Wood truss construction surged in popularity in the 1960s and ’70s, but back then most buildings that used metal-plate-connected wood trusses had flat ceilings. With today’s CAD and BIM technology, however, manufacturers can create trusses for much more intricate and complicated architectural designs.
Archie Landreman, a technical director with WoodWorks, an initiative of the Wood Products Council, offers eight tips for working with metal-plate-connected wood trusses.
1. Sweat the details.
Creating a complete set of construction documents is the first no-brainer step for any wood truss project. “The more information the team has, the better job they’re going to do,” Landreman says. “You need a complete set of blueprints—architectural, structural, mechanical.”
Detailed sections, including design loads, spacing, building codes, and special shapes, are crucial for a manufacturer to properly design trusses for your project. Providing these details up front will save time and money, and the approval process will go more smoothly.
Landreman’s advice: Make sure the truss heel height isn’t overlooked during the blueprint stage. “A lot of times, plans are drawn in such a way that that particular section of the building is generic—it doesn’t necessarily show details to scale,” he says. To accurately calculate heel height, the manufacturer needs detailed information—including a drawing of a typical wall section—on wall height, height at the bottom of the header, length of the overhang, and dimensions for the soffit and fascia materials.
2. Specifications are as important as blueprints.
To design trusses properly, you must supply the manufacturer with a specification book. Such documentation may include specific carpentry information on trusses that does not appear on the project blueprints. Without a spec book, the truss manufacturer could do a complete set of truss layouts and profiles for approval, Landreman says, only to have the architect or structural engineer come back with a whole new set of drawings and specifications. “It could add a lot of time and expense for the manufacturer to have to redo something that was done without complete information,” Landreman says.
Landreman’s advice: Provide the truss manufacturer with the spec book at the time of the bid. “In some cases, it can provide a lot more detail than the blueprint itself.”
3. Get close to your manufacturer.
Before beginning a truss project, do your research on several truss manufacturers. Don’t be afraid to ask tough questions; for example, “Have you done big commercial jobs with spans in excess of 60 feet before?”
Ask truss manufacturers for their annual business volume, which can be an indicator of experience. “If someone’s manufacturing $10 million worth of trusses a year, you would think that they should have more experience and probably be able to do a better job than a manufacturer that’s doing $500,000 a year,” he says. Business volume may not always be a perfect indicator, but it’s a factor you should take into consideration.
Landreman’s advice: Ask manufacturers for references on projects similar to yours to get a sense of their experience in that area. “Not everybody has done the kind of job you’re working on,” he says.
4. Keep in touch with your manufacturer as the job progresses.
Developing a solid relationship with your truss manufacturer is important, since a good manufacturer can assist your Building Team during the early stages of the design process. If, for example, you’re designing a building with a 26-foot span for a floor truss, get the specifications details to the manufacturer, request a preliminary drawing, and work with the manufacturer’s drawing to develop a better sense of what the truss would look like and whether the manufacturer’s concept can become a reality.
Landreman’s advice: Work with the truss manufacturer to get details on span and truss height before starting any drawings to make sure the basic design concept will work before it is put on paper.
5. Make your manufacturer part of your Building Team.
When your manufacturer completes shop drawings for the placement diagrams of the trusses, getting input from all parties involved in the project should provide added perspective before final approval of these documents.
Landreman’s advice: Share manufacturer drawings with all the members of your Building Team, so that “you’re getting viewpoints from different angles.”
6. Schedule the wood truss work carefully.
The approval process can take time. To keep on schedule, leave ample time for placing the order, completing the layout and profile designs, and approving the drawings. According to Landreman, this process usually takes about two weeks, but it can vary depending on the manufacturer, the time of year, and the size and complexity of the project.
Landreman’s advice: Ask the manufacturer how long to expect the drawings to take once the purchase order or contract is placed.
7. Follow the manufacturer’s directions carefully.
The truss manufacturer should provide detailed guidelines on truss storage and installation during the approval process and upon delivery to the job site. The guidelines should include instructions on storage, lifting installation, bracing, cutting, and notching. Follow the manufacturer’s guidelines to the letter, since problems can occur if trusses are mishandled.
The chief problem is damage during delivery to the job site, as trusses are being rolled off the truck and dropped to the ground. “If they put them on a really rough part of the job site, some of the trusses could be broken or there could be damage to the connector plates when they hit the ground,” Landreman says.
Some trusses cannot be repaired once they’re put in place, so damage that goes unnoticed until after the trusses and roof sheeting are installed could result in extra time and expense to remove the sheeting and put in a new truss.
To avoid any confusion during installation, the manufacturer’s instructions should include the latest set of truss drawings showing the proper placement of all of the trusses. “Many times through the approval process some of the details in the drawings may change,” Landreman says. “If the contractor in the field doesn’t have the last revised set of truss drawings, some of those numbers and placements might have changed, and the truss could wind up in the wrong location.”
Landreman’s advice: If any instructions, warnings, or recommendations are missing, call the manufacturer immediately. “They are more than willing to get that information to you or send someone out to the site to help make sure everything’s going the way it’s supposed to.”
8. Treat floor trusses with special care.
Floor trusses can be trickier than roof trusses. “With roof trusses, there’s a tremendous amount of design flexibility, and usually you’re dealing with slope trusses,” Landreman says. With floor trusses, however, “the height of the floor truss can affect the design of the whole building, especially when you’re looking to accommodate mechanicals in those floor trusses,” he says.
For example, say you’re designing a three-story building using 24-foot floor trusses, and you expect the truss to be 12 inches deep. During the bidding process, however, the manufacturer determines that each truss needs to be 16 inches deep. “That would add a whole foot to the building height, and it’s probably not going to work,” says Landreman.
Landreman’s advice: Consult your manufacturer on truss depth and spacing when considering floor trusses for any large-scale project, rather than relying on a preprinted span table.
Related Stories
AEC Tech Innovation | Jul 4, 2024
Caution competes with inevitability at conference exploring artificial intelligence for design and construction
Hosted by PSMJ, AEC Innovate in Boston found an AEC industry anxiously at the threshold of change.
Building Team | Jul 3, 2024
So you want to get published: What’s next?
In the AEC industry, securing media attention is no longer a niche endeavor but an essential component of a holistic marketing strategy.
Laboratories | Jul 3, 2024
New science, old buildings: Renovating for efficiency, flexibility, and connection
What does the research space of the future look like? And can it be housed in older buildings—or does it require new construction?
MFPRO+ New Projects | Jul 2, 2024
Miami residential condo tower provides a deeded office unit for every buyer
A new Miami residential condo office tower sweetens the deal for buyers by providing an individual, deeded and furnished office with each condo unit purchased. One Twenty Brickell Residences, a 34-story, 240-unit tower, also offers more than 60,000 sf of exclusive residential amenities.
Student Housing | Jul 1, 2024
Two-tower luxury senior living community features wellness and biophilic elements
A new, two-building, 27-story senior living community in Tysons, Va., emphasizes wellness and biophilic design elements. The Mather, a luxury community for adults aged 62 and older, is situated on a small site surrounded by high-rises.
Office Buildings | Jul 1, 2024
Mastering office layouts: 5 primary models for maximum efficiency and productivity
When laying out an office, there are many factors to consider. It’s important to maximize the space, but it’s equally important to make sure the design allows employees to work efficiently.
Smart Buildings | Jul 1, 2024
GSA to invest $80 million on smart building technologies at federal properties
The U.S. General Services Administration (GSA) will invest $80 million from the Inflation Reduction Act (IRA) into smart building technologies within 560 federal buildings. GSA intends to enhance operations through granular controls, expand available reporting with more advanced metering sources, and optimize the operator experience.
Sustainability | Jul 1, 2024
Amazon, JPMorgan Chase among companies collaborating with ILFI to advance carbon verification
Four companies (Amazon, JPMorgan Chase, JLL, and Prologis) are working with the International Living Future Institute to support development of new versions of Zero Carbon Certification.
K-12 Schools | Jul 1, 2024
New guidelines for securing schools and community spaces released by the Door Security and Safety Foundation
The Door Security and Safety Foundation (DSSF), in collaboration with Door and Hardware Institute (DHI), recently released of “Are Your Door Openings Secure?.” The document provides guidelines to equip school administrators, building management personnel, and community leaders with a clear roadmap to create a secure and safe environment.
Products and Materials | Jun 30, 2024
Top products from AIA 2024
This month, Building Design+Construction editors are bringing you the top products displayed at the 2024 AIA Conference on Architecture & Design. Nearly 550 building product manufacturers showcased their products—here are 17 that caught our eye.