flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

5 factors that can affect thermal stress break risk of insulated glass units

5 factors that can affect thermal stress break risk of insulated glass units

Glass type, glass coating, shading patterns, vents, and framing system can impact an IGU’s risk for a thermal break.


By PPG Glass Education Center | July 7, 2014
Glass type, glass coating, shading patterns, vents, and framing system can all i
Glass type, glass coating, shading patterns, vents, and framing system can all impact an IGUs risk for a thermal break. Illustr

Thermal stress is one of many factors that can cause glass to break, even when it is not impacted by a projectile. 

Such failures usually are not a testament to the quality of the glass, but rather the result of temperature imbalance within the glass, which can occur when the center of a window or insulating glass unit (IGU) heats and expands while the edges remain cool. 

The resulting thermally induced tensile stress on the glass edges can exceed the strength of the glass itself, causing it to break at approximately a 90-degree angle.

Working closely with the IGU fabricator and glass supplier, and conducting a thermal stress analysis at the beginning of the design phase can help architects specify the proper glass for their projects. Here are five thermal stress related rules-of-thumb to consider when specifying glass:  

1. Clear or color? Glass can be clear, ultra-clear or tinted in colors such as gray, blue, green and bronze. Tinted glasses absorb solar radiation more than clear glass, which can cause them to collect heat and make them more susceptible to break from thermal stress.

2. Inner or outer surface? Reflective and low-emissivity (low-e) coatings, which improve the solar performance of glass primarily by reflecting solar radiation, can be placed on any one of four surfaces in a dual-pane IGU.  While they are usually placed on the inner glass surfaces of the IGU, the coating orientation and the associated risk of thermal stress has to be taken into account.

3. Sunny or shady? Outdoor shading, including overhangs, adjacent buildings, and trees, is one of the most dynamic elements to consider when analyzing thermal stress. Minimizing locations where non-uniform shading of IGUs can occur will help avoid extreme temperature gradients. Interior shading devices, such as blinds or drapes, can increase glass temperature by reflecting solar radiation back through the glass or by reducing the convection and conduction of heat away from the glass. To minimize thermally induced edge stress, the air space around the window glass should be ventilated. There should be a gap of several inches between the glass and shades, blinds or drapes.  

4. Where to place a vent? If heating vents, registers and grilles point directly at glass units, warm air will cause the glass to heat up and, under certain conditions, break. Make sure vents are carefully placed to reduce thermal stress risk and avoid placing them between the glass and interior shading devices.

5. How to frame it? Glass framing systems that have low heat capacity also can minimize the chance of a thermal stress break. Structural gaskets and narrow metal framing are favorable because they have less effect on the glass temperature around the edges. Conversely, massive framing – whether metal, masonry or even wood – can have more of an effect, resulting in thermal imbalance and risk of glass breakage. 

To learn more about avoiding thermal breakage of insulated glass units and other glass-related topics, visit the PPG Glass Education Center at www.educationcenter.ppg.com.

Related Stories

| Sep 22, 2014

USGBC names 2014 Best of Buildings Award winners

The Best of Building Awards celebrate the year’s best products, projects, organizations and individuals making an impact in green building.

| Sep 20, 2014

Healthcare conversion projects: 5 hard-earned lessons from our experts

Repurposing existing retail and office space is becoming an increasingly popular strategy for hospital systems to expand their reach from the mother ship. Our experts show how to avoid the common mistakes that can sabotage outpatient adaptive-reuse projects. 

| Sep 19, 2014

Smithsonian Institution opens LEED Platinum lab facility

The Charles McC. Mathias Laboratory will emit 37% less CO2 than a comparable lab that does not meet LEED-certification standards.

| Sep 19, 2014

8 hot healthcare projects win interior design awards

Winners of IIDA's 2014 Healthcare Interior Design Competition include Perkins+Will, AECOM, Buffalo Design, and SmithGroupJJR, for projects from Cincinnati to Toronto.

| Sep 18, 2014

Final designs unveiled for DC's first elevated park

OMA, Höweler + Yoon, NEXT Architects, and Cooper, Robertson & Partners have just released their preliminary design proposals for what will be known as the 11th Street Bridge Park. 

| Sep 17, 2014

Arquitectonica's hairpin-shaped tower breaks ground in Miami

Rising above Biscayne Bay, the 305-meter tower will include three viewing decks, a restaurant, nightclub, and exhibition space.

| Sep 17, 2014

Atlanta Braves break ground on mixed-use ballpark development

SunTrust Park will be constructed by American Builders 2017, a joint venture between Brasfield & Gorrie, Mortenson Construction, Barton Malow Company, and New South Construction.

| Sep 17, 2014

The doctor is in: New consortium to fund research of design's influence on public health

The AIA Design & Health Research Consortium has organized its design and health initiative around six evidence-based approaches.

| Sep 17, 2014

New developments in data center design

From the dozen or so facilities housing Google’s 900,000 servers to the sprawling server farms of Facebook to Amazon’s seven sites scattered around the world, today’s data centers must accommodate massive power demand, high heat loads, strict maintenance protocols, and super-tight security. This AIA Discovery course is worth 1.0 AIA CES HSW learning units.

| Sep 17, 2014

New hub on campus: Where learning is headed and what it means for the college campus

It seems that the most recent buildings to pop up on college campuses are trying to do more than just support academics. They are acting as hubs for all sorts of on-campus activities, writes Gensler's David Broz.

boombox1
boombox2
native1

More In Category

Construction Costs

Data center construction costs for 2024

Gordian’s data features more than 100 building models, including computer data centers. These localized models allow architects, engineers, and other preconstruction professionals to quickly and accurately create conceptual estimates for future builds. This table shows a five-year view of costs per square foot for one-story computer data centers. 


Sustainability

Grimshaw launches free online tool to help accelerate decarbonization of buildings

Minoro, an online platform to help accelerate the decarbonization of buildings, was recently launched by architecture firm Grimshaw, in collaboration with more than 20 supporting organizations including World Business Council for Sustainable Development (WBCSD), RIBA, Architecture 2030, the World Green Building Council (WorldGBC) and several national Green Building Councils from across the globe.



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