flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

8 Tips for Designing Wood Trusses

8 Tips for Designing Wood Trusses

Successful metal-plate-connected wood truss projects require careful attention to detail from Building Team members.


By By Kate Cline, Associate Editor | May 18, 2011
Wood truss ceiling in a salt storage building
Wood truss ceiling in a salt storage building
This article first appeared in the May 2011 issue of BD+C.

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

| Jan 19, 2011

Biomedical research center in Texas to foster scientific collaboration

The new Health and Biomedical Sciences Center at the University of Houston will facilitate interaction between scientists in a 167,000-sf, six-story research facility. The center will bring together researchers from many of the school’s departments to collaborate on interdisciplinary projects. The facility also will feature an ambulatory surgery center for the College of Optometry, the first of its kind for an optometry school. Boston-based firms Shepley Bulfinch and Bailey Architects designed the project.

| Jan 19, 2011

San Diego casino renovations upgrade gaming and entertainment

The Sycuan Casino in San Diego will get an update with a $27 million, 245,000-sf renovation. Hnedak Bobo Group, Memphis, Tenn., and Cleo Design, Las Vegas, drew design inspiration from the historic culture of the Sycuan tribe and the desert landscape, creating a more open space with better circulation. Renovation highlights include a new “waterless” water entry feature and new sports bar and grill, plus updates to gaming, poker, off-track-betting, retail, and bingo areas. The local office of San Francisco-based Swinerton Builders will provide construction services.

| Jan 19, 2011

Extended stay hotel aims to provide comfort of home

Housing development company Campus Apartments broke ground on a new extended stay hotel that will serve the medical and academic facilities in Philadelphia’s University City, including the University of Pennsylvania and the Children’s Hospital of Philadelphia. The 11,000-sf hotel will operate under Hilton’s Homewood Suites brand, with 136 suites with full kitchens and dining and work areas. A part of the city’s EnergyWorks loan program, the project aims for LEED with a green roof, low-flow fixtures, and onsite stormwater management. Local firms Alesker & Dundon Architects and GC L.F. Driscoll Co. complete the Building Team.

| Jan 19, 2011

New Fort Hood hospital will replace aging medical center

The Army Corps of Engineers selected London-based Balfour Beatty and St. Louis-based McCarthy to provide design-build services for the Fort Hood Replacement Hospital in Texas, a $503 million, 944,000-sf complex partially funded by the American Recovery and Reinvestment Act. The firm plans to use BIM for the project, which will include outpatient clinics, an ambulance garage, a central utility plant, and three parking structures. Texas firms HKS Architects and Wingler & Sharp will participate as design partners. The project seeks LEED Gold.

| Jan 19, 2011

Museum design integrates Greek history and architecture

Construction is under way in Chicago on the National Hellenic Museum, the nation’s first museum devoted to Greek history and culture. RTKL designed the 40,000-sf limestone and glass building to include such historic references as the covered walkway of classical architecture and the natural wood accents of Byzantine monasteries. The museum will include a research library and oral history center, plus a 3,600-sf rooftop terrace featuring three gardens. The project seeks LEED Silver.

| Jan 19, 2011

Architecture Billings Index jumped more than 2 points in December

On the heels of its highest mark since 2007, the Architecture Billings Index jumped more than two points in December. The American Institute of Architects reported the December ABI score was 54.2, up from a reading of 52.0 the previous month. 

| Jan 19, 2011

Large-Scale Concrete Reconstruction Solid Thinking

Driven by both current economic conditions and sustainable building trends, Building Teams are looking more and more to retrofits and reconstruction as the most viable alternative to new construction. In that context, large-scale concrete restoration projects are playing an important role within this growing specialty.

| Jan 10, 2011

Architect Jean Nouvel designs an island near Paris

Abandoned by carmaker Renault almost 20 years ago, Seguin Island in Boulogne-Billancourt, France, is being renewed by architect Jean Nouvel. Plans for the 300,000-square-meter project includes a mix of culture, commerce, urban parks, and gardens, which officials hope will attract both Parisians and tourists.

| Jan 10, 2011

Michael J. Alter, president of The Alter Group: ‘There’s a significant pent-up demand for projects’

Michael J. Alter, president of The Alter Group, a national corporate real estate development firm headquartered in Skokie, Ill., on the growth of urban centers, project financing, and what clients are saying about sustainability.

boombox1
boombox2
native1

More In Category

Healthcare Facilities

Watch on-demand: Key Trends in the Healthcare Facilities Market for 2024-2025

Join the Building Design+Construction editorial team for this on-demand webinar on key trends, innovations, and opportunities in the $65 billion U.S. healthcare buildings market. A panel of healthcare design and construction experts present their latest projects, trends, innovations, opportunities, and data/research on key healthcare facilities sub-sectors. A 2024-2025 U.S. healthcare facilities market outlook is also presented.




halfpage1

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021