Updated KASK Quantum series enhances safety for wildland firefighting and technical rescue

The KASK helmet upgrade now certified for water rescue

Expanded protection now covers water rescue

KASK has announced the updated Quantum helmet series, designed for wildland firefighting and rescue operations, and now certified for water rescue use when equipped with protection panels.

The Quantum series was first introduced as KASK’s debut helmet range developed specifically for wildland firefighting, technical and mountain rescue.

The company said the latest version extends protection capabilities to water rescue scenarios by meeting the EN 1385 standard for canoeing and white-water sports when the Quantum protection panels are mounted.

Developed to meet four key European standards

According to KASK, Quantum helmets are tested to four European safety standards covering wildland firefighting (EN 16471), technical rescue (EN 16473), mountaineering (EN 12492) and, with the new panels fitted, water rescue (EN 1385).

The company explained that the series was created to meet the demands of modern emergency response operations, combining impact resistance, durability and stability with improved comfort and usability.

Focus on material performance and comfort

KASK said the Quantum helmet features a polycarbonate external shell that resists heat, flame and chemical exposure, combined with a high-density expanded polystyrene (EPS) internal shell and a thermoformed cover for enhanced strength and easy cleaning.

The helmet includes an Adaptive Fit system with ergonomic side wings and a self-adjusting hinge that maintains stability while allowing movement.

It is available in two configurations – a closed shell or a Cabrio version with 14 vents and anti-intrusion metal mesh covers for airflow and debris protection.

Integration with multiple protection accessories

As part of its modular design, the Quantum series includes integrated slots for mounting KASK eye, face, hearing and weather protection systems, as well as the new protection panels.

A front attachment point also allows for easy installation of accessories such as badge holders and headlamps.

The company added that all KASK helmets have been tested for rotational impact performance since 2019 under the KASK rotational impact WG11 test.

Award-winning design recognition

The Quantum series received the iF Design Award 2023 for Design Excellence from the iF International Forum Design.

KASK said the award reflected its goal to combine user-centred safety with advanced technical design under its guiding principle, “Performance is a beautiful thing.”

Relevance for fire and safety professionals

The updated KASK Quantum helmet series is relevant for professionals involved in wildland firefighting, technical rescue, mountain rescue and water rescue operations.

For procurement officers, the model’s compliance with four European standards provides a single platform suitable for multiple disciplines, reducing the need for separate equipment across rescue teams.

For training officers and incident commanders, the addition of EN 1385 certification extends suitability to flood and swift-water response environments.

For engineers and equipment specifiers, the modular design supports compatibility with eye, face and hearing protection systems, aligning with PPE integration strategies used across emergency and industrial settings.

KASK unveils updated Quantum helmet series for wildland firefighting and rescue: Summary

KASK has announced an update to its Quantum helmet series, originally developed for wildland firefighting, technical and mountain rescue operations.

The new model now offers water rescue capability through compliance with EN 1385 when fitted with Quantum protection panels.

Quantum helmets meet four European standards in total, covering firefighting, rescue, mountaineering and canoeing or white-water sports.

The design combines a fire and chemical-resistant polycarbonate external shell with a high-density EPS interior and Adaptive Fit system for wearer comfort.

The Quantum series received the iF Design Award 2023 for Design Excellence.

This article contains information from the following source: KASK

Firefighter’s helmet reflectivity study reveals thermal risks from colour and soot

Helmet heat protection reduced by colour and soot, says French research

A new study has found that firefighter helmets lose their ability to reflect heat depending on their colour and surface condition.

According to Fire Safety Journal, Volume 155, chrome plated helmets reflected up to 83 percent of radiative heat, while coloured variants showed reflectivity as low as 3 percent.

When contaminated by soot or combustion deposits, reflectivity dropped to around 36 percent, even for chrome helmets.

The research, led by A. Collin and colleagues in France, analysed 16 helmet samples currently in use by Fire and Rescue Services across France, England and Canada.

The study focused on directional-hemispherical reflectivity and absorptivity across infrared wavelengths, measuring how helmets performed at temperatures up to 1000 K (727°C /1340°F).

Helmet types and thermal performance examined

The study used infrared spectrum analysis to examine heat reflection in helmets used in emergency response.

Chrome plated helmets showed the best thermal protection by reflecting most radiative energy and limiting absorption.

Coloured helmets had much lower reflectivity, depending on pigment, with red helmets absorbing nearly all heat exposure.

Soot or other residue significantly reduced reflectivity, regardless of original surface, suggesting that maintenance and cleaning influence thermal protection.

The findings build on earlier experimental work, including that of Barnett (2003), who studied abrasion and surface degradation in helmet materials under high heat.

Sample and standards used in testing

Sixteen helmets were tested as part of the research.

All samples met EN 443:97, the European standard for firefighter helmets.

The helmets were sourced from French fire departments including SDIS 54 (Meurthe-et-Moselle) and SDIS 49 (Maine-et-Loire), as well as from LCPP (Laboratoire Central de la Préfecture de Paris).

The helmets varied in colour and manufacturer, but none were named for confidentiality reasons.

Measurements were taken across different points on each helmet to assess consistency in performance.

Research context and motivation

The study responds to concerns about rapid helmet deterioration during use or training.

Infrared reflectivity, especially in contaminated helmets, is a major factor in heat protection for personnel in radiative environments.

The authors cite previous studies into garment protection, water spray use and nozzle dynamics, noting that helmets remain under-studied in heat transfer literature.

The research was intended to quantify radiative properties across real-world helmet types and provide data for future equipment design and policy decisions.

According to the authors, all raw data are available in a publicly accessible database.

Implications for firefighter safety and equipment design

The study reinforces the thermal advantage of chrome helmets under clean conditions.

It also highlights the need for regular cleaning to maintain heat protection levels during live incidents and drills.

The reduction in reflectivity from surface contamination may increase the risk of thermal injury in high-flux environments such as flashovers or backdrafts.

The researchers recommend greater awareness of surface degradation and cleaning protocols.

Future helmet designs may need to incorporate materials or coatings that retain reflectivity even after exposure to soot or abrasion.

Helmet reflectivity study reveals thermal risks from colour and soot: Summary

Fire Safety Journal has reported that helmet colour and soot contamination reduce the ability of firefighter helmets to reflect heat.

The study was conducted by researchers including A. Collin and Z. Acem in France.

It tested 16 helmets currently used by fire services in France, England and Canada.

Chrome plated helmets reflected an average of 83 percent of radiative energy at 1000 K.

Coloured helmets reflected between 3 and 14 percent of heat depending on pigment.

Soot reduced reflectivity to around 36 percent, even for chrome helmets.

The study used infrared spectrum measurements to assess heat reflection and absorption.

All tested helmets met EN 443:97 standards.

Previous research has shown helmets degrade during use, causing blistering and reduced surface performance.

The findings highlight the importance of cleaning and maintenance.

Raw data from the study are available in a public-access database.

Rosenbauer introduces the HEROS H10 helmet for global firefighting

New helmet designed for forest and wildland firefighting

Rosenbauer has announced the launch of the HEROS H10 helmet, designed to complement the existing HEROS Titan and HEROS H30 models.

As reported by Rosenbauer, the HEROS H10 is specifically tailored for forest and wildland firefighting, as well as technical rescue operations.

The helmet meets five European standards, making it suitable for high-altitude and water rescue missions.

Additionally, it is certified to the Australian standard, highlighting its global applicability.

A key feature of the HEROS H10 is its compatibility with other HEROS family helmets, including interchangeable interior fittings, which enhances cleaning, hygiene, and parts availability.

Production details and capacity

The first prototypes of the HEROS H10 were successfully manufactured in May 2024.

Series production is set to begin in July 2024 at Rosenbauer’s Pichling plant near Linz, Austria.

This facility, known for its high-quality firefighting equipment, will produce up to 130,000 custom helmets annually in a single-shift operation.

The plant’s workforce includes highly skilled personnel with extensive experience in helmet production.

The on-site quality department maintains rigorous standards, ensuring the safety and reliability of each helmet.

Advanced IT support, including a 3D configurator in the Rosenbauer Online Shop, allows for customer-specific adjustments, while RFID technology ensures precision and efficiency in the production process.

Sustainable practices and local partnerships

Rosenbauer demonstrates a commitment to sustainability in its production practices.

Most suppliers are located near the Pichling plant, reducing transportation time and CO2 emissions.

The company uses high-temperature resistant yet recyclable polyamide thermoplastics instead of problematic duroplastics, reflecting an environmentally responsible approach to manufacturing.

Global impact of the HEROS H10

The combination of advanced technology, production efficiency, and Austrian craftsmanship positions the HEROS H10 as a premier firefighting helmet.

Rosenbauer expects the helmet to positively impact the safety and comfort of emergency response teams worldwide.

MSA Safety launches V-Gard H2 safety helmet with Mips protection system

MSA Safety unveils V-Gard H2 helmet

MSA Safety has announced its latest head protection innovation, the V-Gard H2 Safety Helmet.

This new addition to the V-Gard line integrates the Mips brain protection system, enhancing safety for industrial workers.

Greg Martin, Senior Vice President and Chief Product and Technology Officer at MSA Safety, highlighted the helmet’s features: “The V-Gard H2 Safety Helmet extends MSA Safety’s position as the leader in industrial head protection with new innovations and added lateral protection for particular applications.”

The helmet is designed to meet ANSI Z89.1 Type II certification, protecting against various head impacts, including lateral and side impacts.

Mips brain protection system integrated in new helmet

The V-Gard H2 Safety Helmet offers the option to include the Mips brain protection system.

This system is a low-friction layer inside the helmet that moves slightly upon impact, redirecting rotational energies and reducing the risk of brain trauma.

Max Strandwitz, CEO of Mips, emphasised the importance of this partnership: “Mips is proud to partner with MSA, a global PPE leader, to further amplify our mission to lead the world to safer helmets.”

MSA Safety’s new helmet aims to address the dangers of traumatic brain injuries (TBIs) in industrial settings.

The Mips system adds a layer of protection against angled or lateral impacts, such as those from slips, trips, and falls.

Versatile features of the V-Gard H2 Safety Helmet

The V-Gard H2 Safety Helmet comes with various features to enhance its utility in different industrial applications.

These include an integrated 4-point chinstrap and compatibility with most V-Gard H1 and V-Gard accessories.

The helmet is available in both vented and non-vented options, offering a wide range of colors and customisation choices, including logo options.

Greg Martin noted the versatility of the helmet: “We’re offering customers highly customizable and versatile helmet options for use across a wide variety of industrial areas and applications.”

MSA Safety’s commitment to worker protection

The V-Gard H2 Safety Helmet is part of MSA Safety’s broader mission to keep people safe at work.

By partnering with Mips, MSA Safety aims to enhance the protective capabilities of its helmets, ensuring they meet the diverse needs of industrial workers.

Max Strandwitz of Mips further emphasised the significance of addressing TBIs in the industry, noting that the collaboration with MSA Safety is a milestone in improving industrial safety.

Rosenbauer set to release new lightweight fire helmet, the HEROS H10, later this year

Introduction of the HEROS H10 to enhance fire safety gear

Rosenbauer is preparing to enhance its fire safety equipment line with the upcoming release of the HEROS H10 helmet in fall 2024.

The new model focuses on providing essential protection against both flames and mechanical impacts while minimising the weight to alleviate strain on firefighters during extended wear.

Development and design insights of the HEROS H10

The HEROS H10 was meticulously designed to comply with multiple safety standards, achieved through extensive design and prototyping stages, including 3D printing to refine its features and ensure its adaptability.

“Our rigorous testing and prototyping have been instrumental in developing a helmet that meets the diverse needs of fire safety and rescue operations while providing unprecedented comfort,” stated a Rosenbauer representative.

Transition to production and unique features of the HEROS H10

Currently in the pre-series production phase, the HEROS H10 employs advanced materials and manufacturing techniques such as injection molding to produce the helmet shells.

The helmet is notable for its lightweight, under 500 grams, and versatility, certified for various uses including forest firefighting, mountain rescue, and industrial safety, making it suitable for a broad range of emergency scenarios.

IFSJ Comment

The forthcoming launch of the HEROS H10 helmet represents a strategic enhancement to Rosenbauer’s safety equipment offering, anticipating the needs of fire and rescue personnel who require reliable protection without the burden of heavy gear.

This innovation in helmet design is indicative of Rosenbauer’s commitment to advancing safety technology, aligning with industry standards and expanding the functionality of protective gear used in challenging environments.

The introduction of the HEROS H10 is expected to set a new benchmark in the design and functionality of fire safety helmets.

Phenix Technology creates custom firefighting helmet

Firefighting equipment manufacturer, Phenix Technology, Inc., has created an exclusive custom TL-2 leather firefighting memorial helmet in honour of the Charleston 9. This helmet was created exclusively for the Charleston Fire Department.

The exclusive helmet features a unique Charleston 9 logo on the rear brim that was created in memory the 9 Charleston firefighters that were lost on June 18, 2007, in the Sofa Super Store Fire. Each helmet created will feature a 3-digit serial number with the very first helmet starting at serial number 010. The first 9 helmets will be dedicated to the Charleston 9 and will be placed inside of a new Charleston fire station that will be built in the near future. These helmets will be exclusively manufactured for Charleston firefighters.

“Phenix Technology, Inc. was honoured to have been asked to create this helmet. It will serve as a constant vigil for those who were lost and as a symbol of remembrance for the amazing men and women of the City of Charleston Fire Department. May we never forget our brothers, and may their families find peace knowing how deeply each of them were loved and how much they are missed today,” said Angel Sanchez, Jr, Director of Global Operations for Phenix Technology, Inc. This helmet is now available exclusively to City of Charleston firefighters.

phenixfirehelmets.com/