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Application Case of Building Fire Prevention and Energy saving | Nano porous Thermal Insulation Material, Creating Safety

Against the backdrop of green and low-carbon transformation in the construction industry and continuous upgrading of fire safety standards, building energy efficiency and fire safety have become rigid requirements. Traditional insulation systems have long faced the industry pain point of "difficulty in balancing fire prevention and energy conservation": organic insulation materials have excellent thermal insulation but high risks of flammability and smoke toxicity, while traditional inorganic insulation materials meet fire prevention standards but have high thermal conductivity and thick lining layers, making it difficult to adapt to the high safety, energy conservation, and space utilization requirements of modern buildings.


The nano porous thermal insulation material, mainly made of high-purity nano silica, combines A-level non combustible fire resistance and ultra-low thermal conductivity energy-saving performance. It can be widely used in building exterior walls, fire partitions, curtain wall roofs, pipe well protection and other scenarios, building an integrated high-performance thermal protection system of "fire prevention+insulation" for various types of buildings.


industry pain points

1. It is difficult to balance fire prevention and energy conservation: Organic insulation materials have high insulation efficiency but poor flame retardancy, and are prone to burning, dripping, and releasing highly toxic smoke in a fire; Although traditional inorganic insulation materials can meet fire prevention standards, their thermal conductivity is relatively high, and thick lining layers need to be stacked to meet energy-saving requirements.

2. Clear spatial and load constraints: Thick insulation layers will occupy indoor space in buildings, while increasing the load on exterior walls and roof structures. Especially in energy-saving renovations of old buildings, they are susceptible to load limitations and cannot meet construction standards.

3. Insufficient durability: Traditional insulation materials are prone to water absorption, moisture absorption, powdering, and detachment. The insulation performance deteriorates rapidly over time and requires frequent maintenance and replacement, resulting in high maintenance and operation costs throughout the entire lifecycle.

4. Poor adaptability to irregular parts: Traditional insulation materials are difficult to tightly adhere to irregular areas such as door and window openings, internal and external corners, pipe wells, air ducts, and fire joints, which can easily form thermal bridges and weak points in fire prevention.


Solution

External wall insulation combines efficient insulation with A-level non combustible properties, reducing energy consumption and eliminating hidden dangers; Used for filling fire compartments, delaying the spread of high-temperature smoke, and extending the fire resistance limit; Ultra thin embedded curtain wall and roof system, blocking thermal radiation and improving temperature control efficiency; Wrap the pipe well and mechanical and electrical nodes to block the spread of fire along the pipeline, while also considering fire prevention and energy conservation.


Application Effectiveness

Through the systematic application of nano porous thermal insulation materials, buildings achieve a dual upgrade in fire prevention and energy efficiency: the overall fire protection level of the building meets the standards and regulations, and the fire safety risk is significantly reduced; The significant reduction in building heat and cold losses, effective reduction in heating and air conditioning energy consumption, and outstanding energy-saving and carbon reduction benefits; Lightweight design releases building space and reduces structural loads; The long-term stability of the material also reduces the investment in later operation and maintenance, resulting in significant comprehensive benefits throughout the entire lifecycle.

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