Battery fires prompt safety focus on certified lithium-ion devices

UL Solutions warns on thermal runaway in personal electronics

UL Solutions has reported that lithium-ion batteries used in personal devices may pose a fire risk if they have not been certified for safety.

The company said lithium-ion batteries are widely used in products such as mobile phones, tablets and laptops, but some lack independent certification.

According to UL Solutions, batteries that are not properly tested may enter thermal runaway, which can result in high temperatures, smoke, fire or even explosion.

The organisation said battery fires linked to consumer devices have occurred recently on passenger flights, in homes and on vehicles.

Sherry He, vice president and general manager of Consumer, Medical and Information Technologies at UL Solutions, said: “When consumers shop for devices that use lithium-ion batteries, it is critically important that they understand the safety hazards associated with faulty, malfunctioning or uncertified products.

“Consumers should always look for the UL Mark when buying batteries or devices.

“A UL certification demonstrates that the product has met the applicable safety standards.

“Our commitment to safe, innovative battery technology is essential to our mission of working for a safer world.”

Reported fire incidents linked to battery failures

UL Solutions said several recent incidents involved lithium-ion battery fires.

On 29 May, a Southwest Airlines flight was diverted when smoke came from a passenger’s battery charger.

The day before, the airline had introduced a new policy requiring passengers to keep portable battery packs visible during flights.

The company also reported that a resident in Massachusetts suffered a minor burn when a charging phone exploded and set fire to their bed.

In another case, a portable power bank was identified as the likely cause of a fire that destroyed a South Korean airliner and injured several people.

These incidents were cited by UL Solutions as evidence of the need for proper battery evaluation and testing.

UL certification and the UL Mark

UL Solutions said third-party certification helps manufacturers confirm that battery products meet established safety and performance criteria.

The company said its services include evaluation, testing, inspection and certification of various battery types, including standby, primary and secondary models.

It added that its expertise in lithium-ion battery chemistry allows for more accurate identification of risk.

UL Solutions recommended that consumers always check for the UL Mark on devices and batteries to confirm safety compliance.

The company said its Product iQ® database is free to use and helps consumers and businesses identify certified products.

Air travel and battery fire containment

UL Solutions noted that lithium-ion batteries pose a particular concern in aviation settings.

The company said most airlines now carry battery fire containment bags on board to isolate any devices that may catch fire in flight.

To support the safe use of these containment bags, UL Solutions conducts testing against UL 5800, its Standard for Safety for Battery Fire Containment Products.

These assessments are designed to confirm that containment bags can manage the extreme conditions caused by thermal runaway events.

The company said its testing covers temperature resilience, pressure handling and fire suppression capabilities.

Policy change and battery safety in e-bikes

UL Solutions said faulty batteries in e-bikes have also caused fires in urban areas.

The company highlighted Local Law 39 in New York City, which mandates third-party certification of e-mobility devices and batteries in line with UL standards.

According to UL Solutions, early data suggests the regulation has been associated with a drop in fire-related deaths and injuries.

It added that applying similar certification rules across a wider range of products could have public safety benefits.

Consumers are advised to purchase only products that display the UL Mark.

Battery fires prompt safety focus on certified lithium-ion devices: Summary

UL Solutions has warned that uncertified lithium-ion batteries may cause fires.

The company cited recent incidents involving phones and portable chargers.

It said thermal runaway can lead to high temperatures, smoke or explosions.

UL Solutions provides testing and certification services for battery safety.

It advised consumers to look for the UL Mark when purchasing electronics.

In aviation, airlines use fire containment bags for battery-related incidents.

UL Solutions tests these bags against UL 5800 safety standards.

In New York City, Local Law 39 requires certification for e-bike batteries.

Preliminary data links the law to reduced fire-related injuries and deaths.

The company offers a public database to check product certifications.

Beyond installation: The reality of passive fire system assessment demands

UL Solutions examines the challenges of ensuring passive fire protection systems in buildings meet safety standards amidst installation variations and the need for reliable assessments

When it comes to the technical conformity of passive fire protection products or systems installed in buildings, someone ultimately must accept systems, as installed, are fit for purpose.

Those who may have a stake in that conformity decision include the code authority, building control, fire service, main developer, main contractor and end occupier/building owner.

Specialist contractors may also accept evidence that supports that an installation conforms to the required standards.

All these stakeholders are seeking confidence that the product or system installed will perform as intended in a fire situation.

The supporting evidence needs to confirm that the required performance is the likely outcome in a fire.

This is not a guarantee but a strong indicator that the installed product or system has performed in a representative fire test and the performance in that test indicates conformity or nonconformity with test standards, local codes and regulations.

For example, a pipe penetration seal needs to provide 60 minutes fire protection in the building, and test evidence shows that the product met that criterion on a test.

But what if the evidence used to support the assurances needed doesn’t exactly match what is actually installed? This is not referring to incorrect installations, but installations that have a variation from the specimen tested in the standard (specified) laboratory tests.

As-built construction details often vary from an ideal tested/certified construction.

This commonly occurs with firestopping.

For example: The aperture size differs from what was tested; the number of cables exceeds what was tested; the cable size is larger or smaller than those tested; the position of dampers varies from what was tested; the particular configuration of firestopping multiple services through the same aperture was not tested on the test rig; the penetration angle differed from what was tested; most are tested at a 90° angle; or a substrate that doesn’t match the one the penetration was tested through; standard substrates are used in testing to represent common wall or floor constructions.

Discrepancy in evidence can lead to last-minute requests for approval of the on-site installation.

Any such approval needs an expert judgment or an urgent test to provide confidence to the stakeholder that the variation on site will not affect the products’ or systems’ performance — that is, that variations such as those mentioned above would perform to the same required level in a test situation as that tested — thus providing an assurance of performance.

However, urgent testing of the specific variation is often not practical, given the very full test schedules that UK fire testing laboratories have.

A six-month wait for a test slot is not uncommon, and that length of delay on a live construction site is not practical nor wanted.

However, if other methods of assuring the product or system variation are not possible, then this may be the only option, aside from replacing the installation with something that does have evidence of conformity if a tested assembly can be identified.

Addressing fire protection failures on site

During construction, the issues with variations to fire protection may go unnoticed and therefore may never be identified by anyone.

There are many examples of fire protection issues only being identified after the building becoming occupied.

Unfortunately, sometimes issues are only discovered after a fire occurs, when failure becomes obvious.

Sometimes issues may have been identified before occupation, but someone ignored the problem in the hope that the issue isn’t noticed by building control or the client and that it doesn’t cause a problem in the event of a fire in the future.

It may well have been identified, and the specialist installer may have thought it was acceptable.

There potentially may be conflict of interest with the installer making that judgment.

They installed it without sufficient evidence to support the installation in the first instance, something that should not happen on site.

Ideally, the issue is discovered, and further assurances requested.

The manufacturer or independent specialist can seek a desktop evaluation (an engineering judgment, or EJ) of the proposed system.

When EJs are required, they are most often provided by a product/system manufacturer who knows the products very well due to their knowledge of the testing and development required for their materials.

Quality and impartiality concerns of manufacturer assessments

However, manufacturers offering assessments on their own products may introduce issues, including: questions about the impartiality, qualifications, experience and competence of the person (often a junior technician or engineer) conducting assessments and writing reports; a lack of independent oversight of the assessment quality management process; a lack of investigation into the assessment methodology used; and a lack of confirmation of peer review, or the technical accuracy of assessments.

Those who need to rely on manufacturer assessments as evidence to accept and approve firestop installations on site may be concerned about risks incurred by acceptance without adequate assurance — i.e., should the firestop fail in a future fire situation, who is culpable for acceptance and on what basis?

To protect themselves in the event of a failure and subsequent investigation, stakeholders with responsibility for accepting firestopping — including building control, fire service, building safety regulators, insurers, warranty providers, independent inspectors, main contractors, specialist contractors and developers — must have evidence of robust due diligence.

When it comes to acceptance of evidence that firestopping installations will meet the required performance criteria, stakeholders often ask: Why can’t manufacturers test everything?

Stakeholders often prefer primary test evidence, but manufacturers cannot test every variation.

However, they do test the most likely variations that would be specified and installed in an ideal situation.

Given that buildings are not always designed in an ideal way, firestopping may be installed with variations from what was tested due to factors such as errors in construction or building design features.

There isn’t a definitive number of firestopping-related assessments that are needed in the construction sector, but globally, it could easily be in the tens of thousands, based on conversations with major product manufacturers.

Testing every conceivable variation would be prohibitive for manufacturers, given that the permutations of how products/systems get installed is potentially limitless.

The sheer number of assessments needed means there isn’t a credible independent alternative with sufficient capacity to complete this work.

Engineers from independent testing laboratories and specialty engineering firms offer assessments in support of testing, but their capacity can be limited, and waiting for a report may be impractical for a construction project.

Firestop details are often repeated throughout a building on many floors or in multiple locations.

If those details don’t have sufficient supporting evidence, the whole project could be delayed by waiting for a fire test to prove out performance.

Therefore, manufacturer assessments are absolutely needed, and unless there is a significant move toward designing buildings around assured firestopping and not the other way around, they are here for the foreseeable future.

Increasing stakeholder confidence with independent oversight

Independent third-party oversight of the manufacturers’ assessment activities establishes requirements against which a manufacturer is externally audited against.

A quality assurance program provides an additional layer or scrutiny into the technical accuracy of assessments, giving stakeholders more confidence in accepting assessments from the manufacturer as evidence of conformity.

The UL Solutions Technical Evaluation Developer Program (TEDP) is an independent scheme designed to improve the content and quality of manufacturers’ engineering decisions for firestopping products, providing an added level of confidence for those who need to rely on manufacturer assessments.

The scheme supports the due diligence process for stakeholders by setting quality benchmarks that the manufacturer must meet and that are applied to the production of assessments.

Specifically, this program establishes a documented management system aligned with accepted industry methodologies for technical assessment writing and audited by UL Solutions.

The manufacturer must have a documented quality manual that addresses all aspects of the process of writing assessments, from initial enquiry to delivery, and outlines how the process is strictly monitored and controlled.

The manual must specifically cover how the company proves a consistent and technically accurate judgment is issued, mapping out the step-by-step checks and measures they take and monitoring to avoid decisions that would not stand up to external expert scrutiny.

This recorded set of standard operating procedures must be internally audited and reviewed and must be independently audited by UL Solutions to demonstrate the company adheres to all quality policies and procedures.

Industry best practice guides, underpinning the technical methodology of writing assessments, must be used.

These guides outline the key accepted principles of how to assess passive fire protection products and systems for firestopping in a structured and rational way.

Demonstrating assessor competence, skills, knowledge, experience and behaviors

UL Solutions confirms that competences defined in industry best practice guidance documents are applied to the quality management systems the company operates and independently tests the competence of individuals involved in the preparation and review of the assessments for the company.

UL Solutions will also check the methodology of training and internal verification of the assessors and confirm that assessment requests are allocated to assessors who have proven competence to complete them.

In addition, technical assessors must demonstrate continued professional development, which is monitored under the companies’ quality management systems and audited by UL Solutions.

Independent audits conducted by UL Solutions

Testing of engineered systems is based on the total volume of assessments issued in a calendar year by the manufacturer.

UL Solutions chooses the systems to be tested based on type of evaluation conducted, installation and type of product included in the technical evaluation.

This sample testing focuses on the manufacturer demonstrating sound fire engineering principles are applied to all assessments, as fire testing potentially could be used to confirm any judgment, they make is sound.

Manufacturers who participate in this program are expected to be ethical in their use of technical evaluations.

They cannot use technical assessments to avoid reasonable testing requirements.

If a variation on site becomes a common installation, manufacturers should test that common use and pursue certification of the variance instead of assessing the variation again and again.

The manufacturer’s organization will be issued a certificate to acknowledge active enrollment in the UL Solutions Technical Evaluation Developer Program.

The manufacturer’s name and contact information will be published in UL Product iQ® as a participant in the UL Solutions Technical Evaluation Developer Program.

This enables stakeholders to confirm that the company is still in the scheme and that assessments completed fall under the requirements of the scheme.

UL Solutions engages with companies who wish to enroll in the program and holds them accountable by auditing and testing to stringent quality measures.

Nonconformances to those measures instigate additional surveillance requirements and can increase audit testing, depending on the severity of the audit findings.

This shows that companies are held accountable for managing the quality of the assessments they produce.

This scheme supports the high level of the due diligence stakeholders need when presenting assessments as conformity evidence.

When faced with an assessment from a UL Solution listed manufacturer, stakeholder can have confidence in their acceptance of the installation on site.

This was originally published in the July 2025 Edition of International Fire & Safety Journal. To read your FREE copy, click here. 

UL Solutions adds appliance and lighting testing in Basingstoke

UL Solutions’ Basingstoke branch opened its doors on 28 March 2023, to showcase its brand-new laboratory dedicated to appliance lighting and safety testing. Guests from across the manufacturing and distribution sector took a tour of the facility, exploring the Basingstoke site’s newly extended capabilities.

The modern facility, covering 175 square meters, employs cutting-edge technology and houses a team of adept UL Solutions engineers and technicians. “We’ve aimed to be as flexible as possible,” said Jordan Bucko, operations manager with the AHL team at the facility, highlighting the lab’s capacity for accommodating “high volume requirements”.

New capabilities for diverse end products

Offering a wide array of services, from environmental and materials testing to endurance and wireless electromagnetic compatibility (EMC) testing, this new facility ensures safety and quality for lighting and appliances. With a focus on accommodating a variety of end products and components, UL Solutions can undertake multiple tasks concurrently.

The newly minted laboratory extends its services to include testing and certification for a multitude of lighting and appliance products. Whether it’s luminaires and LED modules, or control gears and lighting components, or even commercial and household appliances, the facility is open for testing and certification. Additionally, UL Solutions offers aid in safety testing, performance testing, marketing claim verification, and global market access.

Connected systems

As more and more homes adopt smart devices, UL Solutions is ready to facilitate seamless connected systems. From appliances and lighting to heating and security, each component needs to function independently and as part of a larger system.

UL Solutions’ Basingstoke facility houses a robust commercial EMC and wireless testing laboratory to support this. Their capabilities extend to a broad array of connected product development for appliances, HVAC, lighting and other categories.

IFSJ Exclusive: Building trust in three dimensions with UL Solutions

Ghaith Bakir, Lead Regulatory Engineer-MEA, Codes and Regulatory Services, UL Solutions looks benefits and safety considerations of 3D printing in construction

First developed in the 1980s and rising to prominence in the 2000s, 3D printing has become an increasingly valuable tool for design and subsequently for the construction industry. It works by creating a digital model of almost any shape or design that is required which can then be printed to the necessary scale. In the construction industry, it can be used from as little as printing specific components to printing entire buildings, paving the way for reduced waste and lowering labour costs.

Ghaith Bakir, Lead Regulatory Engineer MEA, Codes and Regulatory Services at UL Solutions explains that in construction, 3D printing is an automated process of joining materials to make building elements and systems components from 3D model data, layer upon layer.

“This innovative construction technique is rapidly moving from a conceptual and experimental stage to a viable building construction method,” he tells, suggesting to anyone who has not seen how buildings can be constructed using 3D printing to search the internet for ‘3D Printed Building Videos’ as the results may be eye-opening.

Bakir says there are many benefits of 3D printing for the construction industry: “In construction it offers a significant potential to increase efficiency in the building sector, including time reduction, waste reduction, cost-effective innovative solutions, safety, and sustainability.”

Code compliant

As with any new method of construction so come the safety need for safety and compliance checks. The main challenges for 3D printing in construction, says Bakir, is that building code authorities want assurance that the new construction technique complies with applicable building construction code requirements, many of which are prescriptive in nature.

“Builders need to demonstrate that the 3D-printed structures comply with applicable building or residential codes to gain building code authority approval for 3D-printed construction in jurisdictions,” he explains. “Code compliance presents a challenge for both a builder and code authority because building and residential codes currently lack prescriptive requirements for 3D-printed construction.

“Even code requirements for concrete construction are not directly applicable for cementitious-based 3D-printed construction since the mortar and cement-based fabrication, printed in a layer-upon-layer fashion without forming members, are not specifically covered by the concrete standards referenced in the model codes.”

As it stands, there are no prescriptive code requirements for 3D-printed construction, and so Bakir says that building code authorities must consider each project under the alternate materials and methods provisions in the code for their evaluation and approval.

“This approach allows them to approve 3D-printed building constructions, provided they are shown to comply with the intent of the code provisions and provide the code-prescribed quality, strength, effectiveness, fire resistance, durability, and level of safety,” he says.

Tried and tested

He suggests using testing and evaluation data from standards such as UL 3401, Outline of Investigation for 3D-Printed Building Construction, which can be used to evaluate the printer, fabrication process, and materials used to verify that they consistently produce building elements with the same properties.

Bakir says: “Builders can use the document to create a report of findings, showing AHJs that their building assemblies comply with relevant codes and standards like UL 263, Standard for Fire tests of Building Construction and Materials, and NFPA 275, Standard Method of Fire Tests for the Evaluation of Thermal Barriers.

“This report provides AHJs with the technical information they need to inspect and approve 3D-printed buildings under the alternative materials and methods code provisions and will speed up the approval process.”

The future of construction

One place which has recognised the 3D-printed construction market opportunity, says Bakir, is Dubai: “The United Arab Emirates continues to incorporate innovative solutions and cutting-edge technologies, such as 3D printing, into nearly all aspects of its economy. In 2016, the Dubai government launched the “Dubai 3D Printing Strategy” to transform Dubai into a leading user, producer and exporter of global 3D printing processes, technologies, and associated services.”

Many Dubai organisations have implemented the 3D Printing Strategy, including the Dubai Municipality and Dubai Health Authority . In 2021, the Vice President and Prime Minister of the United Arab Emirates, Sheikh Mohammed bin Rashid Al Maktoum, has issued a decree to regulate the use of 3D printing in Dubai’s construction sector and support the region’s target of ensuring 25 percent of its buildings are constructed using 3D printing technology by 2030.

“The legislation will seek to enhance efficiencies in construction projects and improve the competitiveness of Dubai’s local industry while also reducing waste in the sector and attracting leading companies to Dubai’s construction industry,” Bakir adds.

This article was originally published in the November edition of IFSJ. To read your FREE digital copy, click here.

UL Solutions’ Kerry Bell awarded NFPA Standards Medal

The National Fire Protection Association (NFPA) has awarded Kerry Bell the group’s prestigious Standards Medal in honour of his outstanding contributions to fire safety and his role in developing NFPA codes and standards.

Bell, a corporate fellow and principal engineer for fire sprinkler and pump equipment in the Built Environment group at UL Solutions, received the award at the NFPA Stars at Night gala, which took place on June 5 during the 2022 NFPA Conference & Expo in Boston.

The Standards Medal is considered the NFPA’s most distinguished award and is given by the organisation’s Standards Council. With 13 members appointed by NFPA’s Board of Directors, the council oversees NFPA standards development, helps ensure compliance with NFPA rules and regulations and, among other tasks, holds three meetings each year. The group is integral to the NFPA’s work in continuing to push not just for appropriate and up-to-date standards but also in enforcing compliance with these rules and regulations.

NFPA’s Standards Medal recognises a member’s exceptional contributions to fire safety and the development of new NFPA codes and standards. Receiving this award from the NFPA Standards Council, whose members are highly dedicated to this work, is truly an honour.

Commenting on his award, Bell said: “It is an incredible honour to receive such a prestigious award, and I am deeply grateful to the NFPA Standards Council for this wonderful recognition. I’m also acutely aware of the fact that the opportunity to receive such an award would not have been possible without the support of UL Solutions. In that sense, this is an award for the organization as well.”

Bell served on the NFPA Standards Council from 2004 through 2019 and acted as the council chair for six of those years. He was also the first person from UL Solutions to hold the chairperson position.

He has been a member of more than ten NFPA committees throughout his tenure, including committees for Residential Sprinkler Systems, Sprinkler System Discharge Criteria, Correlating Committee on Automatic Sprinkler Systems and Stationary Fire Pumps. He has acted as the Technical Committee on Water Spray Fixed Systems Chair.

He added: The UL Solutions and NFPA relationship goes back to both of our organization’s roots. Our standards, testing and certification complement the standards that NFPA publishes. UL Solutions voluntarily serves on more than 140 committees of the NFPA standards development process, which is a wonderful example of our commitment to fire safety.”

Dwayne Sloan, principal engineering director with the Built Environment group at UL Solutions, commented: “In addition to Kerry’s countless contributions to UL Solutions, he has spent a large part of his career supporting NFPA Technical Committees across the full fire suppression spectrum, and particularly the NFPA 13 series of installation standards for sprinklers,”. “These contributions earned him the position on the prestigious NFPA Standards Council and ultimately the sole UL Solutions member to ever serve as the Standards Council Chair. I was personally so proud to see Kerry deservingly recognized in this way.”