Driving low-carbon compliance through EPDs: Forza Doors advances fire door design

Will Hunnam, Managing Director at Forza Doors, examines how EPDs support low-carbon specification, regulatory alignment, and sustainable manufacturing across the fire safety sector

In fire safety, compliance and performance are non-negotiables – but in today’s construction industry, so too is sustainability.

As a UK manufacturer specialising in bespoke timber fire doors, Forza Doors is seeing a new dimension when it comes to specification decisions: balancing certified fire protection with verified low-carbon performance.

The industry is undergoing a clear shift in how it approaches environmental performance.

As operational energy use improves, embodied carbon has become the main focus.

In fact, by 2030, it’s expected to account for most of a building’s total lifecycle emissions.

This change creates both challenges and opportunities for specifiers.

With a growing emphasis on whole-life carbon assessment, decisions made during product selection now have greater impact.

Verified environmental data is no longer a bonus – it’s becoming essential.

Environmental Product Declarations (EPDs) are emerging as a key tool in this process.

For those specifying fire doors, this means balancing proven, certified fire safety performance with transparent sustainability credentials.

At Forza Doors, we’ve seen growing demand not only for quality, but for clear environmental evidence.

A need for reliable carbon data

Fire door specifiers today are navigating a minefield of environmental claims.

Almost every product is marketed as “green” or “low carbon”, but these claims are often vague or inconsistent.

With increased pressure to meet embodied carbon targets and align with net zero goals, inconsistent data becomes a barrier to confident decisions.

EPDs address this issue.

Developed under standards such as EN 15804, they offer third-party verified data on a product’s environmental impact across its lifecycle.

EPDs allow transparent, like-for-like comparisons based on real carbon data, not abstract claims.

Integration with specification workflow

Construction has led the way in EPD adoption, reflecting the urgency around embodied carbon.

On large projects with many components, access to standardised data early in the process is critical.

EPDs also align with digital workflows.

Many are now integrated into BIM libraries, referenced in schemes like BREEAM, and requested in early procurement stages.

This makes them especially valuable on projects with digital modelling, carbon budgets, or sustainability goals.

Changing expectations for manufacturers

This shift is also changing how manufacturers operate.

Focus has expanded from just operational emissions to include product-level impacts.

Specifiers now expect transparent proof, not just broad sustainability claims.

Creating an EPD involves assessing a product’s full lifecycle – from raw materials to disposal.

This often highlights carbon hotspots and encourages supply chain collaboration.

We were the first UK timber door manufacturer to publish verified EPDs for our core range – helping specifiers make informed, low-carbon choices without compromising on performance or compliance.

The role of regulation

New regulatory developments add further weight.

The EU’s Corporate Sustainability Reporting Directive (CSRD), effective from 2024, sets a precedent for environmental reporting across supply chains.

While UK law hasn’t matched it yet, similar expectations are appearing through voluntary frameworks and procurement practices.

Lifecycle assessment is increasingly essential for manufacturers to stay competitive.

Standardisation is critical

For EPDs to be effective, consistency matters.

If methods or formats vary, comparisons become unreliable.

Third-party schemes like BRE’s Environmental Profiles or the International EPD System ensure alignment and standardisation.

Specifiers should also check that EPDs use equivalent functional units (e.g.

per square metre) and include comparable assumptions like lifespan and installation method.

When these factors align, EPDs offer a sound basis for carbon-conscious decisions.

A core part of modern specification

Embodied carbon is now a key procurement metric, and EPDs are becoming a core requirement.

They offer specifiers reliable data, enable more confident choices, and support wider project goals.

For manufacturers, EPDs provide a way to stand out through transparency and accountability.

As carbon performance becomes as important as cost or compliance, verified product data is now essential.

EPDs offer the clarity and confidence that both specifiers and manufacturers need to meet the demands of low-carbon construction.

About Forza Doors

Forza is a leading UK manufacturer of bespoke timber fire doors and joinery.

Operating across the commercial interiors sector, the company provides timber solutions for the office, education, hospitality, healthcare and residential markets.

Its products are not only designed for awesome spaces but are fully compliant, offering complete peace of mind when it comes to safety.

Forza Doors is proud to be a British manufacturer.

Its West Sussex-based team brings decades of industry experience across fire, acoustic and structural specification.

The company is the first UK timber door manufacturer to publish verified Environmental Product Declarations (EPDs) for its core range and is committed to achieving carbon neutrality by 2050.

Forza Doors prioritises safety through rigorous primary testing and extensive investment in product development, ensuring spaces are safe, secure and specified correctly.

Sealing spaces, saving structures: Using Injectaclad to remediate fire risk in hidden wall spaces

Injectaclad describes how its patented approach supports safer, faster building remediation

The question of fire safety in external walls continues to challenge housing providers, developers and regulators alike.

Cavity fire barriers, which play a key role in containing fire and smoke, have been found missing or poorly installed in thousands of buildings.

Traditional remediation has often required full façade removal – an expensive and disruptive process that many owners struggle to deliver at scale.

Injectaclad was created to address this issue in a more practical way.

Originating from a contractor’s request in 2016, the company has since developed and tested a method that restores fire-stopping performance with less disruption to buildings and their occupants.

Rather than focus on wholesale removal, the approach is aimed at reinstating compartmentation from the outside – preserving much of the original structure.

With increasing pressure on the industry to act proportionately, quickly and safely, Injectaclad’ s model is drawing attention.

In this conversation, the team behind the innovation explains how the system works, where it’s being used, and why a more scalable solution is needed now more than ever.

What specific fire safety issue does Injectaclad aim to resolve?

Injectaclad is designed to remediate missing and/or defective cavity fire barriers within existing buildings.

Following the Grenfell tragedy, regulations changed regarding how external façades are assessed in relation to compartmentation and preventing the spread of hidden fires.

We are increasingly finding that buildings are failing external wall surveys due either to cavity fire barriers being entirely absent or, where installed, being defective and unable to perform as originally intended.

How does Injectaclad installation differ from traditional remediation approaches?

Traditionally, where cavity fire barriers are missing or defective, large sections – or sometimes all – of the external façade must be removed to allow the installation of new passive fire barriers, followed by reconstruction of the façade.

Injectaclad enables remediation without removing the façade.

Instead, the system is pumped through small openings made in the external skin, forming a new cavity fire barrier.

These access points are repaired on completion.

A key difference is that Injectaclad has been designed, developed and tested to work with insulation left in place within the cavity.

It is an intumescent-based, high-expanding product.

In the event of a fire, as insulation burns away, Injectaclad intumesces, expands and seals the gap, preventing fire from spreading within the cavity.

There is no other system on the market that works in this way, and all testing – carried out at UKAS-accredited centres – is backed by third-party accreditation.

What are the main benefits of using Injectaclad in terms of cost, time and disruption?

There are numerous benefits to using Injectaclad for cavity fire barrier remediation in existing buildings.

In terms of time, installation is significantly faster than removing and rebuilding façades and insulation.

Disruption is also reduced, as the system does not require full façade removal.

Injectaclad can be installed via MEWPs [Mobile Elevated Working Platforms] rather than full scaffolding, so work may only take a few hours outside an apartment instead of residents living with scaffolding for months.

Environmentally, Injectaclad produces far less waste than traditional methods.

Because façades and insulation are not removed, there is minimal debris or material sent to landfill.

Cost savings are also achieved.

Shorter installation times reduce preliminaries, and avoiding full elevation rebuilds limits labour and material costs.

Where bricks are removed, they are generally reused.

Retaining existing insulation eliminates the expense of removal, disposal, and full replacement to maintain thermal performance.

If site conditions allow MEWP access, further savings are made by avoiding the need for scaffolding.

How does Injectaclad comply with PAS 9980 and fire risk assessments?

PAS 9980 is described as a “risk-proportionate guideline”, and the government has expressed strong support for ensuring that any remedial works required are proportionate to the risks identified.

Risk is rarely a matter of absolute safety or danger.

In most situations, it is not possible to reduce risk to zero, so the aim is to reduce it to a level that is reasonably acceptable.

Installing Injectaclad helps bring risk down to as low as reasonably practicable, in line with the ALARP principle.

This supports compliance with PAS 9980 and aligns with the expectations set out in current fire risk assessments.

Who installs Injectaclad and how is quality managed across projects?

Injectaclad is installed by our QA Approved Contractors.

After a vetting process, contractors are trained at our headquarters in Cardiff to ensure they fully understand the system.

We work with a small number of contractors deliberately, to maintain high standards across all installations.

In addition to training, we carry out site audits on live projects to verify that installations are being completed by trained operatives, in line with technical specifications and guidance.

Each project is documented as part of the Golden Thread, forming a live record passed from managing agent to managing agent or building owner to building owner.

All of our QA Approved Contractors are third-party accredited for passive fire protection and provide the end user with their own accreditation, alongside our product/system accreditation.

What types of projects has Injectaclad been used on so far?

Since 2020, Injectaclad has been used across the UK and Ireland on a wide range of buildings, from low-rise to high-rise, including everything from small remediations to multi-million-pound schemes.

Most projects involve multi-storey, multi-occupied residential buildings.

These include apartment blocks, student housing, Ministry of Defence buildings, modular homes, hospitals and care facilities.

Injectaclad is tested for use in timber-framed buildings, properties of traditional construction, and buildings with internal SFS structures, both with and without sheathing board.

To determine suitability for a specific project, we typically require a section drawing of the cavity build-up to compare against our third-party accredited EXAP [Extended Field of Application Assessment].

How has demand changed in recent months, particularly in light of the Public Accounts Committee report and the Gateway 2 backlog?

Most industry professionals agree that the Building Safety Regulator (BSR) represents progress toward safer living environments.

However, the BSR has acknowledged that it underestimated the volume of applications it would receive, resulting in a backlog.

This backlog has reduced demand for Injectaclad over the past year, as high-rise projects remain delayed in the Gateway 2 system.

Developers and building owners are keen to proceed, and in many cases, our QA Approved Installers already have contracts ready to begin once BSR approval is granted.

The BSR has indicated that its resourcing is improving, and the time from submission to decision is expected to shorten.

This will allow more remediation work to move forward, improving safety for residents and property stakeholders.

Meanwhile, demand remains strong for lower-risk buildings under 18 metres in height.

What future role could Injectaclad play in improving remediation outcomes?

We see Injectaclad continuing to play a central role in this effort, not only in the UK and Ireland but potentially worldwide.

The system is protected by a global patent, and our ability to deliver on its potential depends on two things: strong supporting test data and the quality of our QA Approved Installers – both of which we are committed to expanding and improving.

If you have a potential project where Injectaclad could be a suitable solution, please email enquiries@injectaclad.com.

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

Huntsman launches passive fire protection system for electric vehicle battery components

Huntsman unveils polyurethane coating for passive fire protection in EVs

Huntsman has announced the launch of a new intumescent polyurethane coating system designed to enhance passive fire protection in electric vehicles.

According to Huntsman, the POLYRESYST EV5005 coating can be applied to both metal and composite substrates used in EV battery enclosures, helping to preserve structural integrity in the event of a fire or thermal incident.

The system was developed in response to increasing safety expectations from regulators and consumers in the EV sector, the company said.

Huntsman confirmed the new coating was showcased at The Battery Show Europe, which took place in Stuttgart in early June 2025, alongside other polyurethane systems it has developed for EV battery applications.

The company added that the new formulation does not restrict vehicle design or production processes and has been engineered for compatibility with automated spray application.

Product aims to improve fire performance and production speed

Huntsman stated that the POLYRESYST EV5005 polyurethane coating was created to help EV manufacturers meet fire safety standards while maintaining production efficiency.

The material is designed to be applied without minimum or maximum thickness limitations, enabling customisable fire protection coverage across battery enclosures.

It is fast curing, according to the company, with abrasion resistance and hydrolytic stability, and delivers a flexible but strong layer.

The system is also formulated for high-throughput automated production lines.

Huntsman said it adheres to a wide range of substrates and sets within seconds, eliminating the need for post-curing or ovens.

A short tack-free time allows multiple coats to be applied rapidly, helping speed up workflows and reduce bottlenecks.

System supports structural protection in thermal events

Huntsman highlighted that one of the main benefits of the POLYRESYST EV5005 system is its contribution to structural integrity in the event of a thermal runaway or mechanical impact.

The coating is intended for use within EV battery modules and packs, which are at heightened risk of ignition due to concentrated energy storage.

Irina Bolshakova, Global Automotive Marketing Director at Huntsman, said: “The use of technologies that can help delay or prevent thermal runaway is a hot topic in the automotive industry.

“Manufacturers are actively looking for materials that enable them to integrate additional fire resistance into battery enclosures and other interior components, without adding weight or complexity to the design and manufacture of vehicles.

“POLYRESYST EV5005 system has been developed with exactly those needs in mind and is part of a wider portfolio of products that we offer to help safeguard the structural integrity of EV batteries.”

Complementary solutions presented at trade event

Huntsman noted that its wider EV materials portfolio was also promoted at The Battery Show Europe.

This included SHOKLESS polyurethane foam systems, designed to protect battery modules and packs through thermal insulation and vibration damping.

The company said SHOKLESS materials are compatible with standard polyurethane processes and can be prefabricated.

Also exhibited were Huntsman’s VITROX WCM and RTM technologies, which support the production of thermally resistant lightweight upper battery covers.

According to Huntsman, the range is aimed at reducing weight while maintaining resistance to thermal propagation.

RIMLINE FC polyurethane systems were also presented.

These are designed for composite sandwich structures in EVs and can be used in underfloor elements, door inserts and other semi-structural parts.

Huntsman presentation highlighted battery material innovations

Huntsman confirmed that its automotive team participated in the conference programme at The Battery Show Europe.

Josh Wimble, Market Segment Manager for EV Batteries at Huntsman, delivered a presentation titled Enabling Next-Gen EV Batteries with Huntsman Material Innovations.

The session took place on 3 June 2025 at the Battery Tech Theater and outlined the company’s approach to EV battery material development.

Wimble described the various polyurethane systems Huntsman has introduced to support safer, more efficient EV battery manufacturing.

The presentation formed part of the company’s broader engagement at the event, where it also met with manufacturers and suppliers to discuss technical requirements and product integration.

Huntsman launches passive fire protection system for electric vehicle battery components: Summary

Huntsman has launched a new intumescent polyurethane coating system called POLYRESYST EV5005.

The coating is designed to provide passive fire protection for EV battery enclosures.

The company said it is suitable for metal and composite substrates and can be applied without thickness restrictions.

It cures quickly and adheres to various surfaces without the need for ovens or post-curing.

The system was developed for use in automated production environments.

Huntsman showcased the product at The Battery Show Europe in Stuttgart in June 2025.

Other technologies presented included SHOKLESS foams and VITROX polyurethane casing systems.

RIMLINE FC systems were also featured for use in lightweight composite EV parts.

Irina Bolshakova, Huntsman’s Global Automotive Marketing Director, said the product addresses current fire safety demands in EV manufacturing.

Josh Wimble, Market Segment Manager, presented details of Huntsman’s EV battery portfolio at the event on 3 June.

Updated Level 2 certificate in passive fire protection announced by ASFP

ASFP introduces modular certification in the UK fire sector

The Association for Specialist Fire Protection (ASFP) has announced updates to its Institute of Fire Engineers (IFE) Level 2 Certificate in Passive Fire Protection.

According to ASFP, the updated qualification is now assessed entirely through an online multiple-choice exam format.

Candidates must pass four unit exams to obtain the full Level 2 Certificate.

Modular exams introduced for passive fire learners

ASFP stated that each of the four exams focuses on a distinct subject area within passive fire protection.

The four units cover: structural frame of the building; fire-resisting walls, floors, ceilings and glazing; fire stopping including cavity barriers and the building envelope; and fire doors and shutters.

The organisation added that candidates may also take individual unit exams to achieve a Level 2 Award Qualification in one specific area, rather than the full certificate.

This format is designed to meet demand for more targeted training options.

Flexibility and accessibility prioritised in new exam format

The updated qualification has been designed to allow learners to participate remotely, regardless of location.

ASFP explained that this shift to an entirely online multiple-choice assessment aims to improve access and convenience for those working in the fire protection industry.

It noted that the new structure enables professionals to gain recognition in individual specialisms or pursue full certification as suits their needs.

The organisation said this flexibility may benefit both individuals and employers aiming to align skills with operational requirements.

Professional development aligned with industry needs

ASFP said the modular structure was created in response to requests from industry professionals for more relevant and accessible learning routes.

It stated that these changes are intended to support professional development and help ensure that those working in passive fire protection have access to current technical knowledge.

The qualification aligns with evolving best practices across the sector, according to ASFP.

The organisation encouraged those interested to visit its website for further information on registration and assessment details.

ASFP launches new passive fire protection qualification structure: Summary

The Association for Specialist Fire Protection (ASFP) has updated its IFE Level 2 Certificate in Passive Fire Protection.

The changes apply to professionals based in the United Kingdom.

The qualification is now assessed entirely through online multiple-choice exams.

To gain full certification, candidates must pass four unit-based exams.

The four units are: structural frame, fire-resisting components, fire stopping and building envelope, and fire doors and shutters.

ASFP also offers Level 2 Award Qualifications for individual units.

This modular approach allows participants to select units relevant to their current or future roles.

The qualification structure was developed in response to feedback from industry professionals.

ASFP said it aims to increase accessibility and relevance through the new format.

Details on registration and exam availability are available on the ASFP website.

Passive fire protection CPD launched by Promat to aid structural steel specification

New CPD from Promat to support fire safety regulations compliance

Promat has introduced a new Continuing Professional Development (CPD) programme.

The initiative aims to help professionals specify systems that protect structural steel from fire, supporting compliance with fire safety standards.

The CPD is designed to address the importance of early and accurate specification in line with the UK Building Safety Act.

The training will cover several critical applications of passive fire protection systems for structural steel.

These include issues related to compartmentation and the role of fire protection boards in ensuring the steel retains its integrity during a fire.

Overview of passive fire protection for structural steel

The new CPD also details the challenges faced in designing fire protection systems for structural steel.

Among the areas covered are the implications of various interfaces, the need for tested solutions to safeguard compartmentation, and specific issues like the inclusion of cellular beams.

Promat’s CPD offers guidance on how these factors influence fire safety.

This training highlights the importance of collaboration between architects, specifiers, and engineers in early project stages to ensure passive fire protection systems are accurately integrated into building designs.

Insights from Promat UK leadership

Joshua Slack, Commercial Director at Promat UK, explained the focus of the CPD: “Maintaining the load-bearing capacity of structural steel under fire conditions is crucial to building safety.

“The aim of this CPD is to provide a strong grounding in the testing standards that manufacturers should follow, and give comprehensive insights into the specification of passive fire protection systems that are proven to perform in protecting structural steel, and backed by third-party testing.”

He added: “Getting the specification right at the first stage is essential. Promat advocates collaboration between stakeholders at the earliest stage of a project, involving architects and specifiers to ensure passive fire protection systems adequately support the design.”

Focus on regulatory changes and testing standards

The CPD examines the evolving regulatory landscape, including updates to Part B regulations and the shift from British Standards (BS) to European Norms (EN) standards.

Promat highlights the need for professionals to stay informed on these changes to ensure compliance.

The training also emphasises the importance of third-party testing to ensure that fire protection systems for structural steel are certified and meet the required safety levels.

Various applications, such as the protection of steel beams in compartmentation systems, are also discussed.

Passive fire protection CPD launched by Promat to aid structural steel specification: Summary

Promat has launched a new CPD designed to improve confidence in specifying passive fire protection systems for structural steel.

The training focuses on the need for early and accurate specification in line with the UK Building Safety Act.

It addresses issues such as compartmentation and interfacing, along with the importance of using tested and certified fire protection boards.

Joshua Slack, Commercial Director at Promat UK, emphasised the importance of collaboration in the design stage to ensure fire safety measures are integrated properly.

The CPD also covers regulatory updates and testing standards to support compliance with current fire safety regulations.

Fire collars market projected to reach US$ 571.9 million by 2034

Growth in fire collars market driven by stringent regulations

The global fire collars market, valued at US$ 331.9 million in 2023, is projected to reach US$ 571.9 million by 2034, expanding at a compound annual growth rate (CAGR) of 5.2% from 2024 to 2034.

As reported by Transparency Market Research, this growth is driven by several factors, including stringent building regulations, increasing fire incidents, and advancements in fire protection technologies.

Fire collars are crucial in sealing openings around pipes and cables that penetrate fire-rated walls and floors, preventing the spread of fire and smoke.

Governments worldwide are enacting stricter fire safety codes to enhance building protection.

These regulations often mandate the use of fire-resistant materials, including fire collars, ensuring that penetrations in fire-rated barriers do not compromise structural integrity.

Compliance with these regulations is crucial for construction projects, driving the demand for high-quality fire collars.

Rise in fire incidents increases demand for fire collars

The increasing number of fire incidents globally is another significant factor contributing to the market’s growth.

As fire safety becomes a higher priority in residential and commercial buildings, the need for effective fire containment solutions, such as fire collars, has risen.

Fire collars help contain fires within designated areas, minimizing damage and enhancing overall safety.

Technological advancements in fire collar design are also shaping the market.

Manufacturers are developing innovative products that offer improved fire resistance, ease of installation, and versatility.

These advancements make fire collars more effective and user-friendly, further driving their adoption.

Asia-Pacific region leads the fire collars market

Geographically, the Asia-Pacific region is emerging as a significant market, driven by rapid urbanisation, infrastructure development, and evolving safety regulations.

The region’s strong market presence is driven by an increased focus on passive fire protection measures, which enhance building safety and comply with evolving fire safety standards.

The fire collars market in the Middle East and Africa is also experiencing growth due to stringent building regulations.

For instance, in June 2024, the Kuwaiti government announced plans to introduce a new law aimed at preventing building violations, which is expected to boost the demand for fire collars as part of enhanced fire safety and compliance measures.

Key players in the fire collars market

In 2023, Walraven introduced a new range of fire collars featuring enhanced fire resistance and improved installation ease.

These advanced fire collars are designed to provide superior protection by maintaining the integrity of fire-rated walls and floors, even in extreme conditions.

The innovation emphasises quicker installation and greater adaptability to various pipe materials, meeting stringent safety standards.

Additionally, in 2023, KBS Corporate Sales Ltd. launched a smart fire collar system integrated with real-time monitoring capabilities.

This system offers enhanced safety by providing alerts and diagnostics on fire collar performance and potential breaches.

The technology aims to improve fire safety management by allowing for proactive maintenance and immediate response in case of fire-related issues.

Demand for passive fire installer training sees significant growth

Passive fire protection specialist, Promat, responds to rising demand

Promat, a specialist in passive fire protection, has observed a noticeable increase in the demand for its competence-based training.

To accommodate this growing demand, the firm has elevated the number of courses it provides.

Visit here to find out more about these courses.

Being a significant member of the Etex group, Promat is dedicated to enhancing competency skills centred around the specification and fitting of passive fire protection products and systems.

They are striving to define the standard for proficiency and excellence in the industry.

Comprehensive passive fire installer training programmes cater to industry needs

Phil Chapman, Construction Support Manager at Etex Building Performance, stated: “The courses are run on request and we cater to various clients, including distributors, specialist installers, primary contractor fire experts, and third-party accreditation inspectors.

“Each course can accommodate up to eight participants over two days. During this time, attendees are shown installation demonstrations and given the chance for hands-on experience.

“This allows them to hone their ability to precisely measure, cut, and fit a range of Promat products for multiple uses.

“It’s crucial that safety is upheld during the installation, so instructions on the proper use of installation tools like plunge saws, gas-powered staplers, and drywall screw guns are also provided.

“The training encompasses various tasks, including the fitting of structural fire protection on beams, columns, partition walls, and constructing service enclosures.”

In addition to their regular courses, Promat also provides customised courses designed for specific application scenarios.

They also have hybrid courses that feature a selection of Etex products, such as Siniat and FSi.

Promat’s response to changing industry dynamics

Chapman added: “We have offered training courses for installers and contractors for several years, but this year we’ve witnessed a distinct spike in demand.

“This uptick is likely in response to recent adjustments in the building safety act.

“It’s heartening to observe contractors and installers valuing the essence of competency and skill safety.

“Consequently, we’ve enhanced our course offerings by 25% to address this demand.

“We are also devoted to upholding supreme levels of competence throughout Promat, ensuring that every team member, from marketing to technical roles, undergoes the training.

“This ensures hands-on installation experience, fostering more in-depth knowledge and assurance when interacting with our clientele.”

IFSJ Comment

Promat’s increased demand for passive fire installer training reflects the industry’s shift towards emphasising competence and safety in the wake of recent building safety act changes.

Contractors and installers’ heightened interest underscores a collective recognition of the need for rigorous training and skills in passive fire protection.

We anticipate a ripple effect, with more industry players likely to follow suit.

The increase in course availability by Promat is a proactive response, ensuring that the necessary skills and knowledge permeate through the construction and safety sectors.

Wireless fire detection installed at Tyneside apartment block

A residential development close to the Tyne Bridge is now protected by over 600 cutting-edge wireless devices from Hyfire following a comprehensive overhaul of the fire system. The new fire system installed at Curzon Place by RayFire Services Ltd marks the first complete overhaul in the building’s industry, bringing it fully into line with the latest UK fire regulations and best practice.  

Ray Hope, Managing Director at RayFire Services, commented: “This was largest, smoothest install we have carried out to date, largely thanks to the simplicity of setting up and installing the Hyfire Taurus wireless devices, which made the whole process from survey through to commissioning completely seamless. For an apartment complex with residents in situ, you really couldn’t ask for more. 

“Working with the Hyfire team, we specified a full communal Level 1 system, incorporating heat detection and sounders within each apartment lobby and additional heat detection in sensitive areas. We were able to reduce wiring by up to 90%, with a radically reduced installation schedule and minimal disruption for residents.” 

Hyfire offers a range of commercial standard wireless fire devices on the market, ranging from optical, multi-criteria and heat detectors to notification, alarm, interface and control units, all fully certified to EN54. All products offer the highest performance and quality in the industry, and are also fully compliant with BS5839 Part 1. Fire panels are wired via a loop to translators, from which wireless devices can be used on their own to build fully wireless systems of virtually any size, or mixed with Hyfire wired products to provide seamless hybrid solutions, offering total flexibility to specifiers and installers.  

Robert Bruce, Hyfire National Sales Manager – North, said: “This is one of our first projects with RayFire Services, and it was great to work on such a landmark building. The Taurus range, combined with an Advanced MxPro panel, offers all of the capabilities of its wired equivalents, with the added benefits of simplicity and ease of installation, which is a major advantage for both building occupiers and the end client. With more and more fire system upgrades taking place outside of the usual maintenance schedule, the ability to limit the impact on the structure is also very welcome.”  

Developed in Trieste, Italy, the global centre for wireless fire design, Taurus features Pathfinder Technology, which allows the devices to communicate over up to a kilometre, point to point in open air, and further where expansion hops are used. Antenna technology has been optimised to allow communication across different frequencies and environments, which means that Taurus can do the job with less equipment and less batteries, thus saving on costs.  

Colin Wrightson, Director at Securetech Systems NE Ltd, lead contractor for the end client on the project, commented: “We had a clear brief to deliver this project as rapidly as possible, with minimal intrusion and inconvenience, so Hyfire wireless devices were the obvious choice. The installation was completed ahead of schedule, the system is working as specified and the residents are very happy with the outcome. You can’t really ask for more.”  

SIKA updates Fire Protection Solutions handbook

Building chemicals manufacturer Sika has updated its Fire Protection Solutions handbook for the UK market as part of its commitment to helping specifiers and building managers develop a passive firestopping strategy.

The handbook contains detailed information on Sika’s extensive range of passive fire protection products which have been specifically developed to help restore the fire resistance of walls and floors when disrupted by linear seals, cavity barriers or penetration services.

The handbook has been updated to better meet the specific needs of specifiers working in the UK, with the guide providing technical advice and detail on the relevant testing and safety standards that need to be met.

Sika’s passive fire protection handbook is part of a range of resources that have been developed to help specifiers control and contain the spread of fire across a wide range of sectors. Most recently, Sika has launched a new online Fire Stopping Solution Finder tool has been created to support the specification process by helping to identify the most appropriate and effective fire stopping products to use.

Additionally, Sika’s experienced technical team is on hand to provide detailed technical evaluations for more complicated joint specifications. These technical evaluations are offered free of charge, and can usually be completed within a working week, providing all the necessary information is supplied. These are legal documents which can then provide building owners with the reassurance of knowing that they adhere to the relevant building regulations.

To discover more about Sika’s passive fire protection range and to download a copy of the Sika Fire Protection Solutions handbook, visit www.sika.co.uk/passivefire

FireArrest app launched to “support compliance with fire safety measures”

Designed to support fire safety professionals in ensuring compliance with fire safety measures, the FireArrest app has launched. This new passive fire protection app allows site managers, surveyors and onsite teams to communicate across multiple fire safety projects.

The app has been designed alongside fire stopping professionals, specifically for use in the fire protection sector, with the aim of offering a solution that is “modern, easy to use, intuitive, wide-ranging.”

The full array of features allows fire professionals to work simultaneously on a project effectively and collaboratively while providing a complete audit trail of any work that has been completed to ensure compliance every step of the way, says the company behind the app.

Managing Director, Mark Shaw, said: “I’m delighted we have been able to roll this technology out. We’ve worked incredibly hard to create a product that is simple, affordable and effective. We are able to cover every stage of your passive fire protection project, from the first survey to completion. The app is full of tools and features which give users the opportunity to report and complete work efficiently.”

To coincide with the launch, FireArrest has also unveiled a new website. “We’ve opted for a modern and sleek design, to correspond with our brand values, and we’re really pleased with the results.”

To mark the app launch, FireArrest is offering an exclusive launch price, with the first six-months at half price for anyone who signs up.