Are you sourcing advanced non-combustible materials, vacuum insulation panels (VIPs), or nano-microporous thermal barriers compliant with Russian structural safety regulations? Access custom-engineered systems designed for the extreme climate and safety standards of the Moscow Oblast.
Send Inquiry NowEngineered for high-temperature containment, ultra-low thermal conductivity, and structural integrity under severe fire threats.
Optimized for elevator shafts and door systems, providing high-integrity fire insulation without adding excessive thickness or weight.
View Specifications +
Flexible thermal insulation wraps designed to resist high temperature degradation while minimizing heat losses in municipal district heating and boiler systems.
View Specifications +
Ultra-thin dual-pane vacuum technology providing peak acoustic barrier properties and exceptional thermal performance in cold-climate environments.
View Specifications +
Enhanced structural core VIPs designed specifically for building envelope integrations, offering superior space savings and longevity.
View Specifications +In the modern building envelope sector, passive fire protection (PFP) is no longer treated as an isolated discipline. Urban planning dynamics in the Moscow Metropolitan Area, characterized by rapid high-rise vertical developments (such as the Moscow-City financial hub) and dense residential complexes, demand a dual-function architectural approach. Materials must concurrently deliver outstanding thermal insulation properties (combating temperatures dropping below -30°C in winter) and non-combustible safety ratings.
Historically, thick fiber-based insulation or standard organic foam panels were utilized. However, organic foams present high flammability risks (often releasing toxic gases during thermal decomposition), while traditional mineral wools require significant wall thickness. In space-restricted premium urban projects, sacrificing interior square footage to meet the thermal requirements of the Russian Federation's building code (SP 50.13330.2012 "Thermal Performance of Buildings") is economically unviable. This space-safety paradox has driven rapid local demand for Fumed Silica Vacuum Insulation Panels (VIPs) and Nano-Microporous Insulation Panels, which provide up to ten times the thermal resistance of traditional materials at a fraction of the thickness, while maintaining an A1 (non-combustible) fire classification.
Compliance in the Russian Federation is strictly governed by national technical regulations. System designs must align with Federal Law No. 123-FZ "Technical Regulations on Fire Safety Requirements". This regulation categorizes construction materials based on flammability (G1 to G4), combustibility (NG - non-combustible), smoke generation capacity (D1 to D3), and flame spread (RP1 to RP4).
For critical escape pathways, elevator shafts, industrial partitions, and ventilated facades of buildings exceeding 75 meters in height, the regulations mandate class KM0 (Non-combustible) materials. When sourcing PFP quotes, local engineers prioritize testing documentation verified by certified laboratories. Our core fumed silica VIPs and nano-microporous panels utilize inorganic silica cores that do not burn, melt, or produce toxic off-gassing at temperatures exceeding 1000°C, aligning perfectly with Russian GOST certifications such as GOST 30244-94 (Combustibility Testing Method).
| Insulation Material Type | Thermal Conductivity (λ - W/m·K) | Combustibility Rating (GOST 30244-94) | Typical Space Requirement (for R=5 m²·K/W) | Service Temperature Range (°C) |
|---|---|---|---|---|
| Fumed Silica VIPs (Zerothermo Technology) | 0.0035 - 0.0045 | NG (Non-combustible / KM0 class) | 20 mm | -70 to +80 (PET encapsulated) |
| Nano-Microporous Panels | 0.015 - 0.020 | NG (Non-combustible / KM0 class) | 80 - 100 mm | -100 to +1100 |
| Aerogel Insulation Blankets | 0.015 - 0.018 | G1 (Low flammability) | 75 - 90 mm | -200 to +650 |
| Traditional Mineral Wool | 0.035 - 0.045 | NG (Non-combustible) | 180 - 220 mm | -60 to +600 |
| Extruded Polystyrene (XPS) | 0.030 - 0.038 | G3 / G4 (Highly Flammable) | 150 - 180 mm | -50 to +75 |
Zerothermo Technology Co., Ltd., a subsidiary of the prestigious CBVAC Group and a recognized national high-tech enterprise, is headquartered in the Beijing Economic-Technological Development Area. Our state-of-the-art production base is strategically located in Nanchong City, Sichuan Province.
This industry-leading facility stands as one of China’s largest and most comprehensive production centers for vacuum technology application products. Utilizing advanced materials engineering, we manufacture ultra-high performance thermal insulation systems designed for critical aerospace, building envelopes, high-temperature industries, and pharmaceutical logistics worldwide, including key regional hubs in Eastern Europe and Moscow.
Special sizes (beyond the range of ANSI/ASME/DIN and other standards) are produced according to customers' drawings or technical parameters.
Square, oval or other special shaped flanges. Oversize/small diameter configurations such as diameters over 60 inches or micro precision flanges.
Special sizes (beyond the range of ANSI/ASME/DIN and other standards) are produced according to customers' drawings or technical parameters.
Applying passive fire protection inside the Moscow municipal boundary presents unique logistical and structural engineering challenges. The integration of high-performance thermal insulation is typically observed in three prominent local scenarios:
The vacuum insulation panel industry has branched into two main technical pathways based on core materials: fiberglass and fumed silica. While fiberglass cores offer slightly lower initial thermal conductivity at production (λ ≈ 0.002 W/m·K), they degrade rapidly in humid environments and are sensitive to minor vacuum punctures.
Fumed silica cores, though presenting a slightly higher initial thermal conductivity (λ ≈ 0.004 W/m·K), feature a nanoscale porous structure that maintains high thermal performance even if the envelope experiences micro-level vacuum degradation over decades. Furthermore, fumed silica is naturally non-combustible, whereas fiberglass systems require specific chemical additives to prevent melting during intense fires. This structural stability makes fumed silica the preferred technology for heavy construction, transport, and safety-critical fire barriers.
State-of-the-art materials engineering coupled with end-to-end supply chain integration.
Unparalleled control over core raw materials and vacuum pressure testing ensures consistent quality and long-term durability across thermal barrier applications.
Rapid design and sizing execution to meet the exact dimensions of custom elevator door components, structural cavities, and cooling systems.
Massive production infrastructure guarantees uncompromised quality control, large-scale supply capabilities, and reliable long-term delivery agreements.
Global reach and reliable freight management guarantee secure transport of sensitive VIPs directly to warehousing and job sites in Moscow.
Comprehensive technical support, design collaboration, and post-installation monitoring to ensure long-term thermal safety and efficiency.
Explore our specialized range of customized services engineered to integrate seamlessly into diverse commercial and industrial setups.
Product Details: Size: Customized. Thickness: 5mm to 15mm. High mechanical resilience and safety.
Inquire Customization +
Product Details: Size: Customized. Thickness: 5mm to 50mm. Designed for industrial hot water networks.
Inquire Customization +
Our elevator fireproof door high temperature nano microporous insulated panels prevent thermal bridging during fire events.
Inquire Customization +
Tailored shapes including curved, circular, and corner configurations for complex architectural mockups.
Inquire Customization +
Product Specification & Features. Custom Round High temperature Flexible Nano insulation panels for heavy machinery wrapping.
Inquire Customization +
High performance vacuum core structure optimized for sub-zero thermal protection and envelope applications.
Inquire Customization +
Designed for vaccine cold storage and multi-day shipping containers maintaining tight temperature profiles.
Inquire Customization +
Large format panel sizes designed for direct integration in prefabricated modular cleanrooms and logistic centers.
Inquire Customization +Delivering high-efficiency thermal insulation and passive fire protection systems across sectors.
Providing high-efficiency thermal insulation solutions for cold transport units and medical boxes. Prevents heat ingress during critical multi-day transit timelines, supporting strict healthcare compliance.
Empowering the construction sector to reduce carbon emissions, eliminate thermal bridging, and achieve carbon neutrality through ultra-thin VIPs and vacuum insulated glass window units.
Enabling safe operation of industrial kilns, metallurgical furnaces, district heating distribution stations, and heavy power generation systems with nano-microporous thermal insulation.
Supporting rapid building envelopes and modular structures in theme parks, historical restoration sites, and cold-climate resorts with lightweight, low-footprint thermal insulation components.
Demonstrating global performance and application versatility, now supporting advanced projects in Moscow and nearby regions.
Integrating advanced VIP vacuum panels to achieve zero heat loss and standard-setting safety ratings in modern server rooms and data centers.
Request Case Details +
Execution of continuous vertical fire barriers using non-combustible vacuum insulated panels to secure vertical envelope spaces.
Request Case Details +
Academic facility structural protection using non-combustible materials, ensuring student safety and excellent interior thermal performance.
Request Case Details +
Deploying VIP core containers for transporting heat-sensitive biological products in sub-zero winter environments.
Request Case Details +Committed to supporting carbon neutrality goals, Zerothermo Technology drives high-quality development of new quality productivity while promoting sustainable industrial advancement.
Detailed analysis of core materials behavior under extreme localized heat loads, showing how microporous cores delay structural door failure.
Published: 2023/Apr/19 Read Article +
Exhibition showcase highlighting new breakthroughs in fumed silica vacuum insulation core configurations for global project engineers.
Published: 2023/Apr/17 Read Article +
A technical dive into industrial process safety, heat containment, and structural space savings utilizing high-temp nano materials.
Published: 2023/Apr/13 Read Article +Get technical answers about passive fire protection, vacuum panels, and Moscow municipal code requirements.
Our VIPs utilize high-purity inorganic fumed silica as the core material. Fumed silica consists of silicon dioxide (SiO₂), which is chemically inert, non-combustible, and has a melting point exceeding 1600°C. Even when exposed to direct flames, the core does not support combustion, flame spread, or toxic smoke release, aligning with the strictest KM0 classification required by Russian building codes.
Extremely cold winter temperatures actually improve the thermal performance of VIPs. Because the interior is evacuated to a low vacuum state, transient gas thermal conduction is minimized. The fumed silica core is physically stable down to -100°C. Condensation risks are minimized because our VIP systems integrate vapor barriers that prevent frost accumulation inside the structural insulation cavity.
No. Vacuum Insulation Panels operate by maintaining an internal vacuum. Any cutting, drilling, or significant mechanical puncture will compromise the envelope seal, raising internal pressure and increasing the thermal conductivity to that of unevacuated fumed silica (approximately 0.020 W/m·K). Therefore, all VIPs must be custom-manufactured to precise sizes before shipment. We provide specialized CAD planning support to ensure all wall, door, and enclosure dimensions are accounted for prior to production.
Tests simulate a service lifespan of over 50 years in building wall cavities. Thanks to the integrated getter materials and high-barrier PET/aluminum laminated foils, the rate of internal pressure increase is limited to less than 1 mbar per year, preserving a low thermal conductivity value throughout the building's operating cycle.
Select a product to view technical specifications. You can submit custom dimension requirements for any system.
Wrapped in robust PET film to ensure durability during installation in compact wall cavities and ventilation shafts.
View Specifications +
Reflective dual-purpose foil-faced insulation rolls providing radiant barrier properties alongside high thermal resistance.
View Specifications +
Cost-effective ultra-thin vacuum panels offering low thermal conductivity under controlled structural conditions.
View Specifications +
Reliable temperature control for biological shipping boxes and vaccine containers in changing logistics corridors.
View Specifications +
Tailored configurations allowing VIP integration around piping, architectural bends, and mechanical protrusions.
View Specifications +
Large format panel installations protecting bulk thermal freight and high-value cargo from extreme external temperature shifts.
View Specifications +
Hybrid PU-sheathed vacuum panels offering robust puncture resistance alongside high core thermal protection.
View Specifications +
Rigid high-temperature boards resisting temperatures up to 1100°C. Ideal for furnace structural backing and firewalls.
View Specifications +
Wrap-around insulation designed to fit curved steam lines, valves, and complex plant equipment.
View Specifications +
High-grade composite blankets featuring low density, high temperature resistance, and ease of cutting.
View Specifications +
Integrated wall cladding combines interior finish surfaces with a high-performance vacuum insulation core.
View Specifications +
Pre-assembled unitized wall panels designed for fast, modular envelope construction in commercial properties.
View Specifications +Our engineering support team coordinates directly with builders, facade contractors, and logistics suppliers in the Moscow area.
Whether you require GOST fire rating documentation, detailed thermal bridging calculations, or custom sizing setups, our engineering division is ready to assist.
Follow our updates or contact us via our official social media channels:



