flexiblefullpage -
billboard - default
interstitial1 - interstitial
catfish1 - bottom
Currently Reading

5 Tips on Building with SIPs

5 Tips on Building with SIPs

Structural insulated panels are gaining the attention of Building Teams interested in achieving high-performance building envelopes in commercial, industrial, and institutional projects.


December 17, 2010
This article first appeared in the December 2010 issue of BD+C.

Typically composed of a layer of EPS, XPS, or polyurethane foam sandwiched between oriented strand board panels, structural insulated panels can provide R-values for walls, floors, and roofs ranging from 14 to 58, depending on the panel thickness and composition. SIPs also are manufactured to spec, which can result in reduced waste and potential labor savings.

First-time users may find working with SIPs somewhat worrisome, so we asked Frank Kiesecker, of SIP manufacturer ACH Foam Technologies, Denver, to provide some prescriptive advice that even experienced SIP users could benefit from.

1. Pre-plan electrical and equipment needs. Since SIPs are manufactured to meet the project’s specifications, it’s important to plan for electrical chases in advance to prevent time-consuming and sometimes costly modifications during installation. For example, SIP facings should never be cut horizontally for the installation of electrical wiring; doing so will compromise structural performance.

In addition, during the design phase, it’s important to determine whether there are any equipment needs for the installation of the panels. If the project specifies roof panels or wall or floor panels larger than 8x8 feet, a forklift or crane may be required for installation.

2. Organize the panels for installation. Proper storage, weather protection, and handling will make the installation process more efficient. Store the panels on a level space, no closer than three inches to the ground. Organize the panels by the sequence in which they will be installed (i.e., separate the first-floor panels from the second-floor ones), and make sure they’re covered with a breathable protective tarp to keep them dry.

3. Install the panels properly and seal them tight. SIPs need to be fully supported during installation. The panels slip over a wall plate, which needs to be set half an inch from the building edge to ensure that the panels are fully supported. Also, make sure to set the panels in place in the correct order: start in the corners or valleys and work outward. Once installed, all panel joints and voids must be properly sealed using adhesive or SIP tape to minimize air leakage and maintain the structure’s long-term durability.

4. Protect SIPs from water penetration. Once SIPs have been installed and sealed, weather protection such as housewrap is required to prevent moisture deterioration. Follow the housewrap manufacturer’s installation guidelines, and make sure to flash all penetrations. Over time, windows will leak some water at the sill. Use flashing under and around the units to direct water away from the wall structure.

5. Right-size your HVAC system. One common mistake, says Kiesecker, is underestimating the high insulating and air-sealing properties of SIPs when selecting an HVAC system. SIPs allow for smaller HVAC equipment. When working with an HVAC contractor, make sure they take into account an estimate for lower levels of air infiltration. Proper HVAC sizing is critical because an underused system will fail to reach a steady operating rate, resulting in short cycling, which is less energy efficient and requires more maintenance.

Other important factors to consider when determining HVAC sizing:

  • Size of the structure (each floor should be analyzed individually)
  • Orientation of building
  • Type of wall construction, and associated R-value
  • Window and door specs, including the number of windows and doors and their location, insulation value, and fenestration rating
  • Duct location (i.e., in heated space, unheated space, attic, crawl space, etc.)
  • Amount of air infiltration.

SIPs Do’s and Don’ts

  • Do provide adequate support for SIPs when storing them. SIPs should be stored flat and covered.
  • Do study installation drawings before setting panels.
  • Do remove debris from the plate area prior to panel placement.
  • Do provide level and square foundations or floors that support SIP walls.
  • Do provide adequate bracing of panels during erection.
  • Do hold the sill plate back from edge of floor system a half-inch to allow full bearing of SIP OSB facings.
  • Do provide 1½-inch-diameter access holes in plating to align with electrical wire chases in SIPs.
  • Do store sealant and SIP tape in a warm area for best application results in cold weather.
  • Do follow the manufacturer’s recommended joint sealing techniques.
  • Do place sealant along the leading edge of wood being inset into the panel.
  • Do use sealant on wood-to-wood, wood-to-EPS, and EPS-to-EPS connections.
  • Do use SIP tape or equivalent vapor retarder on roof panel joints.
  • Do install proper flashing and sealants around all rough openings and penetrations, as required.
  • Do use only continuous 2Xs, I-beams, and insulated I-beams for spline connections.
  • Do use proper underlayments for roofing and siding. SIP walls are airtight without housewrap, but they do need a drainage plane material.
  • Do install plumbing in interior walls. Furr out interior sections for pipes if necessary.
  • Do provide adequate ventilation to maintain indoor air quality.
  • Do use termite- and mold-resistant materials when required.
  • Don’t leave panels exposed to the elements for long periods of time.
  • Don’t lift SIPs by the top OSB facing or drop SIPs on corners.
  • Don’t install SIPs directly on concrete.
  • Don’t cut wall panel skins horizontally for installation of electrical wiring or overcut the OSB facings for field-cut openings. Use factory-provided chases in SIP core.
  • Don’t be afraid to field trim panels for an exact fit.
  • Don’t install recessed lighting inside the panels.
  • Don’t put plumbing in SIPs.

Related Stories

AEC Innovators | Apr 26, 2024

National Institute of Building Sciences announces Building Innovation 2024 schedule

The National Institute of Building Sciences is hosting its annual Building Innovation conference, May 22-24 at the Capital Hilton in Washington, D.C. BI2024 brings together everyone who impacts the built environment: government agencies, contractors, the private sector, architects, scientists, and more. 

Mass Timber | Apr 25, 2024

Bjarke Ingels Group designs a mass timber cube structure for the University of Kansas

Bjarke Ingels Group (BIG) and executive architect BNIM have unveiled their design for a new mass timber cube structure called the Makers’ KUbe for the University of Kansas School of Architecture & Design. A six-story, 50,000-sf building for learning and collaboration, the light-filled KUbe will house studio and teaching space, 3D-printing and robotic labs, and a ground-level cafe, all organized around a central core.

Sports and Recreational Facilities | Apr 25, 2024

How pools can positively affect communities

Clark Nexsen senior architects Jennifer Heintz and Dorothea Schulz discuss how pools can create jobs, break down barriers, and create opportunities within communities.

Senior Living Design | Apr 24, 2024

Nation's largest Passive House senior living facility completed in Portland, Ore.

Construction of Parkview, a high-rise expansion of a Continuing Care Retirement Community (CCRC) in Portland, Ore., completed recently. The senior living facility is touted as the largest Passive House structure on the West Coast, and the largest Passive House senior living building in the country.

Hotel Facilities | Apr 24, 2024

The U.S. hotel construction market sees record highs in the first quarter of 2024

As seen in the Q1 2024 U.S. Hotel Construction Pipeline Trend Report from Lodging Econometrics (LE), at the end of the first quarter, there are 6,065 projects with 702,990 rooms in the pipeline. This new all-time high represents a 9% year-over-year (YOY) increase in projects and a 7% YOY increase in rooms compared to last year.

Architects | Apr 24, 2024

Shepley Bulfinch appoints new Board of Director: Evelyn Lee, FAIA

Shepley Bulfinch, a national architecture firm announced the appointment of new Board of Director member Evelyn Lee, FAIA as an outside director. With this new appointment, Lucia Quinn has stepped down from the firm’s Board, after serving many years as an outside board advisor and then as an outside director. 

ProConnect Events | Apr 23, 2024

5 more ProConnect events scheduled for 2024, including all-new 'AEC Giants'

SGC Horizon present 7 ProConnect events in 2024.

75 Top Building Products | Apr 22, 2024

Enter today! BD+C's 75 Top Building Products for 2024

BD+C editors are now accepting submissions for the annual 75 Top Building Products awards. The winners will be featured in the November/December 2024 issue of Building Design+Construction. 

Laboratories | Apr 22, 2024

Why lab designers should aim to ‘speak the language’ of scientists

Learning more about the scientific work being done in the lab gives designers of those spaces an edge, according to Adrian Walters, AIA, LEED AP BD+C, Principal and Director of SMMA's Science & Technology team.

Resiliency | Apr 22, 2024

Controversy erupts in Florida over how homes are being rebuilt after Hurricane Ian

The Federal Emergency Management Agency recently sent a letter to officials in Lee County, Florida alleging that hundreds of homes were rebuilt in violation of the agency’s rules following Hurricane Ian. The letter provoked a sharp backlash as homeowners struggle to rebuild following the devastating 2022 storm that destroyed a large swath of the county.

boombox1 - default
boombox2 -
native1 -

More In Category


Mass Timber

Bjarke Ingels Group designs a mass timber cube structure for the University of Kansas

Bjarke Ingels Group (BIG) and executive architect BNIM have unveiled their design for a new mass timber cube structure called the Makers’ KUbe for the University of Kansas School of Architecture & Design. A six-story, 50,000-sf building for learning and collaboration, the light-filled KUbe will house studio and teaching space, 3D-printing and robotic labs, and a ground-level cafe, all organized around a central core.



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