flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

12 facts about heat-treated glass: Why stronger isn’t always better

12 facts about heat-treated glass: Why stronger isn’t always better

A dozen quick tips about tempered and heat-strengthened glass


By PPG Glass Education Center | February 27, 2014
12 facts about heat-treated glass: Why stronger isn’t always better
Heat Strengthened Glass

Glass is heat-treated for two reasons: the first is to increase its strength to resist external stresses such as wind and snow loads, or thermal loads caused by the sun’s energy.

The second is to temper glass so that it meets safety glazing requirements defined by applicable codes or federal standards. 

Following are a dozen quick tips about tempered and heat-strengthened glass, including why the strongest glass isn’t always the best glass for a given application. 

1. Fabrication first. Because of the high internal stresses caused by heat-strengthening or tempering glass, all fabrication, including cutting, hole-drilling, notching or edge treatment, must be performed before glass is heat-treated.

2. Defining heat-treated glass. In North America, the standard specification for heat-treated glass is ASTM C1048 Standard Specification for Heat-Strengthened and Fully Tempered Glass.  In general, heat-treated glass is at least two to four times stronger than annealed (untreated) glass.

3. Rate of cooling determines strength. During heat treatment, annealed (untreated) glass lites are heated to approximately 1,200 degrees F, then “quenched” in cold air. Cooled rapidly, glass tempers. Slower cooling produces heat-strengthened glass. 

4. Tempered is stronger. Tempered glass has a minimum surface compression of 10,000 pounds-per-square-inch (psi) and minimum edge compression of 9,700 psi, according to ASTM C1048. That makes it about four times stronger than annealed glass. Heat-strengthened glass has surface compression of 3,500 to 7,500 psi, about twice as strong as annealed glass, with no edge compression standard.

5. Tempered glass is safety glass. When broken by impact, fully tempered glass shatters into tiny particles, reducing the potential for serious injury by flying shards of glass. For this reason, building codes require safety glazing in specific locations.

6. Stronger, yet more vulnerable. Ironically, the rapid temperature change that gives tempered glass its compression strength may also cause it to shatter, seemingly without warning. On rare occasions, tiny inclusions, including nickel-sulfide, may be present in glass, which can expand during heat treatment, then stop when the glass is cooled and resume growth when the glass is exposed to high in-service temperatures (such as on the sunny exposure of a building). This “phase change” can cause tempered glass to shatter. Heat-strengthened glass is cooled more slowly; consequently, inclusions do not experience a phase change, which essentially eliminates the possibility of spontaneous glass failure.  

7. Heat-strengthened glass is not a safety glass. Though heat-strengthened glass may meet requirements for wind, snow and thermal loads, it is not considered a safety glazing. Heat-strengthened glass does not shatter when broken, but fractures into larger, sharper pieces that can become projectiles in a tornado, hurricane, explosion or fire. 

8. Avoiding fall-out. Because it does not shatter, heat-strengthened glass tends to remain in the framing system after it is damaged, which makes it a better choice for applications where glass fall-out is a concern.

9. Lamination for consideration. Laminated interlayers, required for overhead glazing, can be used with annealed, heat-strengthened or tempered glass to combine several safety advantages into a single glazing solution, including less risk of spontaneous breakage and glass fall-out, and increased resistance to wind loads, snow loads and thermal stress.   

10. Distorted views. Heat-treatment can generate subtle roller waves in glass, which are more likely to occur in tempered glass than in heat-strengthened glass. This can cause heat-treated glass to distort reflected images, a problem that may be exacerbated when it is used in glazing units with multiple lites or a laminated interlayer.  

11. Edge quality is critical. Poor edge quality – or edge damage during fabrication, delivery or installation – makes glass more likely to break, which can offset or negate any benefit associated with heat-strengthening or tempering. 

12. Stronger isn’t always better. Although tempered glass is strongest, PPG recommends its use only where required by code as a safety glazing or for thermal stress or wind load. For other applications, annealed or heat-strengthened glass is recommended to reduce distortion and the risk of fallout and spontaneous breakage. 

What is tempered glass?

Tempered glass, also known as toughened glass, goes through a process of extreme heating and rapid cooling during the manufacturing process. It is much stronger and harder than normal glass.

What is annealed glass?

Annealed glass, also known as standard glass, has been thermally treated and then slowly cooled. Annealed glass is a softer glass and is generally used when cost is a greater concern than strength or safety.

To learn more about the differences between tempered and heat-strengthened glass, or to find the best recommendation for a specific application, visit the PPG Glass Education Center at www.educationcenter.ppg.com.

Related Stories

Products and Materials | Oct 31, 2023

Top building products for October 2023

BD+C Editors break down 15 of the top building products this month, from structural round timber to air handling units.

Building Materials | Oct 19, 2023

New white papers offer best choices in drywall, flooring, and insulation for embodied carbon and health impacts

“Embodied Carbon and Material Health in Insulation” and “Embodied Carbon and Material Health in Gypsum Drywall and Flooring,” by architecture and design firm Perkins&Will in partnership with the Healthy Building Network, advise on how to select the best low-carbon products with the least impact on human health.

Engineers | Oct 12, 2023

Building science: Considering steel sheet piles for semi-permanent or permanent subsurface water control for below-grade building spaces

For projects that do not include moisture-sensitive below-grade spaces, project teams sometimes rely on sheet piles alone for reduction of subsurface water. Experts from Simpson Gumpertz & Heger explore this sheet pile “water management wall” approach.

Building Materials | Oct 2, 2023

Purdue engineers develop intelligent architected materials

Purdue University civil engineers have developed innovative materials that can dissipate energy caused by various physical stresses without sustaining permanent damage.

Construction Costs | Sep 28, 2023

U.S. construction market moves toward building material price stabilization

The newly released Quarterly Construction Cost Insights Report for Q3 2023 from Gordian reveals material costs remain high compared to prior years, but there is a move towards price stabilization for building and construction materials after years of significant fluctuations. In this report, top industry experts from Gordian, as well as from Gilbane, McCarthy Building Companies, and DPR Construction weigh in on the overall trends seen for construction material costs, and offer innovative solutions to navigate this terrain.

Metals | Sep 11, 2023

Best practices guide for air leakage testing for metal building systems released

The Metal Building Manufacturers Association (MBMA) released a new guidebook, Metal Building Systems - Best Practices to Comply with Whole-Building Air Leakage Testing Requirements.

Fire-Rated Products | Aug 14, 2023

Free download: Fire-rated glazing 101 technical guide from the National Glass Association

The National Glass Association (NGA) is pleased to announce the publication of a new technical resource, Fire-Rated Glazing 101. This five-page document addresses how to incorporate fire-rated glazing systems in a manner that not only provides protection to building occupants from fire, but also considers other design goals, such as daylight, privacy and security.

Green | Aug 7, 2023

Rooftop photovoltaic panels credited with propelling solar energy output to record high

Solar provided a record-high 7.3% of U.S. electrical generation in May, “driven in large part by growth in ‘estimated’ small-scale (e.g., rooftop) solar PV whose output increased by 25.6% and accounted for nearly a third (31.9%) of total solar production,” according to a report by the U.S. Energy Information Administration. 

Sustainability | Jul 26, 2023

Carbon Neutrality at HKS, with Rand Ekman, Chief Sustainability Officer

Rand Ekman, Chief Sustainability Officer at HKS Inc., discusses the firm's decarbonization strategy and carbon footprint assessment.

boombox1
boombox2
native1

More In Category




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