Siderise CEO Adam Turk reappointed as Chair of Construction Products Association

Adam Turk of Siderise to lead trade body for third year

Adam Turk, the CEO of Siderise, will remain as Chair of the Construction Products Association (CPA) for a third consecutive year to assist the sector during a period of intense regulatory transition.

The CPA confirmed the reappointment during its Spring Lunch on 23rd April.

As the primary organisation for UK construction product manufacturers and suppliers, the CPA works with government officials to develop evidence-based policies and safety solutions.

Turk has supported the association for nearly two decades and possesses extensive experience within the construction sector.

His leadership is intended to help the industry adapt to a more robust regulatory regime and a culture focused on integrity.

The CPA acknowledged his contribution by extending his tenure beyond the standard two-year limit.

Siderise CEO addresses regulatory reform and market challenges

Turk described the current environment as a triple challenge involving a difficult UK market, global uncertainty and a major reform agenda.

He commented on his reappointment: “As the umbrella organisation for the construction products sector, the CPA is highly respected for its contribution.

“It is an honour for me to have been asked to stay as Chair for another year, as the industry faces the triple challenge of a difficult UK market and uncertainty caused by global factors whilst being asked to undertake a significant reform agenda under the Construction Products Regulation and General Safety Requirements proposals.

“I will be doing all I can to ensure a smooth transition through the various obstacles in front of us.”

Peter Caplehorn, Chief Executive of the CPA, added: “We are extremely grateful for Adam’s continuing support of our Association and the work we undertake to support this sector.

“His vast industry experience and considerable energy and enthusiasm are priceless as the challenges facing us seem to grow in complexity and severity.”

The association provides economic, technical and sustainability insights to support its members during these changes.

Siderise attains ISO 50001 for UK manufacturing sites

Siderise secures ISO 50001 energy management certification

Siderise has achieved ISO 50001:2018 Energy Management System certification across its manufacturing operations in the UK.

The company announced that the standard covers both Siderise Insulation Limited (SIL) and Siderise Special Products Limited (SSPL).

This marks the first time these two entities have jointly attained an ISO certification through a unified approach.

NQA performed the certification to confirm the business has implemented a framework aligned with international best practice.

Teams in Hadleigh and Maesteg collaborated to establish the single integrated system for energy management.

The system allows the organisation to identify and manage Significant Energy Users (SEUs) while monitoring consumption trends.

Auditors noted strong leadership engagement and a high level of energy awareness during the assessment process.

Operational benefits of the Siderise energy framework

The certification supports customers in meeting procurement requirements across the built environment, industrial and transport sectors.

Improving the efficiency of manufacturing processes contributes to reducing the embodied carbon of products.

Siderise stated that the framework provides third-party verified evidence of energy performance for tenders and frameworks.

The system complements existing product-level certifications such as Environmental Product Declarations (EPDs) and BES 6001.

Simon Mullett, Energy Management Lead at Siderise Group, said: “Achieving ISO 50001 certification is a step forward for Siderise and a milestone I am extremely proud of.

“This is the first time SSPL and SIL have achieved a certification jointly, demonstrating a truly integrated, Group-wide approach to energy management.

“ISO 50001 provides us with the structure, discipline and data we need to continually improve our energy performance, reduce our carbon footprint, and ensure that sustainability is embedded into the way we operate.

“It is a key enabler of our ESG strategy and supports the long-term resilience of our business.”

Support for greenhouse gas emission targets

The framework helps reduce Scope 1 and Scope 2 greenhouse gas emissions by eliminating waste in energy-intensive processes.

Enhanced monitoring of production equipment and utilities provides data to guide maintenance and capital investment decisions.

The certification reinforces compliance with existing schemes including the Energy Savings Opportunity Scheme (ESOS) and Streamlined Energy and Carbon Reporting (SECR).

The Group intends to use this foundation to drive further reductions in energy intensity across its manufacturing sites.

Future efforts involve expanding data capabilities to embed energy performance into design and procurement decisions.

Siderise introduces dedicated fire protection for precast concrete facades

Siderise launches dedicated precast range

Siderise has launched the PC-FS Firestop and PC-CB Cavity Barrier range, described as the UK’s first commercially available passive fire protection package developed specifically for precast concrete cladding systems.

Siderise said it previously supported precast concrete façade applications with its CW-FS Firestop and reapproached the application in response to demand for these external wall systems.

The new range was developed as a dedicated solution for systems with tight tolerances and limited access.

It was also developed to address difficult interfaces and construction sequencing.

Product design and fire test details

The stone wool Lamella core provides built-in compression and uses a bracket-free fix for narrow voids.

Siderise said this contributes to faster installation times when compared with less compressible barriers.

PC-FS Firestop and PC-CB Cavity Barrier can also be fitted from above or below the slab.

The company said this supports projects where topside access is restricted or where sequencing requires a different installation route.

Both products are tested to EN 1366-4 and EN 13501-1 standards.

Siderise also cited supplementary fire test evidence for precast concrete panel bracket penetration and end of flexible wall configuration.

The supplementary evidence also covers firestop bracket securement to the underside of the slab edge.

Fire resistance and technical support

The firestopping products PC-FS60 and PC-FS120 offer third-party certified 1 hour and 2 hours of fire resistance respectively.

The cavity barrier PC-CB30 offers 30 minutes.

Siderise said the range is supported by technical services and specification resources.

These include a specification pack with technical information and guidance on joints and complex details such as blade column interfaces and other challenging geometries.

Siderise named in Building’s Good Employer Guide for second year running

Siderise recognised for second year

Siderise has been named in Building’s Good Employer Guide 2026 for the second consecutive year and remains the only product manufacturer included on the list.

The guide recognises organisations for their commitment to people, culture and workplace experience.

Siderise linked the recognition to its work on employee wellbeing, safety and inclusion.

It also cited professional development routes, internal progression and flexible working policies.

The statement said its workplace culture is shaped by collaboration, curiosity and continuous improvement.

Siderise highlights workplace policies

Siderise said the recognition reflects the contribution of teams across the UK and internationally.

Mark Hendy, Cheif HR Officer, said: “I’m really pleased to see Siderise listed within the Building Good Employer Guide for a second consecutive year, particularly as we are once again the only construction products manufacturer included.

“Our culture is the result of the daily actions and behaviours of each and every colleague, and I’m really proud that we’ve once again seen this recognised through our inclusion on this prestigious list, alongside many reputable peers.”

The company said it will continue its workplace focus through 2026.

Joined up thinking: Siderise explores perimeter joint sealing

Siderise explains why effective perimeter joint sealing in glazed façades depends on carefully considered specification, correct installation and competent contractors

When constructing any type of building with curtain walling, protecting the void at the perimeter joint with the right passive fire protection solutions is crucial.

However, even the most robust and carefully considered fire safety specification can underperform, or fail completely, if not properly installed, increasing the risk of fire and smoke damage to life, property and the environment.

Firestopping contractors play a critical role in ensuring fire safety strategies are delivered in the way they have been designed.

Installation quality

Passive fire protection is built into the building envelope and contains the spread of fire, heat and smoke by creating areas of manageable risk using fire-resistant materials and gap-filling measures.

This limits the movement of flames and smoke, protects egress routes and reduces the chance of fire-induced structural damage, which could result in collapse.

While these solutions are designed to perform without operator intervention, they must be installed correctly in line with their manufacturer’s recommendations and, where applicable, their third party verified listings, to function as intended because breaches in compartmentation could provide an easy path for flames, heat and smoke to spread up and around the building in the event of a fire.

Incorrectly installed firestopping systems will not be reflective of the way the products have been designed, tested or listed.

Issues could include the use of incorrect fixings, installing safing products in the wrong orientation or without the right level of compression, using them alongside other passive fire protection products in untested ways, and applying the sealant in two-part pack-and-spray systems with an inconsistent wet film thickness or in unsuitable application conditions.

Product selection

A listing for firestopping systems is essential because it provides independent, third-party verification that a specific firestop system has been thoroughly tested to appropriate standards and if properly installed, will perform as intended in a fire, ensuring compliance with building codes and contributing to overall building and life safety.

Listings include essential, detailed information on how the system must be installed, including maximum allowable perimeter void sizes, the required materials and their specifications.

If the installation deviates from the parameters specified in the listing, its fire-resistance rating is voided, which compromises safety.

While listings are voluntary, it helps ensure that products supplied for testing are the same as supplied to market, with ongoing assessment and surveillance from the certification body.

Manufacturers should make this information easily accessible.

In circumstances where field conditions vary from the original design, or where unforeseen build obstructions arise, technical evaluations based on the closest listed system and that recommends different installation methods may be necessary to ensure performance is not compromised.

In such cases, the evaluation should be carried out by, or in conjunction with, the manufacturer, by suitably qualified and competent persons and provide clear installation instructions.

With mitigating the risk of human error in mind, using products that have been engineered to be installed easily and accurately can assist in meeting a project’s design intent.

This can not only help to ensure a safer project but can help to reduce additional costs and lost time associated with remedial works.

For example, the vertical fibre orientation of dry-fit stone wool Lamella firestopping products, coupled with clear instructions on the foil facings, can help guide the installer in the correct direction in which to install.

Inspection

Another key benefit of dry-fit firestopping products is that there is no need for destructive inspection to sign off on their installation, with visual inspections being sufficient.

Where required or desired, some manufacturers can also conduct these non-destructive inspections – in-person and / or via app – to verify if their products have been correctly installed.

This can be invaluable, particularly on large and complex buildings where there may be many different considerations.

The final report can be included in the handover documentation, providing a clear record of exactly what’s in the building and how it was installed.

This helps to maintain a continuous thread of information, which can be a useful reference point for any future modifications to the building that may affect the envelope.

Competency and training

Everyone in the construction process must have the appropriate levels of skills, knowledge, experience and behaviours to do their job properly and adhere to code requirements.

There are several independent schemes for installation contractors that can include training, third-party certification and professional qualifications.

For example, the FCIA (Firestop Contractors International Association) promotes high firestop installation quality through accreditation initiatives like the FM 4991 Standard for the Approval of Firestop Contractors, the UL Qualified Firestop Contractor Program, and the FIRAS scheme through UKAS to BS EN ISO/IEC 17065: 2012.

They help differentiate quality contractors via third-party audits of their quality management systems and field installations, ensuring compliance with tested systems.

Whilst voluntary, they are good practice and help ensure a strong foundation of competency.

These often include various assessments of both how projects are managed, and how installations are carried out and overseen.

However, for teams wanting to know more about the explicit methods and approaches needed to install a specific manufacturer’s products effectively, training packages offered by the manufacturer can provide installers with invaluable insight into the specific nuances of their firestopping products, as well as potential build challenges, allowing them to be addressed before the installation programme has progressed and preventing issues being baked into the construction.

This offering should include a combination of classroom learning and practical onsite training, including everything from toolbox talks that ensure installation instructions and method statements are clearly understood, to delivering hands-on training and benchmark installations to demonstrate best practice.

Unless a specialist façade contractor with dedicated firestop installers has been appointed, the individuals installing the safing measures could change from project to project, or even at different stages of a single project.

Therefore, having access to manufacturer training throughout, and not just at the start, can help to ensure continual adherence to the fire safety strategy.

For this training and onsite support to be effective, early engagement with the product manufacturer is crucial.

This is especially true for ambitious, complex designs that need a tailored installation approach, or where there are deviations from the original drawings due to unforeseen challenges or changes in conditions onsite.

Additionally, manufacturers can often give feedback to design teams so they can learn to help improve the practicality of future designs, ensuring continuous improvement and collaboration.

Hidden defence

The FCIA defines the ‘DIIM’ of Firestopping™ as the proper Design, Installation, Inspection and Maintaining Protection of Firestop Systems stating that “When all the pieces of the ‘DIIM’ puzzle are present, the result is greater reliability of installed fire-resistance-rated and smoke resistant assemblies and effective compartmentation.

This ensures that installed fire-resistance-rated and smoke-resistant assemblies have a better chance of performing as designed.” There is no room for compromise when it comes to the safety of our buildings, and the success of any fire safety strategy depends on both the quality of the products and the precision of their installation.

Therefore, it is vital that firestop installers feel confident and competent to deliver accuracy onsite.

Engaging with manufacturers as early in the process as possible can provide the support necessary to ensure products are handled and fitted in line with recommendations and that they will perform as expected in the unfortunate event of a fire.

Partnering with manufacturers, like Siderise, who offer expert guidance, robust testing data, dedicated product and project specific installer training and inspection tools and services can make all the difference in enabling project teams to design and construct buildings that meet the highest safety and performance standards – both now and in the future.

This was originally published in the February 2026 Edition of International Fire & Safety Journal. To read your FREE copy, click here.

Building confidence in passive fire protection with Siderise

Peter Schmitt, US Senior Technical Services Engineer at Siderise, outlines system design, contractor needs and compliance considerations for project teams navigating varied codes

Passive fire protection underpins building safety, but varying state requirements, differing inspection practices and hard-to-verify installations leave contractors and specifiers facing complex demands.

Siderise supports this work with dry-fit firestopping and fireblocking systems.

IFSJ Editor Iain Hoey sat down with US Senior Technical Services Engineer Peter Schmitt to discuss how Siderise approaches compliance, testing and contractor support across the US market.

How would you describe Siderise’s product range and its role within wider building protection systems?

Siderise’s engineered product range supports all building exterior applications, including curtain walling and rainscreen with firestopping and fireblocking, which are both forms of passive fire protection.

The industry has developed some well-established solutions for passive fire containment over the years.

However, many of them require application of a spray or sealant to provide a smoke seal, which consumes time and money.

Siderise’s unique one-part dry-fit systems such as the CW-FS Firestop and Perimeter Barrier eliminate this additional step, simplifying the installation considerably.

Our products are unique in the fact that they feature a vertical fibre stone wool Lamella insulation core, which in turn offers unique attributes in terms of functional performance, durability and the ability to withstand building and façade movement.

Compartmentalisation is the name of the game in passive fire protection.

The goal of systems such as ours is not to extinguish a fire, but rather to restrict it to the point of origin and delay its spread to adjacent spaces.

This offers occupants, first responders, etc. sufficient time to evacuate the building.

Passive fire protection not only helps save lives but also limits damage to the structure, which can save the building owner a substantial amount of money on repairs.

What key challenges do differing state codes and varied enforcement practices create for maintaining compliance?

Code requirements and regulations can vary from one state to another, but passive fire protection requirements are very much tied to the International Building Code (IBC) so there is a significant amount of overlap.

However, one of the areas where we see the greatest variance right now is with code requirements related to fireblocking.

The IBC outlines very generic requirements for fireblocking.

In my opinion, these requirements are lagging behind other areas of the world such as the UK, where fireblocking regulations and testing standards have evolved.

That being said, I am encouraged by the relatively recent introduction of the 2022 New York City Building Code, which sought to more clearly define fireblocking requirements in NYC.

We are hopeful that other major cities will follow suit and that such practices will become more commonplace.

The time to implement such changes is not after a major incident occurs, but before.

How significant is third party testing and certification when demonstrating reliable performance of passive systems?

When dealing with life safety, the importance of testing and certification cannot be overstated.

Without comparable third-party testing and certification in accordance with the applicable testing standards, there is no way to know whether any given configuration of construction materials will provide the necessary level of fire performance.

Incorporation of certified passive fire protection systems into the building design and compliance with relevant building codes offers peace of mind to building owners and occupants alike.

Siderise always supports products with third party testing, where required.

What common installation or inspection issues most affect system performance on projects you have supported?

With regard to curtain wall joints, the most common issue I’ve seen relates to improper installation of the safing material between the slab edge and curtain wall in two-part pack and spray systems.

Insufficient compression of this material can result in premature failure during a fire or inability to handle the anticipated movement throughout the lifetime of the building.

Application of spray over the top of the safing material can also hide imperfections that could contribute to premature failure, making it very difficult for inspectors to adequately assess installation quality without destructive testing.

It also requires drying time, which makes the installation process longer.

Siderise’s CW-FS dry-fit curtain wall system, on the other hand, features a foil-facing on both sides which visibly crinkles when compressed.

This, coupled with the absence of spray on the top side, allows inspectors to easily verify that the material was continuously installed with no gaps and proper compression.

How does Siderise’s technical support extend from design and specification through to final verification?

Siderise’s technical support doesn’t end once we’ve been added to a customer’s specification, or after they’ve placed an order.

We want our customers to feel comfortable reaching out to us, at any stage of the project, no matter the question or concern.

We’re here to offer them assurance throughout the entire process, from start to finish and thereafter.

What training or guidance do contractors most often need to ensure correct installation and standards compliance?

A contractor should not only be well trained on material installation but should also be familiarised with the certified systems they are installing in accordance with.

One of the biggest challenges with ensuring proper installation is that knowledge is not always properly transferred after personnel changes.

Siderise would be happy to provide periodic virtual trainings and/or send a representative to conduct on site trainings including benchmark mock up constructions for installers to keep them up to speed.

Our site services offerings also include installation inspections to verify that they fall within the parameters of our systems.

We also offer CPD training backed up with extensive product data, which offers great support to specifiers.

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

Rethinking joint systems: Siderise breaks down fire performance at the slab edge

Siderise explains the performance differences between one-part and two-part perimeter joint systems to help project teams assess the most robust option for curtain wall applications

Robust compartmentation, supported by an appropriate perimeter fire seal solution, is essential to the passive fire protection of glazed façade systems – and is legally mandated in many regions worldwide.

To prevent vertical fire spread, firestops installed at the slab edge extend the fire resistance of the compartment floor to the rear of the façade.

These solutions typically fall into two main types: one-part dry fit systems and two-part pack-and spray systems.

Two-part pack-and-spray systems

Traditional approaches to firestopping at the facade / floor slab interface require the installation to be carried out in two separate stages.

The first step involves manually compressing generic mineral wool safing insulation material (typically 25 and 33 % compression) before installing it within the movement gap at the perimeter construction joint.

The second step involves applying a wet compound such as mastic, spray ablative or fire-rated silicone over the top of the insulation to create a smoke- and weather-resistant seal once cured.

One-part dry-fit systems

These systems feature factory engineered pre-compressed stone wool Lamella insulation with foil facings applied to the cut surfaces of the fibres to retain the ‘built-in pre-compression’ firmly in place and assist with uniformity of product density.

Designed and tested to provide a robust fire and hot smoke seal in the perimeter void between the facade and compartment floor, without the need for a topical wet sealant, they are installed in a single-fix with further manual compression of 20% for a tight fit and to accommodate movement.

Unlike the wet seal of two-part systems, one-part dry-fit firestops can be ordered pre-cut to suit the cavity width and can be supplied as part of a complete system package from a single manufacturer with spandrel insulation, mullion and transom fire protection, plus ancillary components.

In addition, these parts are often tested together in multiple test scenarios, and third-party certified as an advanced perimeter fire containment system for a more holistic approach to passive fire protection in the spandrel zone.

Each of these approaches results in different characteristics when it comes to fire performance and resilience, installation accuracy and efficiency, and repeatability and inspection.

1. Firestop resilience, durability and fire performance

Non-combustible mineral wool firestops must be durable enough to maintain their form and fit, even when subjected to façade and floor slab movement caused by environmental loads.

The safing insulation component of two-part firestop systems typically comprises standard mineral wool insulation with horizontally oriented fibres, which run parallel to the floor slab when installed.

While this 90° or transverse alignment offers stability, continual exposure to building / façade movement makes the material more susceptible to degradation along its length, resulting in the fibre structure breaking down.

This means that the ability of the safing material to recover from repeated compression cycles in-service is reduced.

This can lead to the firestop no longer maintaining the compression fit, increasing the risk of a gap forming between the product and the facade over time.

Should this occur, the perimeter seal could fail prematurely, resulting in loss of compartmentation.

Furthermore, to ensure that two-part wet-seal systems comply with the criteria of any third-party approvals or listings published by the sealant manufacturer, the safing insulation product should always be the same as that used which was in the certified tested system.

Using substitution products risks undermining the specified fire resistance performance.

Meanwhile, one-part firestops with a stone wool Lamella composition, such as ours, comprise vertically oriented fibres that run perpendicular to the substrate when installed.

Products with a vertical fibre orientation are highly compressible and flexible laterally (across their width), which enables them to not only overcome challenges presented by curved and inclined facades, but accommodate the dynamic movement of the curtain wall or floor slab.

Due to the unique structure of Siderise Lamella firestops they are able to maintain their ability to recover throughout their design life, as demonstrated through extensive age and movement cycling testing.

This means that the seal is continuously maintained throughout the lifetime of the building and for the required fire resistance period in the event of a fire.

When exposed to fire, the foil facing is designed to delaminate from the stone wool Lamella core, allowing the built-in pre-compression to be released.

This enables the product to expand and maintain its compression fit and integrity, even under the greater thermal stresses caused by the fire load that leads to facade and floor slab deflection.

Both system types can be tested to UL 2079 for air leakage, determined as the L-rating, to simulate smoke movement through compartmentation in buildings.

Leakage testing can assist authorities in determining the suitability of firestopping systems for the protection of floor openings and smoke barriers for the purpose of restricting the movement of smoke in accordance with the NFPA (National Fire Protection Association) 101 Life Safety Code.

The difference between two-part spray and pack systems and one part dry-fit systems is that the latter does not rely on a wet seal to provide an adequate L rating

2. Application conditions, consistency and installation efficiency

The wet seal compound in two-part systems is sensitive to moisture and temperature dependent during application and curing.

It must be applied in dry conditions and controlled environments – which can be a challenge during hot seasons or locations with frequent rainfall– otherwise adhesion, curing, design life and product integrity may be adversely affected.

In most cases, the maximum application temperature is typically limited to 104°F (40°C) as high heat can cause rapid skinning or premature curing, making tooling difficult and reducing adhesion.

Similarly, exposure to rain, running or standing water, or high humidity can lead to washout or uneven curing.

Storage conditions for wet seal firestop compounds are just as important as application conditions because they directly affect product performance and shelf life.

Most manufacturers typically require sealants to be stored between 40 and 80°F (5 and 25 °C), which in turn requires onsite air-conditioned storage facilities in regions prone to inclement weather.

Improper storage can reduce workability if the sealant has thickened, shorten open time and curing consistency, and compromise the fire rating performance due to chemical degradation.

Since wet sealants rely on direct contact with the substrate, surfaces must be clean, dry, and free of dust, grease, oil or other contaminants.

Dust or debris creates a barrier that can weaken bonding and lead to gaps or peeling over time, while contaminated surfaces can cause voids or uneven curing.

Furthermore, the wet-film thickness must be applied consistently to achieve the required dry-film thickness as thickness variation due to human error can risk compromising the slab edge fire seal.

Wet spray firestop systems require specialist equipment such as pumps, mixers and nozzles.

Transporting and setting up heavy spray rigs on high-rise sites can be time-consuming while tight slab edge zones often lack room for bulky equipment, especially when façade works are concurrent.

In addition to having to wait for the right application conditions, the ‘curing’ and overspray clean up time also needs to be accounted for in the project schedule.

The flashing used to close off the spandrel zone from sight cannot be installed until after the installation has been approved, which means site operatives cannot immediately proceed with adjacent works, thus potentially holding up the build program.

This installer-driven and weather dependent approach can make it challenging to achieve a replicable level of quality across whole buildings of multiple stories, creating bottlenecks, especially when inspections are required before concealment.

In contrast, one-part dry-fit firestops are not weather or temperature sensitive and do not require any specialist application equipment and surface preparation of the substrate.

There are no curing times, wet or dry-film thickness complications or complex compression calculations.

Their straightforward installation approach, including a standardised compression percentage, can streamline the installation process and help reduce the risk of human error.

They also provide greater freedom for the installer in areas where access to the firestop zone is difficult after the facade is installed.

Dry-fit firestops can also be installed before the facade (including from the soffit).

3. Ease of inspection

With two-part systems, once the compound is applied, verifying the correct dry-film thickness, adhesion, and safing orientation and compression becomes difficult without destructive testing or a two-stage inspection.

Alternatively, when dry-fit, one part firestops are installed, visual inspections are sufficient.

The wrinkling of the foil makes it very easy to confirm if they have been installed correctly without disturbing the installation.

Their dry-fit application also makes it easier to judge bracket locations and distances, and tight jointing to ensure a continuation of the fire performance around the perimeter.

This can not only help to ensure a safer building but also reduce additional costs and lost time associated with remedial works.

Transparent protection

While traditional two-part firestop systems have been widely used in US construction, they often present challenges related to long-term durability, installation complexity, and inspection consistency.

In contrast, one-part firestop systems that have been engineered and tested to meet key standards such as ASTM E2307 and ASTM E2874 offer a reliable alternative.

By delivering uniform compression, accommodating façade movement, and enabling straightforward visual inspection, one-part dry-fix systems support code-compliant construction practices and help ensure consistent fire-resistance performance across every floor and project.

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

Siderise curtain wall firestop system named Architectural Record Product of the Year

Siderise system wins Architectural Record award

Siderise has announced that its CW-FS Firestop and CW-CB Cavity Barrier system has been named a 2025 Architectural Record Product of the Year in the Building Systems & Materials category.

The recognition comes from the New York based architecture and design publication Architectural Record, which highlighted innovation, performance integrity and contributions to the built environment.

The award relates to the CW-FS and CW-CB configuration for modern curtain wall façades and perimeter joints.

Siderise introduced the system to the US market in January 2025 after an extended programme of testing, research and refinement.

The company presents the solution as a passive fire protection option for projects that must accommodate façade movement and complex geometry at the slab edge.

Curtain wall firestopping engineered for movement

According to Siderise, the CW-FS and CW-CB combination is built around its Lamella vertical fibre stone wool construction.

This material arrangement is described as maintaining form, fit and fire performance as the façade and structure move over time.

The company sees this behaviour as especially important at the perimeter joint, where deflection and changes in joint width can be pronounced.

The system is intended for use with curtain wall assemblies where maintaining a reliable fire resisting seal under service movement is a design requirement.

Siderise states that the Lamella construction supports long term perimeter fire containment where traditional firestopping approaches may be challenged by movement.

Modular system and technical support package

The CW-FS Firestop and CW-CB Cavity Barrier system is offered as a modular solution to simplify specification and installation.

Siderise manufactures pre cut sections in a range of widths to tight tolerances for repetition in standard details.

The firm also supplies sheet material for adaptation on site when façade joints or cavity conditions fall outside typical configurations.

To support accurate specification, Siderise provides Digital Specification Packs that collate current technical datasheets, certifications, BIM objects and specification clauses.

Project teams can receive detailed technical submittals that align with particular building geometries and stated performance criteria.

Design stage guidance is available for architects, façade engineers and fire consultants working through curtain wall interface details.

The company also refers to site services delivered through the Siderise app, including training, benchmark constructions and installation inspections.

These tools are presented as a way of helping project teams align in service performance with the results achieved in laboratory testing.

Siderise comments on Architectural Record recognition

Brad Davis, Head of Commercial, Siderise North America, welcomed the Architectural Record Product of the Year award for the curtain wall system.

Brad Davis, Head of Commercial, Siderise North America, said: “We are honored to receive this recognition from Architectural Record,”

“The CW-FS and CW-CB system for curtain walling reflects our commitment to engineering passive fire protection solutions that are not only robust and resilient, but that support design teams with transparent, specification-ready information.

“This award reinforces the importance of providing movement-tolerant systems that safeguard perimeter fire containment over the entire design life of the building.”

ASFP Awards 2025 reveal the passive fire projects setting new benchmarks

ASFP Awards 2025 mark record entry levels

The Association for Specialist Fire Protection (ASFP) celebrated the ASFP Awards 2025 with a record field of entries recognising achievements in passive fire protection across the built environment.

The organisation said the ceremony highlighted individuals, companies and projects that have advanced safety and professionalism in the sector.

ASFP reported that categories covered installation projects, innovation, digital tools, training, marketing, customer service, advocacy and long-term contribution.

The 2025 awards formed part of its 50th birthday year activities.

Project and innovation winners span heritage and redevelopment

ASFP reported that Checkmate Fire Solutions won Small-Scale Installation Project of the Year for its passive fire protection upgrades at Springfield Mount for the University of Leeds.

The association stated that the scheme involved a series of Victorian residential buildings and was recognised for combining sensitive heritage refurbishment with current fire-safety requirements on a project under £1 million.

Kilnbridge Fire Protection received Large-Scale Installation Project of the Year for its role in the Olympia redevelopment.

ASFP said the Kilnbridge team coordinated more than 32,000 compliant passive fire protection installations across one of the UK’s most complex multi-plot sites.

Siderise was named Innovation Project of the Year for a pleated rainscreen cavity barrier solution developed for the G-Gate building at Olympia.

According to ASFP, the bespoke design addressed the building’s unconventional façade geometry and was cited as an example of collaborative fire safety engineering.

Quelfire won Digital Innovation of the Year for its QuelSelector tool.

The association described QuelSelector as an intuitive, free-to-use system that supports firestopping product selection and compliance by reducing errors and improving workflow efficiency across the supply chain.

ASFP Awards training and academic achievements recognised

ASFP stated that Siderise, Corrodere and Isoler received Training Recognition awards.

The association said these organisations were acknowledged for training programmes that link regulatory requirements, product knowledge and on-site installation practice.

Level 2 and Level 3 Academic Achievements were awarded to Stephen Richards of Avert Fire and Rick Cullen of Intoheat.

ASFP reported that Stephen Richards achieved the highest score at Level 2, while Rick Cullen achieved the highest score at Level 3.

The association noted that these academic awards recognised emerging professionals who are investing in their technical development in passive fire protection.

Customer service, advocacy and lifetime honours announced

ASFP confirmed that Quelfire also received Marketing Campaign of the Year for its “Because It’s Your Job to Know” campaign.

The association said the campaign was recognised for promoting shared responsibility in passive fire protection practice.

GSI Contract Services and Nullifire were named Supplier Relationship of the Year.

ASFP stated that the partnership was highlighted for its collaborative technical approach, including the launch of GSI’s training academy supported by Nullifire.

Optima Systems received Customer Service of the Year for the work of its OPTech team.

The association said the team was recognised for delivering rapid, evidence-based guidance that supports compliance on complex projects.

Margherita Mullis of Promat was named Rising Star of the Year.

ASFP reported that she was recognised for work across product development, regulatory alignment and cross-industry collaboration.

Nineteen Group received Advocate of the Year.

The association cited its role in promoting fire safety awareness across the construction and events sectors.

ASFP presented the Lifetime Contribution Award to Niall Rowan.

The association said he was honoured for decades of work to improve standards, deepen technical understanding and promote a safer built environment.

Past winners of the Regatta Challenge were also recognised, with Belgrade Insulations, Consort and CLM Fireproofing receiving their trophies at the ceremony.

ASFP reflects on 50th anniversary awards

ASFP said the awards provided an opportunity to review progress in passive fire protection as the association marked its 50th year.

The organisation added that the event showcased the breadth of activity across project delivery, training, innovation and advocacy.

Mike Ward, ASFP Managing Director, said: “The ASFP Awards 2025 highlighted the shared commitment across the sector to continued improvement.

“Each winner represents the very best of passive fire protection – a community dedicated to safeguarding lives and the future of the built environment.

“Thank you to all the nominees, sponsors, and our incredible team of internal staff who made this year happen so smoothly.

“It was an honour to host this industry-leading event on the ASFP’s 50th birthday year.

“2025 has been a whirlwind of successes, and we vow not to slow down anytime soon.

“2026 promises to be a year of innovation, expansion, and shared collaboration.

“See you all at next year’s awards.”

Siderise delivers fire integrity for NaturAL X façades in Birmingham

Siderise solution supports NaturAL X brick façades

Siderise has partnered with Ash & Lacy to provide a tested passive fire protection solution for the NaturAL X Brick Cladding System on Vita Student Gough Street in Birmingham.

According to Siderise, the student accommodation development is located at the Gough Street and Suffolk Street junction and is being built in response to demand for purpose-built student housing in the city.

The scheme is due to complete in summer 2026 and will comprise high quality apartments and shared spaces across two towers of 10 and 29 storeys.

Project elevations use a masonry brick appearance alongside curtain wall glazing to bring daylight into the building.

The project team selected Ash & Lacy’s NaturAL X Brick Cladding System, a lightweight mechanically fixed brick slip solution, instead of traditional masonry.

Siderise said the approach allows the building to retain the durability and visual character of brick while using rainscreen techniques that reduce cost, installation time, labour needs and space requirements compared with conventional construction.

To meet regulatory fire performance requirements and support a safe environment for future residents, Siderise was asked to design a passive fire protection solution that could demonstrate a two hour fire integrity rating for the façades.

Project specific fire testing at Siderise Innovation Centre

Siderise explained that its RH Horizontal and RV Vertical Cavity Barriers were re-engineered for use with mechanically fixed ventilated brick slip cladding system configurations.

To verify compatibility with the NaturAL X Brick Cladding System on Vita Student Gough Street, Siderise carried out project specific fire resistance tests at its Innovation Centre in Maesteg.

Testing used a representative wall build up and drew on several relevant standards identified for the project.

The company reported that the Siderise passive fire protection system achieved an E 120 and I 60 fire resistance rating during these assessments.

This performance met the project’s two hour integrity requirement and exceeded the results recorded for competing products.

For the curtain wall sections of the building envelope, the Siderise CW-FS120 Firestop was specified to provide two hours of fire resistance at the perimeter movement joint.

This was intended to maintain compartmentation around the slab edge, helping to limit fire spread between floors at the junction between the curtain wall and the floor structure.

Cavity barrier design supports build efficiency

Siderise stated that combining the NaturAL X Brick Cladding System with Siderise RH25 Horizontal and RV25 Vertical Brick Slip Cavity Barriers contributed to a quick and methodical installation process on site.

The RV25 Vertical Cavity Barriers use a lamella core that has been tested to show that it can operate under increased compression.

Because of this tested behaviour, the system did not require intumescent pads to be installed vertically between each support rail.

Siderise said this configuration reduced material use by removing those additional components.

The reduced component count also helped to streamline installation activities, allowing contractors to make full use of the time saving properties associated with brick slip cladding.

Site services guide installation of Siderise products

Siderise Site Services provided ongoing practical support to the installation teams working on Vita Student Gough Street.

According to the company, this included delivery of product installation training sessions before and during construction.

Siderise teams also installed benchmark areas on the project to establish reference examples for how the firestops and cavity barriers should be detailed.

These activities were followed by regular visits to the site to inspect the installation of the CW-FS120 Firestop and the RH25 and RV25 Brick Slip Cavity Barriers.

Siderise said these inspections checked that the products were being installed in line with its recommendations.

The site visits also aimed to confirm that installation matched the configuration that had been tested at the Siderise Innovation Centre.

Relevance for cladding designers and site teams

The Vita Student Gough Street project brings together a lightweight brick slip façade, curtain wall glazing and a tested passive fire protection package designed for a two hour fire integrity requirement.

For architects, fire engineers and building services engineers working on tall student accommodation or similar multi storey residential schemes, the example shows how project specific testing can be used to align cavity barrier design with a particular brick slip system and façade build up.

For façade contractors, fire-protection contractors and system installers, the use of Siderise RH25 and RV25 Brick Slip Cavity Barriers and CW-FS120 Firestop illustrates how product selection, lamella core compression performance and the removal of intumescent pads between rails can influence material use and installation sequencing.

The involvement of Siderise Site Services, including training, benchmark areas and regular inspections, also highlights how manufacturers can support on site teams in matching installed details to tested configurations on high rise student housing projects.