Product Showcase
Explore our catalog of advanced vacuum and nano-insulation technologies engineered for energy conservation and severe thermal profiles.
High-efficiency architectural glazing maximizing thermal barriers and noise suppression metrics.
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Rigid, high-stability nano insulation panels targeted for heavy industrial smelting and furnaces.
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Flexible nano-insulation blankets offering exceptional wrap structures for industrial water heating storage systems.
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Pre-engineered structural wall assemblies embedded with advanced vacuum thermal isolation cores.
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Irregularly shaped vacuum panels utilizing fumed silica cores protected by protective PET outer barriers.
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Superior building heat shielding solutions optimized for modern lightweight green architecture.
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Structurally enhanced VIP panels developed for high mechanical load applications and civil engineering.
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Reflective foil-faced insulation rolls providing radiant and conductive barriers for industrial roofs.
View More+In high-temperature industrial environments, standard isolation materials like ceramic fiber and mineral wool fail to meet modern efficiency targets and footprint restrictions. Rigid microporous panels represent the pinnacle of advanced thermal engineering, relying on the **Knudsen Effect** to deliver thermal conductivities lower than static air.
By engineering a matrix of fumed silica particles with pore structures measuring under 20 nanometers, the mean free path of gas molecules within the board is severely constrained. Gaseous thermal conduction is nearly eliminated because air molecules collide with the boundaries of the solid structure rather than with each other. This results in unprecedented insulation performance in extremely thin profiles.
Heavy industries worldwide are facing aggressive carbon emissions reduction mandates. Implementing rigid microporous panel insulation yields measurable performance enhancements across several key commercial vectors:
Because these panels offer up to five times the thermal performance of conventional fiberboards, thickness can be reduced by 50% to 75%. This allows manufacturers to optimize machine sizes, reduce steel support weights, and dramatically cut operational overhead.
About Zerothermo Technology
Zerothermo Technology Co., Ltd., a subsidiary of CBVAC Group and a national high-tech enterprise, is headquartered in the Beijing Economic-Technological Development Area. Our primary production base is situated in Nanchong City, Sichuan Province. This facility stands as one of China's largest comprehensive production centers for vacuum technology application products, serving global supply chains with strict compliance standards.
Custom-engineered flanges built to precise client blueprints, transcending traditional standard measurements like ANSI/ASME/DIN.
Precision-milled square, oval, or specialized geometry configurations. Capable of processing over 60-inch sizes down to micro-tolerances.
Tailored structural component development conforming directly to complex system integration and extreme physical stress conditions.
Tailored Integrations
From dimensional variations to specialized environmental specifications, our design team produces bespoke microporous and vacuum products matching unique target parameters.
Custom flexible designs with thickness ranges from 5mm, ideal for preventing thermal runaways within pack designs.
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Designed for residential and industrial boilers to provide extreme hot water holding capability.
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Elevator fire door safety thermal shielding optimized to pass critical UL and fire-rating benchmarks.
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Engineered for complex structural shapes requiring tight-fitting geometries and custom cut-outs.
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Circular, curved, and cylindrical profile mats designed to wrap pipes, cylindrical vessels, and turbines.
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Advanced vacuum panels that secure record-breaking thermal insulation parameters in tight designs.
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Optimized for vaccine containers, bio-logistics boxes, and cold shipping container systems.
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Large format vacuum panels for architectural facades, roofing systems, and industrial walls.
View More+R&D Horizons
Our strategic vision pushes the limits of material science and core configuration longevity over the next decade.
Developing ultra-low density composite cores blending fumed silica with inorganic mineral matrices to enhance physical load bearing capacity while preserving sub-20nm pore structures.
Innovating 12-layer laminate envelope membranes that possess zero gas permeability values, effectively extending vacuum life spans past the 50-year mark for building facades.
Installing automated robotic shaping cells capable of pressing specialized curved and contoured panels for complex pipe bends and battery shapes without vacuum loss.
Integrating thin-film sensors inside VIP cores to monitor vacuum status and internal thermal performance in real time for industrial and cold chain applications.
Custom Sectors
How our VIPs and nano microporous materials resolve structural thermal protection and regulatory challenges across diverse industries.
Ensuring biological materials, clinical trials, and life-saving vaccines remain at stable temperatures (ultra-low frozen down to -70°C) across global distribution routes, utilizing high-density fumed silica VIPs with minimal internal decay.
Empowering green buildings and zero-emission developments. Replacing thick, traditional foam boards with thin, structural vacuum core units that provide high U-values and maximize premium floor areas.
Providing rigid insulation panels for steel, glass, and aluminum furnaces. Designed to withstand mechanical pressure and extreme temperatures up to 1000°C without shedding micro-fibers.
Supporting portable refrigeration units, modular eco-cabins, and light shipping boxes with lightweight thermal panels that increase performance while decreasing transport fuel usage.




Why Choose Zerothermo?
We coordinate premium engineering, rigorous laboratory control, and reliable logistical chains to ensure your projects operate smoothly.
Success Metrics
See how our rigid panels and vacuum systems perform in real-world commercial operations.
Integration of ultra-thin vacuum insulation walls to maximize usable cleanroom clean areas without compromising temperature control.
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Refitting heat shielding on high-temperature manufacturing bays, reducing energy draw by 28%.
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Use of integrated insulation decoration wall panels to achieve local energy savings target guidelines.
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Development of medical-grade shipping containers utilizing fumed silica vacuum insulation panels for temperature maintenance.
View Case Study+Technical Knowledge Base
Answers to key questions regarding technical design, structural life spans, and integration protocols for rigid microporous insulation panels.
These panels are composed of fumed silica, opacifiers, and structural reinforcing fibers. The manufacturing process creates sub-20nm internal pore spaces. According to the Knudsen Effect, when the pore size is smaller than the mean free path of air molecules (approx. 70nm at standard pressure), gas molecules cannot transfer heat effectively via collisions, resulting in a thermal conductivity value lower than that of still air (down to 0.018 W/m·K at room temperature).
Fumed silica core VIPs have much smaller pore structures than glass-fiber cores. They maintain high thermal performance (typically 0.005 W/m·K) even if the internal vacuum pressure decreases over time. Glass-fiber VIPs decay rapidly if they lose vacuum because their large pore structure allows gas conduction to return instantly. Silica VIPs provide longer operational life spans, especially in environments with high moisture levels.
Standard rigid microporous boards (non-vacuum) can be carefully cut and machined using dry woodworking tools. However, vacuum insulation panels (VIPs) cannot be cut, drilled, or altered because breaching the outer protective barrier will destroy the vacuum and compromise thermal performance. All VIPs must be customized to exact dimensions during production.
Our rigid microporous panels are rated for continuous service temperatures up to 1000°C. Standard formulations remain stable without significant shrinkage or degradation. For applications exceeding 1000°C, custom core combinations containing refractory additives are available.
Because VIPs deliver high thermal insulation performance in very thin profiles, they allow building structures to meet high energy efficiency requirements with minimal material usage. They reduce heating and cooling energy use, minimize overall carbon footprints, and help optimize spatial efficiency in urban areas.
Extended Range
Discover specialized vacuum boards and composite panels engineered to meet strict international standards.
Fiberglass core insulation panel designed for home appliances and commercial cold storage solutions.
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Reliable fumed silica panels finished with low-emissivity PET protection layers.
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Large format silica panels designed for bulk marine container transport routes.
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Decorative insulation cladding systems developed for rapid building construction.
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High-efficiency insulated boxes configured for the secure transit of sensitive pharmaceuticals.
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Flexible nano-insulation blankets offering exceptional wrap structures for curved systems.
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Highly durable panels engineered for the demands of repeated logistical transport.
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Modular exterior panels combining reliable thermal insulation with structural finish options.
View More+Connect With Us
Our engineering division assists global procurement officers and system engineers in implementing optimized thermal insulation designs. Contact us for direct material evaluations, technical data support, or custom layout pricing.
Industry Insights
Stay informed on technological milestones and regulatory developments within high-temperature insulation sectors.
An in-depth look at structural fire protection requirements for modern elevator door configurations.
Our team presents next-generation fumed silica vacuum insulation panels and custom flanges at the exhibition.
Discussing how nano-structured insulation solutions are replacing old thermal protection methods in heavy industry.