detailing in Revit is a better way of controlling, managing and manipulating of reinforcement elements in 3D environment. It’s hard to imagine what approach could be better than 3D visualisation when it comes to rebar conflict detection, detailing connections between different RC structural elements, spotting constructability issues, etc.
Next thing is automated rebar bending schedule production & time savings for documenting after a model is done. Here I should mention that my own productivity has increased roughly by 30% since I started model & schedule all the reinforcement in Revit compared to the “old school AutoCAD & Excel method”. Yes, user will spend a crucial part of time to actually model rebar elements. However, when it’s done – the rest is easy. Drawing creation, annotating and production of rebar schedules becomes a relatively easy task. So from now on a user can spend more time on modelling & checking actual building reinforcement details.
And lastly, it’s about the future of rebar detailing. All in all, what rebar detailers do is some sort of managing data and transforming engineering solutions into documentation for construction and rebar manufacture. I could easily imagine a time in not a distant future, when rebar detailer no longer in need of producing this sort of deliverables. BIM models (say using IFC format) will be fully deliverable. So that the era of paper drawings and bending schedules will end. Some first attempts of BIM model-based construction and rebar manufacturing straight from BIM model databases were already made in Norway. I believe it’s just a matter of time when this trend becomes more widespread. So now is about the right time to prepare yourselves to this transformation by improving your BIM skills.
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